WO2016155331A1 - 一种基于穿戴设备的信息传递方法及相关设备 - Google Patents

一种基于穿戴设备的信息传递方法及相关设备 Download PDF

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Publication number
WO2016155331A1
WO2016155331A1 PCT/CN2015/095068 CN2015095068W WO2016155331A1 WO 2016155331 A1 WO2016155331 A1 WO 2016155331A1 CN 2015095068 W CN2015095068 W CN 2015095068W WO 2016155331 A1 WO2016155331 A1 WO 2016155331A1
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Prior art keywords
event
wearable device
user
information
user setting
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PCT/CN2015/095068
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English (en)
French (fr)
Inventor
李瑞联
黄波
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to EP15882281.7A priority Critical patent/EP3116199B1/en
Priority to US15/263,508 priority patent/US9900757B2/en
Publication of WO2016155331A1 publication Critical patent/WO2016155331A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/20Services signaling; Auxiliary data signalling, i.e. transmitting data via a non-traffic channel
    • H04W4/21Services signaling; Auxiliary data signalling, i.e. transmitting data via a non-traffic channel for social networking applications
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/017Gesture based interaction, e.g. based on a set of recognized hand gestures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
    • G06Q10/107Computer-aided management of electronic mailing [e-mailing]
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/01Social networking
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V20/00Scenes; Scene-specific elements
    • G06V20/35Categorising the entire scene, e.g. birthday party or wedding scene
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V40/00Recognition of biometric, human-related or animal-related patterns in image or video data
    • G06V40/20Movements or behaviour, e.g. gesture recognition
    • G06V40/28Recognition of hand or arm movements, e.g. recognition of deaf sign language
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B5/00Near-field transmission systems, e.g. inductive or capacitive transmission systems
    • H04B5/70Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes
    • H04B5/72Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes for local intradevice communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/40Support for services or applications
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/2866Architectures; Arrangements
    • H04L67/30Profiles
    • H04L67/306User profiles
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/52Network services specially adapted for the location of the user terminal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/535Tracking the activity of the user
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/54Presence management, e.g. monitoring or registration for receipt of user log-on information, or the connection status of the users
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/26Devices for calling a subscriber
    • H04M1/27Devices whereby a plurality of signals may be stored simultaneously
    • H04M1/274Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc
    • H04M1/2745Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc using static electronic memories, e.g. chips
    • H04M1/2753Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc using static electronic memories, e.g. chips providing data content
    • H04M1/2757Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc using static electronic memories, e.g. chips providing data content by data transmission, e.g. downloading
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • H04M1/72409User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality by interfacing with external accessories
    • H04M1/72412User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality by interfacing with external accessories using two-way short-range wireless interfaces
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F18/00Pattern recognition
    • G06F18/20Analysing
    • G06F18/24Classification techniques
    • G06F18/241Classification techniques relating to the classification model, e.g. parametric or non-parametric approaches
    • G06F18/2411Classification techniques relating to the classification model, e.g. parametric or non-parametric approaches based on the proximity to a decision surface, e.g. support vector machines

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a device-based information delivery method and related device.
  • business card delivery is widely used by business people as a means of information transmission.
  • the business card delivery includes the transmission of the new electronic business card in addition to the traditional paper business card delivery.
  • users can transfer electronic business cards by operating a smart phone.
  • the user can operate the smart phone to scan surrounding user devices (such as mobile phones, tablets, etc.), and the user can operate the smart phone to select any user device scanned as an interactive object, and further the user can operate the smart phone to select the electronic business card to transmit.
  • the user equipment is given as an interactive object, thereby implementing electronic business card delivery.
  • the above-mentioned electronic business card delivery method requires the user to perform cumbersome manual operations, thereby reducing the efficiency of information transmission.
  • the embodiment of the invention discloses a method for transmitting information based on a wearable device and related devices, which can effectively improve the efficiency of information transmission.
  • a first aspect of the embodiments of the present invention discloses a method for transmitting information based on a wearable device, including:
  • the first wearable device records a first event parameter corresponding to the social action when detecting that the first user wearing the first wearable device has a social action, the first event parameter includes a first event time, and the first The location of the event or the identity of the first user;
  • the parameter includes a second event time, a second event location, or an identifier of the second user;
  • the second event parameter is that the second wearable device detects that the second user wearing the second wearable device has a social action Event parameters recorded at the time;
  • the first wearable device determines whether the first event parameter matches the second event parameter, and if yes, the first wearable device sends the first user setting information to the second wearable device.
  • the first wearable device determines whether the first event parameter matches the second event parameter, including:
  • the first event time includes a first event start time and a first The duration of the event
  • the second event time includes a second event start time and a second event duration
  • the first wearable device determines whether the first event time matches the second event time, including:
  • the first wearable device determines whether the difference between the first event start time and the second event start time is less than a first set threshold, and if the first wear threshold is less than the first set threshold, the first wearable device determines Whether a difference between the first event duration and the second event duration is less than a second set threshold, and if less than the second set threshold, determining the first event time and the second event time match;
  • Determining, by the first wearable device, whether the first event location matches the second event location including:
  • the first wearable device determines whether the interval between the first event location and the second event location is less than a preset threshold, and if the first event location is less than a preset threshold, determining the first event location and the first The second event location matches;
  • the determining, by the first wearable device, whether the identifier of the first user matches the identifier of the second user includes:
  • the first wearable device detects that the first user wearing the first wearable device has a social action, detecting whether a social sentence occurs, and if yes, performing the step of obtaining the second event parameter issued by the second wearable device .
  • the first wearable device obtains the second second issued by the second wearable device.
  • Event parameters including:
  • the sending, by the first wearable device, the first user setting information to the second wearable device includes:
  • the connection capability transmits the first user setting information to the second wearable device.
  • the method further includes:
  • the first wearable device issues the first event by using the available network connection capability of the first device parameter
  • the first wearable device issues the first event parameter by using an available network connection capability of the first smart device.
  • the method further includes:
  • the first wearable device acquires second user setting information sent by the second wearable device by using an available network connection capability of the first smart device;
  • the first event time is matched with the second event time, and the first event location is determined. Sending to the first wearable device after matching with the second event location.
  • the first wearing device determines the first event parameter and the After the second event parameter is matched, the method further includes:
  • the first wearable device sends a first user setting rule to the first smart device, so that the first smart device triggers an authorized IoT device to provide a service according to the first user setting rule;
  • the first user setting rule includes identification information of at least one authorized IoT device.
  • the first user setting rule further includes at least one authorized The identification information of the three-party search engine
  • the second user setting information includes personal information
  • the method further includes:
  • the second user background information sent by the cloud server where the second user context information is used by the cloud server from the second user
  • the keyword is extracted from the personal information included in the user setting information
  • the second user background information obtained by the authorized third-party search engine is matched by the authorized third-party search engine.
  • the second user setting information further includes an authorized third party service.
  • Information entry the method further includes:
  • the first wearable device acquires third-party service information sent by the cloud server by using the first smart device, where the third-party service information is imported by the cloud server to the third party through the third-party service information Third-party service information obtained by the service system.
  • the second user setting information further includes an authorized physical condition detecting device.
  • Identification information the method further includes:
  • the second user vital sign data synchronization information is that the authorized physical sign detecting device passes the second smart device Sent to the cloud server, wherein the second wearable device maintains a communication connection with the second smart device.
  • the first user setting information includes personal information, an authorized third party service information entry, and status information of the authorized vitality detecting device.
  • a second aspect of the embodiments of the present invention discloses a wearable device, including:
  • a recording unit configured to record a first event parameter corresponding to the social action when detecting that a first user wearing the wearable device has a social action, the first event parameter including a first event time, a first event a location or an identification of the first user;
  • a first acquiring unit configured to obtain a second event parameter issued by the second wearable device, where the second event parameter includes a second event time, a second event location, or an identifier of the second user; the second event parameter is The second wearable device detects that the second user wears the second wearable device Event parameters recorded during a social action;
  • a first determining unit configured to determine whether the first event parameter matches the second event parameter
  • a sending unit configured to send the first user setting information to the second wearable device when the determination result of the first determining unit is a match.
  • the first determining unit is configured to determine whether the first event time matches the second event time, and/or Whether the first event location matches the second event location, and/or is used to determine whether the identifier of the first user matches the identifier of the second user.
  • the first event time includes a first event start time and a first The event duration
  • the second event time includes a second event start time and a second event duration
  • the first determining unit determines whether the first event time matches the second event time, including:
  • the first determining unit determines whether the difference between the first event start time and the second event start time is less than a first set threshold, and if it is less than the first set threshold, determining that the first event continues Whether a difference between the time and the duration of the second event is less than a second set threshold, and if less than the second set threshold, determining that the first event time matches the second event time;
  • the first determining unit determines whether the first event location matches the second event location, including:
  • the first determining unit determines whether the interval between the first event location and the second event location is less than a preset threshold, and if the preset threshold is less than the preset threshold, determining the first event location and the second event Location matching
  • the first determining unit determines whether the identifier of the first user and the identifier of the second user are Matches, including:
  • Also includes:
  • a social sentence detecting unit configured to detect whether a social sentence occurs when the first user wearing the wearable device has a social action, and if so, triggering the first acquiring unit to perform the obtaining the second wearable device The operation of the second event parameter is published.
  • the first acquiring unit is specifically used by the wearable device itself.
  • the available network connection capability obtains the second event parameter issued by the second wearable device; and/or the first acquisition unit obtains the second event parameter issued by the second wearable device by using the available network connection capability of the first smart device, where The wearable device has a communication connection with the first smart device;
  • the manner in which the sending unit sends the first user setting information to the second wearable device is specifically:
  • the sending unit is configured to send first user setting information to the second wearable device by using an available network connection capability of the wearable device itself; and/or for providing available network connection capability by using the first smart device Sending first user setting information to the second wearable device.
  • the wearable device further includes:
  • a publishing unit configured to issue the first event parameter by using an available network connection capability of the wearable device itself; and/or for publishing the first event parameter by using an available network connection capability of the first smart device.
  • the wearing device further includes:
  • a second acquiring unit configured to acquire second user setting information sent by the second wearing device by using an available network connection capability of the wearable device; and/or, for providing available network connection capability by using the first smart device Obtaining second user setting information sent by the second wearable device;
  • the first event time is matched with the second event time, and the first event location is determined. Sending to the wearable device after matching with the second event location.
  • the sending unit is further configured to be used in the first determining unit After the first event parameter is matched with the second event parameter, the first user setting rule is sent to the first smart device, so that the first smart device sets the rule according to the first user.
  • the IoT device that triggers the authorization provides a service; wherein the first user setting rule includes identification information of at least one authorized IoT device.
  • the first user setting rule further includes at least one authorized Identification information of the three-party search engine, the second user setting information including personal information, wherein:
  • the sending unit is further configured to send the second user setting information and the first user setting rule to the cloud server by using the first smart device;
  • the second acquiring unit is further configured to acquire second user background information sent by the cloud server by using the first smart device, where the second user context information is used by the cloud server from the second After the keyword is extracted from the personal information included in the user setting information, the second user background information obtained by the authorized third-party search engine is matched by the authorized third-party search engine.
  • the second user setting information further includes an authorized third party service.
  • Information portal where:
  • the second obtaining unit is further configured to acquire, by using the first smart device, the cloud server to send Third party service information, wherein the third party service information is third party service information obtained by the cloud server through the third party service information portal to a third party service system.
  • the second user setting information further includes an authorized physical condition detecting device. Identification information, where:
  • the second acquiring unit is further configured to acquire second user vital sign data synchronization information sent by the cloud server by using the first smart device, where the second user vital sign data synchronization information is that the authorized physical sign detecting device passes
  • the second smart device is sent to the cloud server, wherein the second wear device maintains a communication connection with the second smart device.
  • the first user setting information includes personal information, an authorized third party service information entry, and status information of the authorized vitality detecting device.
  • the first wearable device when detecting that the first user wearing the first wearable device has a social action, the first wearable device may record the first event time, the first event location, or the identifier of the first user corresponding to the social action.
  • the second wearable device when the second wearable device detects that the second user wearing the second wearable device has a social action, the second wearer may also record the second event time, the second event location, or the identifier of the second user.
  • the second event parameter is used to issue the second event parameter, so that after the first wearable device obtains the second event parameter issued by the second wearable device, if it is determined that the first event parameter matches the second event parameter, the first wearable device may Determining the second wearable device as the delivery object, and correspondingly, the first wearable device may send the first user setting information to the second wearable device.
  • FIG. 1 is a schematic diagram of a first networking architecture disclosed in an embodiment of the present invention
  • FIG. 2 is a schematic flowchart of a method for transmitting information based on a wearable device according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of a second networking architecture disclosed in an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a third networking architecture disclosed in an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a fourth networking architecture disclosed in an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of a fifth networking architecture disclosed in an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a wearable device according to an embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of another wearable device according to an embodiment of the present invention.
  • the embodiment of the invention discloses a method for transmitting information based on a wearable device and related devices, which can effectively improve the efficiency of information transmission. The details are described below separately.
  • FIG. 1 is a schematic diagram of a first networking architecture disclosed in an embodiment of the present invention.
  • the networking device may include a first wearable device and a second wearable device, where the first wearable device and the second wearable device are independent wearable devices, that is, the first wearable device, The second wearable device is not connected to other smart devices such as mobile phones and tablets.
  • the first wearable device and the second wearable device may be respectively carried on two different business persons, and the first wearable device and the second wearable device are not connected to the mobile phone or tablet of the business person.
  • the first wearable device and the second wearable device include, but are not limited to, various smart wearable devices such as a smart watch, a smart ring, a smart wristband, smart glasses, a smart necklace, a smart ring, and a smart earring.
  • the first wearable device and the second wearable device itself can provide various available network connection capabilities such as BT (Bluetooth), NFC (Near Field Communication), WIFI, Zigbee, and the like.
  • the first wearable device and the second wearable device can also incorporate various types of sensors such as an accelerometer, a gyroscope, a magnetometer, a light sensor, a GPS, a heart rate sensor, a blood oxygen sensor, a brain wave sensor, and an I/O such as a microphone and a speaker. component.
  • the first wearable device and the second wearable device can obtain time information according to the clock, and can also effectively detect the user's actions (such as shaking hands, hugging, running, walking, etc.) and user signs by using the above various types of sensors.
  • Data such as heart rate, brain waves, blood oxygen, blood pressure, brainwave status, etc.
  • location ie location
  • the cumbersome manual operation when the information is transmitted can be omitted between the first wearable device and the second wearable device, so that the efficiency of information transfer can be effectively improved.
  • the first wearable device and the second wearable device can efficiently transmit information without requiring the user to manually select the delivery object and information without the user's perception, and the user can be improved. The experience in a business environment.
  • FIG. 2 is a schematic flowchart diagram of a method for transmitting information based on a wearable device according to an embodiment of the present invention.
  • the wearable device-based information delivery method may include the following steps.
  • the first wearable device detects that the first user wearing the first wearable device is socially active.
  • the first event parameter corresponding to the social action is recorded, and the first event parameter includes a first event time, a first event location, or an identifier of the first user.
  • the first wearing device (such as a watch) can collect sensor data such as a gyroscope and an accelerometer, and detect whether the first user wearing the first wearing device is detected by sensor data such as a gyroscope or an accelerometer.
  • Sensor data such as a gyroscope or an accelerometer.
  • Social actions such as shaking hands, hugs, etc.
  • the first wearable device can extract signal characteristics from sensor data such as gyroscopes and accelerometers by using the FDSVM algorithm.
  • the signal characteristics of the gyroscope and the accelerometer can be x, y, and z axes.
  • the first wearable device can perform the handshake action recognition by using multiple types of SVM algorithms.
  • the first wearable device may also use other more complex algorithm combinations to perform signal feature extraction and handshake action identification, which is not limited in the embodiment of the present invention.
  • the first wearable device when detecting that a social action (such as a handshake) occurs, may record a first event time corresponding to the social action, and the first event time may include a first event start time (also referred to as a start time of the social action detected by the first wearable device) and a first event duration (also referred to as a duration of the social action detected by the first wearable device), wherein the first event duration is usually in milliseconds (ms ) is the unit.
  • ms milliseconds
  • the first wearable device when detecting that a social action (such as a handshake) occurs, may record the first event location of the GPS of the first wearable device (also referred to as the first wearable device detects the social action). location).
  • a social action such as a handshake
  • the first wearable device may also be connected to an external GPS device, and the external GPS device may push the detected location to the first wearable device in real time. Accordingly, the first wearable device detects that a social action occurs (eg, When the handshake is performed, the location where the external GPS device is pushed can be recorded, and the location is used as the first event location (also referred to as the location where the first wearable device detects the social action).
  • a social action eg, When the handshake is performed, the location where the external GPS device is pushed can be recorded, and the location is used as the first event location (also referred to as the location where the first wearable device detects the social action).
  • the first wearable device may store the recorded first event time, the first event location or the identifier of the first user as the first event parameter corresponding to the social action, and perform subsequent operations such as publishing.
  • the identifier of the first user may be the mobile number of the first user, The social account number and the like are not limited in the embodiment of the present invention.
  • the first wearing device may store the recorded first event time, the first event location or the identifier of the first user as the first event parameter corresponding to the social action, and subsequently perform the publishing and the like.
  • the first wearable device obtains a second event parameter that is sent by the second wearable device, where the second event parameter includes a second event time, a second event location, or an identifier of the second user, where the second event parameter is the second wearable device.
  • An event parameter recorded when a second user wearing the second wearable device has a social action is detected.
  • the second wearable device when the second wearable device detects that the second user wearing the second wearable device has a social action, the second wear device correspondingly records the second event parameter corresponding to the social action.
  • the second event parameter may include a second event time, a second event location, or an identifier of the second user, where the second wearable device detects that the social action occurs in the same manner as the first wearable device detects that the social action occurs.
  • the embodiments of the invention are not described again.
  • the second event time may include a second event start time (also referred to as a start time of the social action detected by the second wearable device) and a second event duration (also referred to as a social action detected by the second wearable device).
  • the second wearable device may also collect the second event location (also referred to as the location where the second wearable device detects the social action) of the second wearable device when detecting that a social action (such as a handshake) occurs.
  • the second wearable device may also be connected to an external GPS device, and the external GPS device may push the detected location to the second wearable device in real time. Accordingly, the second wearable device detects that a social action occurs (eg, When the handshake is performed, the location of the external GPS device push can be recorded, and the location is used as the second event location (also referred to as the location where the second wearable device detects the social action).
  • the second wearable device may store and publish the recorded second event time, the second event location or the identifier of the second user as the second event parameter corresponding to the social action.
  • the identifier of the second user may be the mobile phone number of the second user, the social account number, and the like, which are not limited in the embodiment of the present invention.
  • the second wearable device since the first wearable device and the second wearable device are not connected to other smart devices such as a mobile phone or a tablet computer, the second wearable device records the second event time and the second event. After the location is the second event parameter corresponding to the social action, the second wearable device may issue the second event parameter including the second event time and the second event location by using the available network connection capability (such as NFC) of the second wearable device itself.
  • the first wearable device can also obtain the second event parameter issued by the second wearable device by using its available network connection capability (such as NFC).
  • the first wearable device determines whether the first event parameter matches the second event parameter. If yes, if the match occurs, the first user setting information is sent to the second wearable device.
  • the first event parameter may further include a first social action type (such as a handshake), and the second event parameter may also include a second social action type (such as a handshake), and accordingly, the first wear
  • a first social action type such as a handshake
  • the second event parameter may also include a second social action type (such as a handshake)
  • the first wearable device determines whether the first social action type is the same as the second social action type. If they are the same, step 203 is performed; otherwise, step 203 is not performed. Through this step, the accuracy of sending the first user setting information to the second wearable device can be improved.
  • the determining, by the first wearable device, whether the first event parameter matches the second event parameter may include:
  • the first wearable device determines whether the first event time matches the second event time, and/or determines whether the first event location matches the second event location, and/or determines the identifier of the first user and the identifier of the second user. Whether it matches.
  • the first event time may include a first event start time and a first event duration
  • the second event time may include a second event start time and a second event duration
  • the first wear The specific implementation manner of the device determining whether the first event time matches the second event time may be:
  • the first wearable device determines whether the difference between the first event start time and the second event start time is less than a first set threshold (eg, 2s). If the first wearable device is less than the first set threshold, the first wearable device may determine that the first event continues. Whether the difference between the time and the duration of the second event is less than a second set threshold (eg 500ms), if less than the second set threshold, it is determined that the first event time matches the second event time.
  • a first set threshold eg, 2s
  • the specific implementation manner of the first wearable device determining whether the first event location matches the second event location may be:
  • the first wearing device can determine whether the first event location is the same as the second event location. If the same, the first event location can be determined to match the second event location.
  • the first wearing device may determine whether the interval between the first event location and the second event location is less than a preset threshold, and if less than the preset threshold, determine that the first event location matches the second event location.
  • the specific implementation manner of the first wearable device determining whether the identifier of the first user matches the identifier of the second user may be:
  • the first wearable device determines whether the identifier of the first user and the identifier of the second user belong to the same relationship chain user identifier, and if so, determines that the identifier of the first user matches the identifier of the second user.
  • the first set threshold, the second set threshold, and the preset threshold may be set as needed, which is not limited in the embodiment of the present invention.
  • the first wearable device determines that the difference between the first event start time and the second event start time is greater than or equal to a first set threshold (eg, 2s), or if the first wearable device determines that the first event starts The difference between the time and the start time of the second event is less than the first set threshold (eg, 2 s), but the first wearable device determines that the difference between the first event duration and the second event duration is greater than or equal to the second set threshold (eg, 500ms), it may be determined that the first event time does not match the second event time; in the embodiment of the present invention, if the first wearable device determines that the first event location is different from the second event location, the first event location may be determined The second event location does not match.
  • a first set threshold eg, 2s
  • the business person carrying the first wearable device may be determined.
  • a social action such as a handshake is performed between the business person carrying the second wearable device, and the second wearable device is the transfer object (or service object) of the first wearable device, and accordingly, the first wearable device can be the second
  • the wearable device sends the first user setting information.
  • the first user setting information refers to user setting information stored on the first wearing device.
  • the first wearable device determines that the first event time and the second event are that the first wearable device and the second wearable device are not connected to other smart devices such as a mobile phone and a tablet computer. After the time matches, and after determining that the first event location matches the second event location, the first wearable device may send the first user setting information to the second wearable device by using its available network connection capability (such as NFC); The second wearable device may obtain the first user setting information sent by the first wearable device by using an available network connection capability (such as NFC).
  • NFC available network connection capability
  • the first wearable device when detecting that a social action occurs, may further perform the following operations:
  • the first wearable device performs its own available network connection capability and network connection status determination.
  • the available network connection capability of the first wearable device may include various available network connection capabilities, such as BT, NFC, and WIFI, which are not limited in the embodiment of the present invention.
  • the network connection status of the first wearable device may include that the first wearable device is connected to the smart device or the first wearable device is not connected to the smart device.
  • the first wearable device may issue the first event parameter on the network adaptation layer through multiple available network connection capabilities;
  • the network connection status of the first wearable device is that the first wearable device is connected to the smart device, and the first wearable device can also issue the first event parameter by using multiple available network connection capabilities on the network adaptation layer.
  • the available network connection capability of the connected smart terminal issues the first event parameter described above.
  • the foregoing first event parameter may be published in the form of a sharing service.
  • the process of publishing a sharing service can be as follows:
  • the sharing service may include a sharing service type (or a service type), a wearable device name (or a service name), a first event location (or a service location, that is, a location where a social action is detected), and a first Event time (or service time, including the first event start time and first event duration), social action type, network connection status, available network connection capabilities (such as NFC/BT/WIFI, etc.).
  • a sharing service type or a service type
  • a wearable device name or a service name
  • a first event location or a service location, that is, a location where a social action is detected
  • a first Event time or service time, including the first event start time and first event duration
  • social action type such as NFC/BT/WIFI, etc.
  • Passing an object (or a service object) determines:
  • the second wearable device may issue the recorded second event time and the second event location as the second event parameter corresponding to the social action.
  • the second wearable device may also issue the second event parameter in the form of a sharing service.
  • the first wearable device may extract, from the sharing service issued by the second wearable device, the second event parameter included in the sharing service, that is, the second event time and the second event location, wherein the second event
  • the time may include a second event start time (also referred to as a start time of the social action detected by the second wearable device) and a second event duration (also referred to as the duration of the social action detected by the second wearable device);
  • the first wearable device can determine whether the difference between the first event start time and the second event start time is less than a first set threshold (eg, 2s).
  • the first wearable device can determine the first Whether the difference between the duration of the event and the duration of the second event is less than a second set threshold (eg, 500 ms), if less than the second set threshold, determining that the first event time matches the second event time; and, the first wear The device can determine the location of the first event (again It is said that the location where the first wearable device detects the social action is the same as the second event location (also referred to as the location where the second wearable device detects the social action), and if the same, the first event location and the second event location may be determined. match.
  • the size of the first set threshold and the second set threshold may be set as needed, which is not limited in the embodiment of the present invention.
  • the business person carrying the first wearable device may be determined.
  • a social action such as a handshake is performed between the business person carrying the second wearable device, and the second wearable device is the transfer object (or service object) of the first wearable device, and accordingly, the first wearable device can be the second
  • the wearable device sends the first user setting information.
  • the first user setting information refers to user setting information stored on the first wearing device.
  • the user setting information may be stored on the first wearing device and the second wearing device, wherein the user setting information stored on the first wearing device may be referred to as first user setting information, and the second wearing The user setting information stored on the device may be referred to as second user setting information.
  • the form of user setting information can be as shown in Table 1:
  • the user setting information may include not only personal information but also third party service information entry and identification information of the vitality detecting device.
  • the user setting information may further include three types of personal information, third party service information entry, and identification information of the physical sign detecting device. Whether the class is authorized or not, such as Y for authorization and N for unauthorized.
  • the vital sign detecting device may also be a wear device such as a heart rate detecting wristband, a brain wave attention detecting eyeglass, a Semg muscle state detecting arm ring, or the body sign detecting device may also be a physical sign sensor built in the wearing device, and the present invention The embodiment is not limited. In practical applications, users can add, delete, modify, authorize, or deauthorize one of the categories in Table 1.
  • the third-party service information entry in Table 1 above may be used to obtain third-party service information, for example, personal blog, microblog profile, local weather information, local temperature information, local attractions, local dining locations, Local hotels, etc.
  • the status information of the vital sign detecting device in Table 1 is mainly used to obtain user vital sign data synchronization information.
  • the user's vitality data may include heart rate, brain wave attention, blood oxygen, and the like, which are not limited in the embodiment of the present invention.
  • the first setting device and the second wearing device may further store a user setting rule, where the user setting rule stored on the first wearing device may be referred to as a first user setting rule, and the second The user setting rules stored on the wearable device may be referred to as a second user setting rule.
  • the form of user-defined rules can be as shown in Table 2:
  • the user setting rule may include not only the identification information of the third-party search engine but also the identification information of the IOT device.
  • the user setting gauge the identifier information of the third-party search engine and the identifier information of the IOT device may be included in the identifier, for example, Y indicates authorization, and N indicates unauthorized.
  • users can add, delete, modify, authorize, or deauthorize one of the categories in Table 2.
  • the identifier information of the third-party search engine in Table 2 above may be used to obtain background information of the delivery object.
  • keywords may be extracted from personal information included in user setting information (such as second user setting information) sent by a delivery object (such as a second wearing device), and based on the extracted keywords, the above-mentioned
  • the third-party search engine authorized in Table 2 searches for user background information.
  • the service mode of the IOT device can be set by the user. For example, after detecting a social action such as a handshake, the coffee machine is started to start brewing coffee, and the air conditioner is turned down once.
  • the first wearable device when detecting that a social action occurs, may further perform the following steps, namely:
  • the first wearable device detects whether a social statement occurs, and if so, performs a step of acquiring a second event parameter issued by the second wearable device.
  • the above detecting whether the social statement occurs may include detecting whether there are some common social sentences such as "Hello” and “Long time no see”, if the detection occurs "Hello”, “Long time no see” and other common social sentences, then The step of acquiring the second event parameter issued by the second wearable device is performed, so that the accuracy of acquiring the second event parameter issued by the second wearable device can be improved.
  • the information transfer method described in FIG. 2 is implemented, and the cumbersome manual operation when information is transmitted including the electronic business card can be omitted, so that the efficiency of information transfer can be effectively improved.
  • the information delivery method described in FIG. 2 it is possible to efficiently transfer information without requiring the user to manually select the delivery object and information without requiring the user, thereby improving the user's experience in the business environment.
  • FIG. 3 is a schematic diagram of a second networking architecture disclosed in an embodiment of the present invention.
  • the networking structure may include a first wearable device, a second wearable device, and a first smart device, where the first wearable device is connected to the first smart device, and the second wearable device is not connected to the smart device.
  • the networking architecture shown in FIG. 3 the manner in which the first wearable device and the second wearable device detect the occurrence of a social action has been described in the foregoing embodiments, and details are not described herein again.
  • the networking architecture shown in Figure 3 the networking architecture shown in Figure 3:
  • the first wearable device the available wearable network connection capability may include one or more of BT, NFC, WIFI, and zigbee.
  • the first wearable device may connect to the first smart device by using the BT, and the first wearable device may be on the network adaptation layer. Publishing the sharing service (including the first event parameter) by removing other available network connection capabilities other than BT, and discovering the sharing service (including the second event parameter) issued by the second wearing device, wherein the first wearing device issues a sharing service ( The process of including the first event parameter, and discovering the shared service (including the second event parameter) issued by the second wearable device is as described in the previous embodiment, and details are not described herein again.
  • the first wearable device When the first wearable device discovers the shared service (including the second event parameter) issued by the second wearable device by removing the available network connection capability other than the BT, the first wearable device can pass the network adaptation layer.
  • the second available event parameters issued by the second wearable device are obtained by removing the available network connection capabilities other than BT.
  • the first smart device may receive the first wearable device to send a shared service broadcast request through the BT, and detect that the available smart network connection capability of the first smart device may include WIFI, BT, etc., and the first smart device may be in the network.
  • the distribution layer has a proxy for sharing service requests (including sharing services) through its available network connection capabilities (such as WIFI). Thereby, the first wearable device can be configured to issue the first event parameter by using the available network connection capability of the first smart device.
  • the second wearable device is in a network connection state in which the smart device is not connected, and the available network connection capability of the second wearable device itself may include one or more of BT, NFC, WIFI, and zigbee, and the second wearable device may be in the network.
  • the sharing service (including the second event parameter) is issued by the one or more available network connection capabilities, and the sharing service (including the first event parameter) issued by the first wearable device is released, wherein the second wearable device issues a share
  • the process of the service (including the second event parameter) and the discovery of the shared service (including the first event parameter) issued by the first wearable device is as described in the previous embodiment, and details are not described herein again.
  • the second wearable device When the second wearable device discovers the shared service (including the first event parameter) issued by the first wearable device by using one or more available network connection capabilities on the network adaptation layer, the second wearable device may implement one or Multiple available network connectivity capabilities The first event parameter issued by a wearable device.
  • the first wearable device may broadcast the sharing service through the first smart device proxy, and the second wearable device may broadcast the sharing service by itself.
  • the first wearable device can perform the interaction of the user setting information with the second wearable device by using the first smart device, and the form of the user setting information is as shown in the previous embodiment, and details are not described herein again.
  • FIG. 4 is a schematic diagram of a third networking architecture disclosed in an embodiment of the present invention.
  • the networking device may include a first wearable device, a first smart device, a second wearable device, and a second smart device, where the first wearable device is connected to the first smart device, and the second wearable device is connected to the second smart device. Connected to the second smart device.
  • the networking architecture shown in FIG. 4 the manner in which the first wearable device and the second wearable device detect the occurrence of a social action has been described in the foregoing embodiments, and details are not described herein again.
  • the networking architecture shown in Figure 4 the networking architecture shown in Figure 4:
  • the first wearable device the available wearable network connection capability may include one or more of BT, NFC, WIFI, and zigbee.
  • the first wearable device may connect to the first smart device by using the BT, and the first wearable device may be on the network adaptation layer. Publishing the sharing service (including the first event parameter) by removing other available network connection capabilities other than BT, and discovering the sharing service (including the second event parameter) issued by the second wearing device, wherein the first wearing device issues a sharing service ( The process of including the first event parameter, and discovering the shared service (including the second event parameter) issued by the second wearable device is as described in the previous embodiment, and details are not described herein again.
  • the first wearable device When the first wearable device discovers the shared service (including the second event parameter) issued by the second wearable device by removing the available network connection capability other than the BT, the first wearable device can pass the network adaptation layer.
  • the second available event parameters issued by the second wearable device are obtained by removing the available network connection capabilities other than BT.
  • the second wearable device the available network connection capability may include one or more of BT, NFC, WIFI, and zigbee, and the second wearable device may connect the second smart device by using the BT, and the second wearable device may be on the network adaptation layer. Publishing the sharing service (including the second event parameter) by removing other available network connection capabilities other than BT, and discovering the sharing service (including the first event parameter) issued by the first wearing device, wherein the second wearing device issues the sharing service ( Including the second event parameter), and The process of discovering the shared service (including the first event parameter) issued by the first wearable device is as described in the previous embodiment, and details are not described herein again.
  • the second wearable device When the second wearable device discovers the shared service (including the first event parameter) issued by the first wearable device by removing the available network connection capability other than the BT, the second wearable device can pass the network adaptation layer.
  • the available other network connection capabilities other than BT are used to obtain the first event parameter issued by the first wearable device.
  • the first smart device may receive the first wearable device to send a shared service broadcast request through the BT, and detect that the available smart network connection capability of the first smart device may include WIFI, BT, etc., and the first smart device may be in the network.
  • the distribution layer has a proxy for sharing service requests (including sharing services) through its available network connection capabilities (such as WIFI). Thereby, the first wearable device can be configured to issue the first event parameter by using the available network connection capability of the first smart device.
  • the second smart device may receive the second wearable device to send the shared service broadcast request through the BT, and detect that the second smart device's own available network connection capability may include WIFI, BT, etc., and the second smart device may be in the network.
  • the distribution layer has a proxy for sharing service requests (including sharing services) through its available network connection capabilities (such as WIFI). Thereby, the second wearable device can be configured to issue the second event parameter by using the available network connection capability of the second smart device.
  • the first wearable device may broadcast the sharing service through the first smart device proxy, and the second wearable device may broadcast the sharing service through the second smart device proxy.
  • the first wearable device may send the first user setting information to the second wearable device by removing other available network connection capabilities other than BT, and the second wearable device may also remove other available networks other than BT.
  • the connection capability sends the second user setting information to the first wearable device; further, the first wearable device can send the first user setting information to the second smart device by using the available network connection capability of the first smart device to trigger the first
  • the second smart device sends the first user setting information to the second wearable device; and the second wearable device can also send the second user setting information to the first smart device by using the available network connection capability of the second smart device to trigger the first
  • the smart device sends the second user setting information to the first wearable device. That is to say, the first smart device and the second smart device can proxy the wearable device to complete the exchange of user setting information.
  • the shape of the first user setting information and the second user setting information The formula is as shown in the previous embodiment, and will not be described again here.
  • FIG. 5 is a schematic diagram of a fourth networking architecture disclosed in an embodiment of the present invention.
  • the first smart device is connected to the first wearable device, and the first smart device is connected to the cloud server through a WIFI hotspot (such as a WIFI router) or a cellular network, and the cloud server is connected to the third party service.
  • a WIFI hotspot such as a WIFI router
  • the WIFI hotspot can support a standard protocol such as 802.11a/b/n/c; the second wearable device and the second smart device only have a local BT connection.
  • the networking architecture shown in FIG. 5 the manner in which the first wearable device and the second wearable device detect the occurrence of a social action has been described in the foregoing embodiments, and details are not described herein again.
  • the networking architecture shown in Figure 5 the networking architecture shown in Figure 5:
  • the first wearable device and the second wearable device can respectively pass through the respective The first smart device and the second smart device are connected to the cloud server for status registration, that is, the first smart device can report the network connection status of the first smart device and the first wearable device to the cloud server by using the first smart device.
  • the second user setting information and the first user setting rule; and the second wearing device may report the networking connection state and the first user setting information of the second smart device and the second wearing device to the cloud server by using the second smart device.
  • a second user setting rule The cloud server maintains the state of registration of the first wearable device and the second wearable device, and calibrates the two sets of exchange objects (ie, the first wearable device and the second wearable device) in a "connected" state.
  • the cloud server may extract keywords (such as “xx company CEO” in Table 1) from the personal information included in the second user setting information reported by the first smart device by the first wear device, and pass the The first wearable device searches for the obtained second user background information that matches the keyword by using an authorized third-party search engine (such as Google) included in the first user setting rule reported by the first smart device. Further, the cloud server may send the obtained second user background information to the first wearable device by using the first smart device, so that the first wearable device may acquire the second user background information sent by the cloud server by using the first smart device.
  • keywords such as “xx company CEO” in Table 1
  • Google an authorized third-party search engine
  • the cloud server may report from the second wearable device through the second smart device.
  • the keyword included in the first user setting information is extracted from the personal information (such as "Zhang San” in Table 1), and the second user setting rule reported by the second smart device is included in the second user setting rule.
  • a three-party search engine such as Google
  • the cloud server may send the obtained first user background information to the second wearable device by using the second smart device, so that the second wearable device may acquire the first user background information sent by the cloud server by using the second smart device.
  • the cloud server may obtain third-party service information (such as weather information, from the first wearable device through the third-party service information portal included in the second user setting information reported by the first smart device, to the third-party service system. Temperature information, etc.). Further, the cloud server may send the obtained third-party service information (such as weather information, temperature information, and the like) to the first wearable device by using the first smart device, so that the first wearable device may acquire the cloud server by using the first smart device. Third-party service information (such as weather information, temperature information, etc.) sent.
  • third-party service information such as weather information, from the first wearable device through the third-party service information portal included in the second user setting information reported by the first smart device, to the third-party service system. Temperature information, etc.
  • Third-party service information such as weather information, temperature information, etc.
  • the cloud server may obtain third-party service information (such as weather information, from the third wearable device through the third-party service information portal included in the first user setting information reported by the second smart device. Temperature information, etc.). Further, the cloud server may send the obtained third-party service information (such as weather information, temperature information, and the like) to the second wearable device by using the second smart device, so that the second wearable device can obtain the cloud server by using the second smart device. Third-party service information (such as weather information, temperature information, etc.) sent.
  • third-party service information such as weather information, from the third wearable device through the third-party service information portal included in the first user setting information reported by the second smart device. Temperature information, etc.
  • Third-party service information such as weather information, temperature information, etc.
  • the first smart device can perform IOT device identification in the WIFI-based network.
  • the first wearable device may send the first user setting rule to the first smart device.
  • the device is configured to enable the first smart device to trigger the authorized IOT device to provide the service according to the first user setting rule, wherein the type of the authorized IOT device that can be triggered and the type of the service thereof can refer to Table 2 above.
  • the user can set it himself, or can provide a more subdivided first user setting rule, such as the location where the social action can be triggered and the social event occurs.
  • the outdoor temperature is simultaneously served by a specific IOT device in the corresponding guest mode.
  • the user can also add personal preferences, for example, some users prefer to drink tea, and do not like coffee, the smart device is triggered.
  • the IOT device provides services, it can trigger the IOT tea-making device to provide services according to user setting rules and user preferences, without triggering the coffee machine device to provide services.
  • FIG. 6 is a schematic diagram of a fifth networking architecture disclosed in an embodiment of the present invention.
  • the first smart device is connected to the first wearable device, and the first smart device is connected to the cloud server through a WIFI hotspot (such as a WIFI router) or a cellular network, and the cloud server is connected to the third party service.
  • a WIFI hotspot such as a WIFI router
  • a cellular network such as a WIFI router
  • the WIFI hotspot can support a standard protocol such as 802.11a/b/n/c; the second smart device is connected to the second wearable device, and the second smart device is connected to the WIFI hotspot (such as a WIFI router) Or the cellular network is connected to the cloud server, wherein the second smart device and the physical examination detecting device can be connected to the same WIFI hotspot.
  • the physical detecting device can also be a wearable device.
  • FIG. 6 the manner in which the first wearable device and the second wearable device detect the occurrence of a social action has been described in the foregoing embodiments, and details are not described herein again. Compared with the networking architecture shown in Figure 5, in the networking architecture shown in Figure 6:
  • the second smart device may maintain a communication connection with the vitality detecting device, and the physical sign detecting device may send the detected second user vital sign data synchronization information to the cloud server by using the second smart device. Further, the cloud server may extract the identification information of the authorized vitality detecting device from the second user setting information reported by the first smart device by the first wearing device, and acquire the second user vital sign data reported by the authorized physical sign detecting device.
  • the synchronization information (such as the heart rate), and the second user's vitality data synchronization information that is obtained by the first smart device is sent to the first wearable device, so that the first wearable device acquires the second user's signature sent by the cloud server by using the first smart device. Data synchronization information.
  • the second server vitality data synchronization information on the second wearable device side can be synchronized to the first wearable device by the cloud server, and the second user vitality data synchronization information is
  • the first smart device may trigger the corresponding IOT device to provide a service, for example, according to the second user vitality data synchronization information, if the second user's emotion is found to be relatively tense, the first smart device
  • the device can trigger the IOT speaker device to play soothing music.
  • the second user vital sign data synchronization information obtained by the first wearable device may exist in the following situations:
  • the second user vital sign data synchronization information is sent to the first smart terminal through the cloud server after the second intelligent terminal performs data processing;
  • the second user vital sign data synchronization information is sent to the first smart terminal after being processed by the cloud server for big data;
  • the data processing may include analog-to-digital conversion, digital and graphic conversion, and the like, which are defined by the embodiments of the present invention.
  • FIG. 7 is a schematic structural diagram of a wearable device according to an embodiment of the present invention. As shown in FIG. 7, the wearable device 700 can include:
  • the recording unit 701 is configured to record, when the first user wearing the wearable device 700 has a social action, record a first event parameter corresponding to the social action, where the first event parameter includes a first event time, a first event a location or an identification of the first user;
  • the first acquiring unit 702 is configured to obtain a second event parameter that is sent by the second wearable device, where the second event parameter includes a second event time, a second event location, or an identifier of the second user; the second event parameter is The second wearable device detects an event parameter recorded when the second user wearing the second wearable device generates a social action;
  • the first determining unit 703 is configured to determine whether the first event parameter matches the second event parameter
  • the sending unit 704 is configured to send the first user setting information to the second wearable device when the determination result of the first determining unit 703 matches.
  • the first determining unit 703 may be configured to determine whether the first event time and the second event time match, and/or may be used to determine whether the first event location and the second event location are And, and/or, may be used to determine whether the identifier of the first user matches the identifier of the second user.
  • the first event time includes a first event start time and a first event duration
  • the second event time includes a second event start time and a second event duration
  • the first determining unit 703 determines Whether the first event time matches the second event time includes:
  • the first determining unit 703 determines whether the difference between the first event start time and the second event start time is less than a first set threshold, and if it is less than the first set threshold, the first wearable device determines Determining whether the difference between the first event duration and the second event duration is less than a second set threshold, and if less than the second set threshold, determining that the first event time matches the second event time ;
  • the first determining unit 703 determines whether the first event location matches the second event location, including:
  • the first determining unit 703 determines whether the first event location is the same as the second event location, and if the same, determines that the first event location matches the second event location;
  • the first determining unit 703 determines whether the interval between the first event location and the second event location is less than a preset threshold, and if the preset threshold is less than the preset threshold, determining the first event location and the second event location match;
  • the first determining unit 703 determines whether the identifier of the first user matches the identifier of the second user, including:
  • the first determining unit 703 determines whether the identifier of the first user and the identifier of the second user belong to the same relationship chain user identifier, and if so, determines that the identifier of the first user matches the identifier of the second user.
  • the wearable device 700 shown in FIG. 7 may further include:
  • the social sentence detecting unit 705 is configured to detect whether a social sentence occurs when the first user wearing the wearable device 700 generates a social action, and if yes, trigger the first obtaining unit 702 to perform the obtaining the second wearable device release The operation of the second event parameter.
  • the first obtaining unit 702 is specifically configured to pass through the wearable device 700 itself.
  • the second event parameter issued by the second wearable device is obtained by using the network connection capability; and/or the first obtaining unit 702 is specifically configured to obtain the second event parameter issued by the second wearable device by using the available network connection capability of the first smart device,
  • the wearable device 700 maintains a communication connection with the first smart device;
  • the manner in which the sending unit 704 sends the first user setting information to the second wearable device is specifically:
  • the sending unit 704 is configured to send the first user setting information to the second wearable device by using the available network connection capability of the wearable device 700; and/or for using the available network connection capability of the first smart device to wear the second The device sends the first user setting information.
  • the wearable device 700 shown in FIG. 7 may further include:
  • a publishing unit 706, configured to release the first event parameter recorded by the recording unit 701 by using the available network connection capability of the wearable device 700; and/or for issuing the recording unit 701 through the available network connection capability of the first smart device The first event parameter recorded.
  • the wearable device 700 shown in FIG. 7 may further include:
  • the second obtaining unit 707 is configured to acquire, by using the available network connection capability of the wearable device 700 itself, second user setting information sent by the second wearable device; and/or, for available network connection capability by using the first smart device Obtaining second user setting information sent by the second wearable device;
  • the first event time is matched with the second event time
  • the first event location is matched with the second event location to the wearable device. 700 sent.
  • the first event parameter further includes a first social action type (such as a handshake)
  • the second event parameter may further include a second social action type (such as a handshake)
  • the wearable device 700 further Can include:
  • the second determining unit 708 is configured to determine whether the first social action type is the same as the second social action type. If the same, trigger the first determining unit 703 to perform the foregoing determining whether the first event parameter and the second event parameter match. Operation.
  • the sending unit 704 is further configured to: after the first determining unit 703 determines whether the first event parameter matches the second event parameter, send the first user setting rule to the first smart device, And causing the first smart device to trigger the authorized IOT device to provide the service according to the first user setting rule; wherein the first user setting rule includes the identification information of the at least one authorized IOT device.
  • the first user setting rule further includes identification information of the at least one authorized third-party search engine
  • the second user setting information acquired by the second obtaining unit 707 includes personal information, where:
  • the sending unit 704 is further configured to send the second user setting information and the first user setting rule to the cloud server by using the first smart device;
  • the second obtaining unit 707 is further configured to acquire second user background information sent by the cloud server by using the first smart device, where the second user context information is personal information included by the cloud server from the second user setting information. After extracting the keyword, the second user background information obtained by the authorized third-party search engine is matched with the keyword.
  • the second user setting information acquired by the second obtaining unit 707 further includes an authorized third party service information entry, where:
  • the second obtaining unit 707 is further configured to acquire third-party service information sent by the cloud server by using the first smart device, where the third-party service information is obtained by the cloud server from the third-party service information portal through the third-party service information portal. Third party service information.
  • the second user setting information acquired by the second obtaining unit 707 further includes identification information of the authorized vitality detecting device, where:
  • the second obtaining unit 707 is further configured to acquire the second user vital sign data synchronization information sent by the cloud server by using the first smart device, where the second user vitality data synchronization information is sent by the second smart device to the cloud by the second smart device.
  • the first event time includes a first event start time (ie, a start time of the social action detected by the wearable device 700) and a first event duration (ie, a duration of the social action detected by the wearable device 700)
  • the second event time includes a second event start time (ie, a start time of the social action detected by the second wearable device) and a second event duration (ie, the second wearable device)
  • the determining unit 704 is specifically configured to determine whether the difference between the first event start time and the second event start time is less than a first set threshold (eg, 2 s), if less than Determining, by the first set threshold, whether a difference between the first event duration and the second event duration is less than a second set threshold (eg, 500 ms), and if less than the second set threshold, determining the first event The time matches the second event time; and, determining whether the first event location is the same as the second event location, and if so, determining that the first event location matches the second
  • the first user setting information and the second user setting information may be as shown in Table 1 above, and may include personal information, an authorized third party service information entry, and status information of the authorized vitality detecting device.
  • the embodiment of the invention is not limited.
  • the wearable device as shown in FIG. 7 by applying the wearable device as shown in FIG. 7, the cumbersome manual operation when the information is transmitted including the electronic business card can be omitted, so that the efficiency of information transfer can be effectively improved.
  • the wearable device as shown in FIG. 7 it is possible to efficiently transfer information without requiring the user to manually select the transfer object and information without requiring the user, thereby improving the user's experience in the business environment.
  • FIG. 8 is a schematic structural diagram of another wearable device according to an embodiment of the present invention.
  • the wearable device 800 can include:
  • the wearing device 800 may be various types of smart wearing devices including, but not limited to, a watch, a wristband, a wristband, glasses, a necklace, a ring, an earring, and the like.
  • the I/O system component 803 is configured to implement interaction between the user and the wearable device, that is, information for inputting information to the wearable device and for outputting the wearable device.
  • the I/O system component 803 can include an input unit and an output unit, wherein the input unit can receive user input. Enter numeric or character information to generate a signal input related to user settings or function control.
  • the input unit may be a touch panel, or may be another human-computer interaction interface, such as a physical input key, a microphone, etc., or may be other external information capture devices, such as a camera.
  • a touch panel also known as a touch screen or touch screen, collects operational actions that the user touches or approaches on.
  • the user uses an action of any suitable object or accessory such as a finger or a stylus on or near the touch panel, and drives the corresponding connecting device according to a preset program.
  • the touch panel may include two parts: a touch detection device and a touch controller. Wherein the touch detection device detects a touch operation of the user, converts the detected touch operation into an electrical signal, and transmits the electrical signal to the touch controller; the touch controller receives the electrical signal from the touch detection device, and It is converted into contact coordinates and sent to the processor unit 801. The touch controller can also receive commands from the processor component 801 and execute them.
  • touch panels can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
  • the physical input keys used by the input unit may include but are not limited to one or more of a physical keyboard, function keys (such as volume control buttons, switch buttons, etc.), trackballs, joysticks, and the like.
  • An input unit in the form of a microphone can collect the voice input by the user or the environment and convert it into a command executable by the processor component 801 in the form of an electrical signal.
  • the output unit may include, but is not limited to, an image output unit, a sound output unit, and a tactile output unit.
  • the image output unit is used to output text, pictures, and/or video.
  • the image output unit may include a display panel, such as a display configured in the form of an LCD (Liquid Crystal Display), an OLED (Organic Light-Emitting Diode), or a Field Emission Display (FED). panel.
  • the image output unit may comprise a reflective display, such as an electrophoretic display, or a display that utilizes optical interference modulation techniques.
  • the image output unit may comprise a single display or multiple displays of different sizes.
  • the touch panel used by the input unit can also serve as a display panel of the output unit.
  • the touch panel detects a touch or proximity gesture operation thereon, it is transmitted to the processor component 801 to determine the type of the touch event, and then the processor component 801 presents the display panel according to the type of the touch event. For the corresponding visual output.
  • the input and output functions of the wearable device can be implemented by integrating the touch panel with the display panel.
  • the image output unit can display various graphical user interfaces (GUIs) as virtual control components, including but not limited to windows, scroll axes, icons, and scrapbooks, for the user to touch through. operating.
  • GUIs graphical user interfaces
  • the image output unit includes a filter and an amplifier for filtering and amplifying the video output by the processor unit 801.
  • the sound output unit includes a digital to analog converter for converting the audio signal output by the processor unit 801 from a digital format to an analog format.
  • Processor component 801 is a control center for the wearable device that connects various components of the entire wearable device with various interfaces and lines, by running or executing software programs and/or modules stored within memory component 802, and by calling stored in memory component 802. Data within to perform various functions of the wearable device and/or process data.
  • the processor component 801 may be composed of an integrated circuit (IC), for example, may be composed of a single packaged IC, or may be composed of a plurality of packaged ICs that have the same function or different functions.
  • the processor component 801 may include only a CPU, or may be a combination of a CPU, a digital signal processor (DSP), a graphics processing unit (GPU), and the like.
  • the processor component 801 may be a single computing core, and may also include multiple computing cores.
  • the RF component 804 is configured to establish a communication channel through which the wearable device is connected to the communication peer and communicates with the communication peer through the communication channel.
  • the RF component 804 may include a wireless local area network (Wireless Local Area Network) module (such as a WIFI module), a BT module, an NFC module, a baseband module, and the like.
  • the RF component 804 is used for communication between components in the wearable device and the communication peer, and can support Direct Memory Access.
  • the various communication modules in the RF component 804 are typically in the form of an integrated circuit chip and can be selectively combined without necessarily including all of the communication modules.
  • RF component 804 can include only baseband chips, radio frequency chips, and corresponding antennas to provide communication functionality in a cellular communication system.
  • the wireless communication connection such as wireless local area network (such as WIFI) access or WCDMA access, the wearable device can be connected to a cellular network (Cellular Network) or the Internet (Internet).
  • a communication module, such as a baseband module, in RF component 804 may be integrated into processor component 801, typically an APQ+MDM series platform such as that provided by Qualcomm.
  • the memory component 802 can be used to store software programs and modules, and the processor component 801 executes various functional applications of the wearable device and implements data processing by running software programs and modules stored in the memory component 802.
  • the memory component 802 mainly includes a program storage area and a data storage area, wherein the program storage area can store an operating system, a software program required for at least one function, such as an information transfer program, a text play program, a sound play program, an image play program, and the like.
  • the data store can store data created by the wearable device (such as audio data, phone book, etc.).
  • the memory component 802 can include a volatile memory, such as a non-volatile volatile random access memory (NVRAM), a phase change random access memory (Phase Change RAM, PRAM for short). , a magnetoresistive random access memory (Magetoresistive RAM, MRAM for short), etc., may also include non-volatile memory, such as at least one disk storage device, electronically erasable programmable read-only memory (Electrically Erasable Programmable Read-Only) Memory, referred to as EEPROM), flash memory devices, such as NOR flash memory or NAND flash memory.
  • EEPROM electronically Erasable Programmable Read-Only Memory
  • flash memory devices such as NOR flash memory or NAND flash memory.
  • the non-volatile memory stores the operating system and applications executed by processor component 801.
  • Processor component 801 can load running programs and data from the non-volatile memory into memory and store the digital content in a plurality of storage devices.
  • the operating system includes controls and management of general system tasks such as memory management, storage device control, power management, etc., as well as various components and/or drivers that facilitate communication between various hardware and software.
  • the operating system may be an Android system of Google Inc., an iOS system developed by Apple Inc., or a Windows operating system developed by Microsoft Corporation, or an embedded operating system such as Vxworks.
  • Sensor component 805 can include, but is not limited to, an accelerometer, a gyroscope, a magnetometer, light sensing Various sensors such as GPS, heart rate sensor, blood oxygen sensor, and brain wave sensor.
  • Power component 806 is used to power different components of the wearable device to maintain its operation.
  • the power supply component 806 can be a built-in battery, such as a conventional lithium ion battery, a nickel metal hydride battery, etc., as well as an external power source that directly supplies power to the wearable device, such as an AC adapter.
  • the power supply component 806 can also be more broadly defined, for example, can also include a power management system, a charging system, a power failure detection circuit, a power converter or inverter, and a power status indicator (such as light emitting diodes, as well as any other components associated with the generation, management and distribution of electrical energy of the wearable device.
  • the processor component 801 can be used to invoke an information transfer program stored in the memory component 802 and perform the following operations:
  • the processor component 801 records, when the first user of the wearable device 800 has a social action according to the collected data reported by the sensor component 805, recording a first event parameter corresponding to the social action to the memory component 802, wherein the first event parameter Including a first event time, a first event location, or an identification of the first user; wherein the first event time may be determined by processor component 81 based on its own clock, and the first event location may be comprised by sensor component 805 GPS positioning and reporting to the processor component 801 in real time;
  • the processor component 801 obtains, by the RF component 804, a second event parameter issued by the second wearable device, where the second event parameter includes a second event time, a second event location, or an identifier of the second user; the second event parameter is The second wearable device detects an event parameter recorded when the second user wearing the second wearable device generates a social action;
  • the processor component 801 determines whether the first event parameter matches the second event parameter, and if so, transmits the first user setting information stored in the memory component 802 to the second wearable device via the RF component 804.
  • the processor component 801 determines whether the first event parameter matches the second event parameter, including:
  • the processor component 801 determines whether the first event time matches the second event time, and/ Or determining whether the first event location matches the second event location, and/or determining whether the identifier of the first user matches the identifier of the second user.
  • the first event time includes a first event start time and a first event duration
  • the second event time includes a second event start time and a second event duration
  • the first wearable device Determining whether the first event time matches the second event time includes:
  • the processor component 801 determines whether the difference between the first event start time and the second event start time is less than a first set threshold, and if less than the first set threshold, the processor component 801 determines the first Whether the difference between the event duration and the duration of the second event is less than a second set threshold, and if less than the second set threshold, determining that the first event time matches the second event time;
  • the processor component 801 determines whether the first event location matches the second event location, including:
  • the processor component 801 determines whether the first event location is the same as the second event location, and if so, determining that the first event location matches the second event location;
  • the processor component 801 determines whether the interval between the first event location and the second event location is less than a preset threshold, and if less than a preset threshold, determines that the first event location matches the second event location ;
  • the processor component 801 determines whether the identifier of the first user matches the identifier of the second user, including:
  • the processor component 801 determines whether the identifier of the first user and the identifier of the second user belong to the same relationship chain user identifier, and if so, determines that the identifier of the first user matches the identifier of the second user.
  • processor component 801 invokes an information transfer program stored in memory component 802, and may also perform the following operations:
  • the processor component 801 detects whether a social event occurs through the I/O system component 803 when detecting that the first user wearing the wearable device 800 has a social action according to the collected data reported by the sensor component 805. The statement, if so, performs the step of obtaining, by the RF component 804, a second event parameter issued by the second wearable device.
  • the processor component 801 obtains the second event parameter issued by the second wearable device by using the RF component 804, including:
  • the processor component 801 obtains the second event parameter issued by the second wearable device through the available network connection capability of the RF component 804; and/or the processor component 801 obtains the second wearable device release by using the available network connection capability of the first smart device
  • the second event parameter wherein the RF component 804 maintains a communication connection with the first smart device, that is, the wearable device 800 maintains a communication connection with the first smart device.
  • the processor component 801 sends the first user setting information stored in the memory component 802 to the second wearable device via the RF component 804, including:
  • the processor component 801 transmits the first user setting information to the second wearable device via the available network connection capability of the RF component 804 itself; and/or the processor component 801 passes the available network connection capability of the first smart device to the second wearable device
  • the first user setting information is transmitted, wherein the RF component 804 maintains a communication connection with the first smart device.
  • processor component 801 invokes an information transfer program stored in memory component 802, and may also perform the following operations:
  • the processor component 801 issues the first event parameter through the available network connection capabilities of the RF component 804 itself;
  • the processor component 801 issues the first event parameter via an available network connection capability of the first smart device, wherein the RF component 804 maintains a communication connection with the first smart device.
  • processor component 801 invokes an information transfer program stored in memory component 802, and may also perform the following operations:
  • the processor component 801 obtains the second user setting information sent by the second wearable device by using the available network connection capability of the RF component 804;
  • the processor component 801 acquires second user setting information sent by the second wearing device by using an available network connection capability of the first smart device, wherein the RF component 804 maintains communication with the first smart device. Connecting, wherein the second user setting information is obtained by the second wearable device, determining that the first event time matches the second event time, and the first event location and the second event The location is matched and sent to the wearable device.
  • the first event parameter further includes a first social action type
  • the second event parameter further includes a second social action type
  • the processor component 801 calls the information transfer program stored in the memory component 802, You can also do the following:
  • processor component 801 invokes an information transfer program stored in memory component 802, and may also perform the following operations:
  • the processor component 801 determines that the first event time matches the second event time, and after the first event location matches the second event location, sends the first user setting rule to the first smart device through the RF component 804. So that the first smart device triggers the authorized IOT device to provide the service according to the first user setting rule; wherein the first user setting rule includes the identification information of the at least one authorized IOT device.
  • the first user setting rule further includes identification information of at least one authorized third party search engine
  • the second user setting information includes personal information
  • the processor component 801 calls the memory component 802.
  • the information transfer program stored in it can also perform the following operations:
  • the processor component 801 sends the second user setting information and the first user setting rule to the cloud server by using the first smart device, wherein the RF component 804 maintains a communication connection with the first smart device;
  • the processor component 801 obtains the second user background information sent by the cloud server by using the first smart device, where the second user context information is obtained by the cloud server extracting keywords from the personal information included in the second user setting information.
  • the second user context information obtained by the authorized third party search engine is matched with the keyword.
  • the second user setting information further includes an authorized third party service information entry, and correspondingly, the processor component 801 calls the information transfer program stored in the memory component 802, and To do the following:
  • the processor component 801 acquires third-party service information sent by the cloud server by using the first smart device, wherein the RF component 804 maintains a communication connection with the first smart device, and the third-party service information is accessed by the cloud server through the third-party service information portal. Third-party service information obtained by the third-party service system.
  • the second user setting information further includes identification information of the authorized vital sign detecting device.
  • the processor component 801 calls the information transfer program stored in the memory component 802, and may also perform the following operations:
  • the processor component 801 acquires the second user vital sign data synchronization information sent by the cloud server by using the first smart device, where the second user vitality data synchronization information is sent by the second smart device to the cloud server, where the RF Component 804 maintains a communication connection with the first smart device and the second wear device maintains a communication connection with the second smart device.
  • the first event time includes a first event start time (ie, a start time of the social action detected by the wearable device) and a first event duration (ie, a duration of the social action detected by the wearable device)
  • the second event time includes a second event start time (ie, a start time of the social action detected by the second wearable device) and a second event duration (ie, a duration of the social action detected by the second wearable device)
  • the processor component 801 determines whether the first event time matches the second event time, and whether the first event location matches the second event location, including:
  • the processor component 801 determines whether the difference between the first event start time and the second event start time is less than a first set threshold (eg, 2s), and if less than the first set threshold, the processor component 801 determines the first event. Whether the difference between the duration and the duration of the second event is less than a second set threshold (eg, 500 ms), and if less than the second set threshold, determining that the first event time matches the second event time; and, the processor The component 801 determines whether the first event location (also referred to as the location where the wearable device detects the social action) is the same as the second event location (also referred to as the location where the second wearable device detects the social action), if the same, determining The first event location matches the second event location.
  • a first set threshold eg, 2s
  • the size of the first set threshold and the second set threshold may be set as needed.
  • the embodiment of the present invention is not limited.
  • the first user setting information and the second user setting information may be as shown in Table 1, including personal information, authorized third party service information entry, and status information of the authorized vitality detecting device, and the present invention
  • Table 1 including personal information, authorized third party service information entry, and status information of the authorized vitality detecting device, and the present invention The embodiment is not limited.
  • the first user setting rule is as shown in Table 2.
  • the embodiment of the present invention is not limited.
  • the wearable device as shown in FIG. 8 by applying the wearable device as shown in FIG. 8, the cumbersome manual operation when the information is transmitted including the electronic business card can be omitted, so that the efficiency of information transfer can be effectively improved.
  • the wearable device as shown in FIG. 8 the information can be efficiently transmitted without requiring the user to manually select the transfer object and information without the user's perception, thereby improving the user's experience in the business environment.
  • the triggering of social actions (such as handshake) between the wearable devices can intelligently combine the specific scenarios to perform the linkage service of the IOT device.
  • the linkage service of the IOT device can be triggered according to a combination of user settings, user physical data, and third-party service information (such as weather, location information), so as to have a better experience when socializing.
  • the triggering of social actions can not only exchange information, but also push more background information of communication objects. For example, keywords can be extracted from personal information for background information retrieval and pushed to the user, so that the user's experience in communication can be improved, and the record can be saved.
  • the triggering of social actions (such as handshake) between wearable devices can synchronize the data analysis results of more physical detection devices, so that you can better understand your communication objects and improve communication efficiency.
  • the result of the data analysis may be an analysis result of detecting the concentration of the person's attention by the eyeball, the brain wave, or the like, or a heartbeat or blood detected by the wristwatch or other IOT device.
  • the mental stress of the data such as oxygen is analyzed, so that attention can be paid to the change of attention of the communication subject.
  • the embodiments of the present invention can derive various application scenarios based on social actions (except that the handshake can include many types), and in various application scenarios, the user can adjust himself by knowing the background information and physical condition of the communication object. The way of expression, thus improving the communication effect with the exchange object.
  • first”, “second”, and the like are only used for distinguishing from each other, and are not indicative of their importance, order, and the like.
  • first wearing device “second wearing device” and the like for distinguishing wearing devices having different values do not mean that they have different types.
  • the storage medium includes a read-only memory (ROM), a random access memory (RAM), a programmable read-only memory (PROM), and an erasable programmable read-only memory (Erasable).
  • ROM read-only memory
  • RAM random access memory
  • PROM programmable read-only memory
  • Erasable erasable programmable read-only memory
  • EPROM Programmable Read Only Memory
  • OTPROM One-Time Programmable Read-Only Memory
  • EEPROM Electronically-Erasable Programmable Read-Only Memory
  • CD-ROM Compact Disc Read-Only Memory
  • CD-ROM Compact Disc Read-Only Memory

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Abstract

一种基于穿戴设备的信息传递方法及相关设备。该方法包括:第一穿戴设备在检测到穿戴有第一穿戴设备的第一用户发生社交动作时,记录社交动作对应的第一事件参数,第一事件参数包括第一事件时间、第一事件地点或者第一用户的标识;第一穿戴设备获得第二穿戴设备发布的第二事件参数,第二事件参数包括第二事件时间、第二事件地点或者第二用户的标识;第二事件参数是第二穿戴设备检测到穿戴有第二穿戴设备的第二用户发生社交动作时记录的事件参数;第一穿戴设备判断第一事件参数与所述第二事件参数是否匹配,如果匹配,第一穿戴设备向所述第二穿戴设备发送第一用户设定信息。实施本发明实施例,可以有效地提升信息传递的效率。

Description

一种基于穿戴设备的信息传递方法及相关设备
本申请要求于2015年3月31日提交中国专利局、申请号为201510149714.3,发明名称为“一种基于穿戴设备的信息传递方法及相关设备”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及通信技术领域,尤其涉及一种基于穿戴设备的信息传递方法及相关设备。
背景技术
在商务环境中,名片传递作为一种信息传递方法被商务人士广泛使用。其中,名片传递除了包括传统的纸质名片传递之外,还包括新兴的电子名片传递。在实际应用中,用户可以通过操作智能手机来传递电子名片。例如,用户可以操作智能手机扫描周围的用户设备(如手机、平板电脑等),并且用户可以操作智能手机选择扫描出的任意一个用户设备作为交互对象,进一步地用户可以操作智能手机选择电子名片传递给作为交互对象的用户设备,从而实现电子名片传递。然而在实践中发现,上述电子名片的传递方式需要用户进行繁琐的手动操作,从而降低了信息传递的效率。
发明内容
本发明实施例公开一种基于穿戴设备的信息传递方法及相关设备,能够有效地提升信息传递的效率。
本发明实施例第一方面公开一种基于穿戴设备的信息传递方法,包括:
第一穿戴设备在检测到穿戴有所述第一穿戴设备的第一用户发生社交动作时,记录所述社交动作对应的第一事件参数,所述第一事件参数包括第一事件时间、第一事件地点或者所述第一用户的标识;
所述第一穿戴设备获得第二穿戴设备发布的第二事件参数,所述第二事件 参数包括第二事件时间、第二事件地点或者第二用户的标识;所述第二事件参数是所述第二穿戴设备检测到穿戴有所述第二穿戴设备的所述第二用户发生社交动作时记录的事件参数;
所述第一穿戴设备判断所述第一事件参数与所述第二事件参数是否匹配,如果匹配,所述第一穿戴设备向所述第二穿戴设备发送第一用户设定信息。
在本发明实施例第一方面的第一种可能的实现方式中,所述第一穿戴设备判断所述第一事件参数与所述第二事件参数是否匹配,包括:
所述第一穿戴设备判断所述第一事件时间与所述第二事件时间是否匹配,和/或,判断所述第一事件地点与所述第二事件地点是否匹配,和/或,判断所述第一用户的标识与所述第二用户的标识是否匹配。
结合本发明实施例第一方面的第一种可能的实现方式,在本发明实施例第一方面的第二种可能的实现方式中,所述第一事件时间包括第一事件开始时间和第一事件持续时间,所述第二事件时间包括第二事件开始时间和第二事件持续时间,所述第一穿戴设备判断所述第一事件时间与所述第二事件时间是否匹配,包括:
所述第一穿戴设备判断所述第一事件开始时间与所述第二事件开始时间的差值是否小于第一设定阈值,如果小于所述第一设定阈值,所述第一穿戴设备判断所述第一事件持续时间与所述第二事件持续时间的差值是否小于第二设定阈值,如果小于所述第二设定阈值,确定所述第一事件时间与所述第二事件时间匹配;
所述第一穿戴设备判断所述第一事件地点与所述第二事件地点是否匹配,包括:
所述第一穿戴设备判断所述第一事件地点与所述第二事件地点是否相同,如果相同,确定所述第一事件地点与所述第二事件地点匹配;
或者,所述第一穿戴设备判断所述第一事件地点与所述第二事件地点之间的间隔是否小于预设阈值,如果小于预设阈值确定所述第一事件地点与所述第 二事件地点匹配;
所述第一穿戴设备判断所述第一用户的标识与所述第二用户的标识是否匹配,包括:
所述第一穿戴设备判断所述第一用户的标识与所述第二用户的标识是否属于同一关系链用户标识,如果属于,确定所述第一用户的标识与所述第二用户的标识匹配。
结合本发明实施例第一方面或本发明实施例第一方面的第一种至第二种中任一种可能的实现方式,在本发明实施例第一方面的第三种可能的实现方式中,所述方法还包括:
第一穿戴设备在检测到穿戴有所述第一穿戴设备的第一用户发生社交动作时,检测是否发生社交语句,如果是,执行所述的获得第二穿戴设备发布的第二事件参数的步骤。
结合本发明实施例第一方面的第三种可能的实现方式,在本发明实施例第一方面的第四种可能的实现方式中,所述第一穿戴设备获得第二穿戴设备发布的第二事件参数,包括:
所述第一穿戴设备通过自身的可用网络连接能力获得第二穿戴设备发布的第二事件参数;和/或,所述第一穿戴设备通过第一智能设备的可用网络连接能力获得第二穿戴设备发布的第二事件参数,其中,所述第一穿戴设备与所述第一智能设备具有通信连接;
所述第一穿戴设备向所述第二穿戴设备发送第一用户设定信息,包括:
所述第一穿戴设备通过所述自身的可用网络连接能力向所述第二穿戴设备发送第一用户设定信息;和/或,所述第一穿戴设备通过所述第一智能设备的可用网络连接能力向所述第二穿戴设备发送第一用户设定信息。
结合本发明实施例第一方面的第四种可能的实现方式,在本发明实施例第一方面的第五种可能的实现方式中,所述方法还包括:
所述第一穿戴设备通过所述自身的可用网络连接能力发布所述第一事件 参数;
和/或,所述第一穿戴设备通过所述第一智能设备的可用网络连接能力发布所述第一事件参数。
结合本发明实施例第一方面的第五种可能的实现方式,在本发明实施例第一方面的第六种可能的实现方式中,所述方法还包括:
所述第一穿戴设备通过所述自身的可用网络连接能力获取所述第二穿戴设备发送的第二用户设定信息;
和/或,所述第一穿戴设备通过所述第一智能设备的可用网络连接能力获取所述第二穿戴设备发送的第二用户设定信息;
其中,所述第二用户设定信息由所述第二穿戴设备获取到所述第一事件参数之后,判断所述第一事件时间与所述第二事件时间匹配,以及所述第一事件地点与所述第二事件地点匹配之后向所述第一穿戴设备发送。
结合本发明实施例第一方面的第六种可能的实现方式,在本发明实施例第一方面的第七种可能的实现方式中,所述第一穿戴设备判断所述第一事件参数与所述第二事件参数匹配之后,所述方法还包括:
所述第一穿戴设备将第一用户设定规则发送给所述第一智能设备,以使所述第一智能设备依据所述第一用户设定规则触发授权的物联网设备提供服务;其中,所述第一用户设定规则包括至少一个授权的物联网设备的标识信息。
结合本发明实施例第一方面的第七种可能的实现方式,在本发明实施例第一方面的第八种可能的实现方式中,所述第一用户设定规则还包括至少一个授权的第三方搜索引擎的标识信息,所述第二用户设定信息包括个人信息,所述方法还包括:
所述第一穿戴设备通过所述第一智能设备向云服务器发送所述第二用户设定信息以及所述第一用户设定规则;
所述第一穿戴设备通过所述第一智能设备获取所述云服务器发送的第二用户背景信息,其中,所述第二用户背景信息是由所述云服务器从所述第二用 户设定信息包括的个人信息中提取关键字之后,通过所述授权的第三方搜索引擎搜索获得的与所述关键字相匹配的第二用户背景信息。
结合本发明实施例第一方面的第八种可能的实现方式,在本发明实施例第一方面的第九种可能的实现方式中,所述第二用户设定信息还包括授权的第三方服务信息入口,所述方法还包括:
所述第一穿戴设备通过所述第一智能设备获取所述云服务器发送的第三方服务信息,其中,所述第三方服务信息是由所述云服务器通过所述第三方服务信息入口向第三方服务***获取的第三方服务信息。
结合本发明实施例第一方面的第九种可能的实现方式,在本发明实施例第一方面的第十种可能的实现方式中,所述第二用户设定信息还包括授权的体征检测设备的标识信息,所述方法还包括:
所述第一穿戴设备通过所述第一智能设备获取所述云服务器发送的第二用户体征数据同步信息,所述第二用户体征数据同步信息是所述授权的体征检测设备通过第二智能设备发送至所述云服务器的,其中,所述第二穿戴设备与所述第二智能设备保持通信连接。
结合本发明实施例第一方面或本发明实施例第一方面的第一种至第二种中任一种可能的实现方式,在本发明实施例第一方面的第十一种可能的实现方式中,所述第一用户设定信息包括个人信息、授权的第三方服务信息入口以及授权的体征检测设备的状态信息。
本发明实施例第二方面公开一种穿戴设备,包括:
记录单元,用于在检测到穿戴有所述穿戴设备的第一用户发生社交动作时,记录所述社交动作对应的第一事件参数,所述第一事件参数包括第一事件时间、第一事件地点或者所述第一用户的标识;
第一获取单元,用于获得第二穿戴设备发布的第二事件参数,所述第二事件参数包括第二事件时间、第二事件地点或者第二用户的标识;所述第二事件参数是所述第二穿戴设备检测到穿戴有所述第二穿戴设备的所述第二用户发 生社交动作时记录的事件参数;
第一判断单元,用于判断所述第一事件参数与所述第二事件参数是否匹配;
发送单元,用于在所述第一判断单元的判断结果为匹配时,向所述第二穿戴设备发送第一用户设定信息。
在本发明实施例第二方面的第一种可能的实现方式中,所述第一判断单元用于判断所述第一事件时间与所述第二事件时间是否匹配,和/或,用于判断所述第一事件地点与所述第二事件地点是否匹配,和/或,用于判断所述第一用户的标识与所述第二用户的标识是否匹配。
结合本发明实施例第二方面的第一种可能的实现方式,在本发明实施例第二方面的第二种可能的实现方式中,所述第一事件时间包括第一事件开始时间和第一事件持续时间,所述第二事件时间包括第二事件开始时间和第二事件持续时间,所述第一判断单元判断所述第一事件时间与所述第二事件时间是否匹配,包括:
所述第一判断单元判断所述第一事件开始时间与所述第二事件开始时间的差值是否小于第一设定阈值,如果小于所述第一设定阈值,判断所述第一事件持续时间与所述第二事件持续时间的差值是否小于第二设定阈值,如果小于所述第二设定阈值,确定所述第一事件时间与所述第二事件时间匹配;
所述第一判断单元判断所述第一事件地点与所述第二事件地点是否匹配,包括:
所述第一判断单元判断所述第一事件地点与所述第二事件地点是否相同,如果相同,确定所述第一事件地点与所述第二事件地点匹配;
或者,所述第一判断单元判断所述第一事件地点与所述第二事件地点之间的间隔是否小于预设阈值,如果小于预设阈值确定所述第一事件地点与所述第二事件地点匹配;
所述第一判断单元判断所述第一用户的标识与所述第二用户的标识是否 匹配,包括:
所述第一判断单元判断所述第一用户的标识与所述第二用户的标识是否属于同一关系链用户标识,如果属于,确定所述第一用户的标识与所述第二用户的标识匹配。
结合本发明实施例第二方面或本发明实施例第二方面的第一种至第二种中任一种可能的实现方式,在本发明实施例第二方面的第三种可能的实现方式中,还包括:
社交语句检测单元,用于在检测到穿戴有所述穿戴设备的第一用户发生社交动作时,检测是否发生社交语句,如果是,触发所述第一获取单元执行所述的获得第二穿戴设备发布的第二事件参数的操作。
结合本发明实施例第二方面的第三种可能的实现方式,在本发明实施例第二方面的第四种可能的实现方式中,所述第一获取单元具体用于通过所述穿戴设备自身的可用网络连接能力获得第二穿戴设备发布的第二事件参数;和/或,所述第一获取单元通过第一智能设备的可用网络连接能力获得第二穿戴设备发布的第二事件参数,其中,所述穿戴设备与所述第一智能设备具有通信连接;
其中,所述发送单元向所述第二穿戴设备发送第一用户设定信息的方式具体为:
所述发送单元用于通过所述穿戴设备自身的可用网络连接能力向所述第二穿戴设备发送第一用户设定信息;和/或,用于通过所述第一智能设备的可用网络连接能力向所述第二穿戴设备发送第一用户设定信息。
结合本发明实施例第二方面的第四种可能的实现方式,在本发明实施例第二方面的第五种可能的实现方式中,所述穿戴设备还包括:
发布单元,用于通过所述穿戴设备自身的可用网络连接能力发布所述第一事件参数;和/或,用于通过所述第一智能设备的可用网络连接能力发布所述第一事件参数。
结合本发明实施例第二方面的第五种可能的实现方式,在本发明实施例第 二方面的第六种可能的实现方式中,所述穿戴设备还包括:
第二获取单元,用于通过穿戴设备自身的可用网络连接能力获取所述第二穿戴设备发送的第二用户设定信息;和/或,用于通过所述第一智能设备的可用网络连接能力获取所述第二穿戴设备发送的第二用户设定信息;
其中,所述第二用户设定信息由所述第二穿戴设备获取到所述第一事件参数之后,判断所述第一事件时间与所述第二事件时间匹配,以及所述第一事件地点与所述第二事件地点匹配之后向所述穿戴设备发送。
结合本发明实施例第二方面的第六种可能的实现方式,在本发明实施例第二方面的第七种可能的实现方式中,所述发送单元,还用于在所述第一判断单元判断所述第一事件参数与所述第二事件参数匹配之后,将第一用户设定规则发送给所述第一智能设备,以使所述第一智能设备依据所述第一用户设定规则触发授权的物联网设备提供服务;其中,所述第一用户设定规则包括至少一个授权的物联网设备的标识信息。
结合本发明实施例第二方面的第七种可能的实现方式,在本发明实施例第二方面的第八种可能的实现方式中,所述第一用户设定规则还包括至少一个授权的第三方搜索引擎的标识信息,所述第二用户设定信息包括个人信息,其中:
所述发送单元,还用于通过所述第一智能设备向云服务器发送所述第二用户设定信息以及所述第一用户设定规则;
所述第二获取单元,还用于通过所述第一智能设备获取所述云服务器发送的第二用户背景信息,其中,所述第二用户背景信息是由所述云服务器从所述第二用户设定信息包括的个人信息中提取关键字之后,通过所述授权的第三方搜索引擎搜索获得的与所述关键字相匹配的第二用户背景信息。
结合本发明实施例第二方面的第八种可能的实现方式,在本发明实施例第二方面的第九种可能的实现方式中,所述第二用户设定信息还包括授权的第三方服务信息入口,其中:
所述第二获取单元,还用于通过所述第一智能设备获取所述云服务器发送 的第三方服务信息,其中,所述第三方服务信息是由所述云服务器通过所述第三方服务信息入口向第三方服务***获取的第三方服务信息。
结合本发明实施例第二方面的第九种可能的实现方式,在本发明实施例第二方面的第十种可能的实现方式中,所述第二用户设定信息还包括授权的体征检测设备的标识信息,其中:
所述第二获取单元,还用于通过所述第一智能设备获取所述云服务器发送的第二用户体征数据同步信息,所述第二用户体征数据同步信息是所述授权的体征检测设备通过第二智能设备发送至所述云服务器的,其中,所述第二穿戴设备与所述第二智能设备保持通信连接。
结合本发明实施例第二方面或本发明实施例第二方面的第一种至第二种中任一种可能的实现方式,在本发明实施例第二方面的第十一种可能的实现方式中,所述第一用户设定信息包括个人信息、授权的第三方服务信息入口以及授权的体征检测设备的状态信息。
本发明实施例中,第一穿戴设备在检测到穿戴有第一穿戴设备的第一用户发生社交动作时,可以记录社交动作对应的包括第一事件时间、第一事件地点或者第一用户的标识的第一事件参数;相应地,第二穿戴设备检测到穿戴有第二穿戴设备的第二用户发生社交动作时,也可以记录包括第二事件时间、第二事件地点或者第二用户的标识的第二事件参数并发布第二事件参数,这样第一穿戴设备在获取到第二穿戴设备发布的第二事件参数之后,如果判断第一事件参数与第二事件参数匹配,那么第一穿戴设备可以确定第二穿戴设备作为传递对象,相应地,第一穿戴设备可以向第二穿戴设备发送第一用户设定信息。可见,通过实施本发明实施例,可以省去包括电子名片在内的信息传递时的繁琐手动操作,从而能够有效地提升信息传递的效率。此外,通过实施本发明实施例,可以在无需用户手动操作选择传递对象和信息、无需用户感知的情况下高效地传递信息,从而可以提高用户在商务环境中的体验。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例公开的第一种组网架构的示意图;
图2是本发明实施例公开的一种基于穿戴设备的信息传递方法的流程示意图;
图3是本发明实施例公开的第二种组网架构的示意图;
图4是本发明实施例公开的第三种组网架构的示意图;
图5是本发明实施例公开的第四种组网架构的示意图;
图6是本发明实施例公开的第五种组网架构的示意图;
图7是本发明实施例公开的一种穿戴设备的结构示意图;
图8是本发明实施例公开的另一种穿戴设备的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例公开一种基于穿戴设备的信息传递方法及相关设备,能够有效地提升信息传递的效率。以下分别进行详细说明。
为了更好理解本发明实施例公开的基于穿戴设备的信息传递方法及相关 设备,下面先对本发明实施例适用的组网架构进行描述。请参阅图1,图1是本发明实施例公开的第一种组网架构示意图。如图1所示,该组网架构可以包括第一穿戴设备和第二穿戴设备,其中,第一穿戴设备、第二穿戴设备均是独立的穿戴设备,也即是说,第一穿戴设备、第二穿戴设备没有连接手机、平板电脑等其他智能设备。举例来说,在一些商务环境中,第一穿戴设备、第二穿戴设备可以分别携带在两个不同的商务人士身上,并且第一穿戴设备、第二穿戴设备没有连接商务人士的手机、平板电脑等其他智能设备。其中,第一穿戴设备、第二穿戴设备包括但不限于智能手表、手智能环、智能腕带、智能眼镜、智能项链、智能戒指、智能耳环等各类智能的穿戴设备。在实际应用中,第一穿戴设备、第二穿戴设备自身可以提供BT(蓝牙),NFC(近场通信),WIFI,Zigbee等各种可用网络连接能力。而且,第一穿戴设备、第二穿戴设备还可以内置加速度计、陀螺仪、磁力计、光线传感器、GPS、心率传感器、血氧传感器、脑电波传感器等各类传感器以及麦克风、扬声器等I/O部件。在实际应用中,第一穿戴设备、第二穿戴设备除了可以根据时钟来获得时间信息,还可以利用上述各类传感器有效地检测用户的动作(如握手、拥抱、跑步、行走等)、用户体征数据(如心率、脑电波、血氧、血压、脑电波状态等)以及地点(即位置)。基于图1所示的组网架构,第一穿戴设备与第二穿戴设备之间可以省去包括电子名片在内的信息传递时的繁琐手动操作,从而能够有效地提升信息传递的效率。此外,基于图1所示的组网架构,第一穿戴设备与第二穿戴设备之间在无需用户手动操作选择传递对象和信息,无需用户感知的情况下实现高效地传递信息,可以提高用户在商务环境中的体验。
基于图1所示的组网架构,本发明实施例公开了的一种基于穿戴设备的信息传递方法。请参阅图2,图2是本发明实施例公开的一种基于穿戴设备的信息传递方法的流程示意图。如图2所示,该基于穿戴设备的信息传递方法可以包括以下步骤。
201、第一穿戴设备在检测到穿戴有第一穿戴设备的第一用户发生社交动 作时,记录该社交动作对应的第一事件参数,该第一事件参数包括第一事件时间、第一事件地点或者第一用户的标识。
本发明实施例中,第一穿戴设备(如手表)可以收集自身的陀螺仪、加速度计等传感器数据,并且通过陀螺仪、加速度计等传感器数据来检测穿戴有第一穿戴设备的第一用户是否发生社交动作(如握手、拥抱等)。以握手作为社交动作为例,第一穿戴设备可以利用FDSVM算法从陀螺仪、加速度计等传感器数据中提取信号特征,举例来说,陀螺仪、加速度计的信号特征可以是x、y、z轴三个维度上的加速度时域方差等,进一步地,在提取了陀螺仪、加速度计的信号特征之后,第一穿戴设备可以利用多类SVM算法进行握手动作识别。在实际应用中,第一穿戴设备也可以使用其他更复杂算法组合来进行信号特征提取以及握手动作识别,本发明实施例不作限定。
本发明实施例中,第一穿戴设备在检测到发生社交动作(如握手)时,可以记录该社交动作对应的第一事件时间,该第一事件时间可以包括第一事件开始时间(又称为第一穿戴设备检测到的社交动作的开始时间)和第一事件持续时间(又称为第一穿戴设备检测到的社交动作的持续时间),其中,第一事件持续时间通常是以毫秒(ms)为单位。
本发明实施例中,第一穿戴设备在检测到发生社交动作(如握手)时,可以记录第一穿戴设备的GPS定位出的第一事件地点(又称为第一穿戴设备检测到社交动作的地点)。
在一个实施例中,第一穿戴设备也可以连接外部的GPS设备,外部的GPS设备可以实时向第一穿戴设备推送检测到的地点,相应地,第一穿戴设备在检测到发生社交动作(如握手)时,可以记录外部的GPS设备推送的地点,并将该地点作为第一事件地点(又称为第一穿戴设备检测到社交动作的地点)。
相应地,本发明实施例中,第一穿戴设备可以将记录的第一事件时间、第一事件地点或第一用户的标识作为该社交动作对应的第一事件参数进行存储以及后续进行发布等操作。其中,第一用户的标识可以是第一用户的手机号码、 社交账号等,本发明实施例不作限定。
在一个实施例中,第一穿戴设备可以将记录的第一事件时间、第一事件地点或第一用户的标识作为该社交动作对应的第一事件参数进行存储以及后续进行发布等操作。
202、第一穿戴设备获得第二穿戴设备发布的第二事件参数,第二事件参数包括第二事件时间、第二事件地点或者第二用户的标识;其中,第二事件参数是第二穿戴设备检测到穿戴有第二穿戴设备的第二用户发生社交动作时记录的事件参数。
在图1所示的组网架构中,第二穿戴设备在检测到穿戴有第二穿戴设备的第二用户发生社交动作时,也会相应地记录该社交动作对应的第二事件参数,该第二事件参数可以包括第二事件时间、第二事件地点或第二用户的标识,其中,第二穿戴设备检测到发生社交动作的方式可以和第一穿戴设备检测到发生社交动作的方式相同,本发明实施例不作复述。其中,该第二事件时间可以包括第二事件开始时间(又称为第二穿戴设备检测到的社交动作的开始时间)和第二事件持续时间(又称为第二穿戴设备检测到的社交动作的持续时间),其中,第二事件持续时间通常也是以毫秒(ms)为单位。其中,第二穿戴设备在检测到发生社交动作(如握手)时,也可以收集第二穿戴设备的GPS定位出的第二事件地点(又称为第二穿戴设备检测到社交动作的地点)。在一个实施例中,第二穿戴设备也可以连接外部的GPS设备,外部的GPS设备可以实时向第二穿戴设备推送检测到的地点,相应地,第二穿戴设备在检测到发生社交动作(如握手)时,可以记录外部的GPS设备推送的地点,并将该地点作为第二事件地点(又称为第二穿戴设备检测到社交动作的地点)。
相应地,第二穿戴设备可以将记录的第二事件时间、第二事件地点或者第二用户的标识作为该社交动作对应的第二事件参数进行存储以及发布。其中,第二用户的标识可以是第二用户的手机号码、社交账号等,本发明实施例不作限定。
在图1所示的组网架构中,由于第一穿戴设备、第二穿戴设备均没有连接手机、平板电脑等其他智能设备,因此,第二穿戴设备将记录的第二事件时间以及第二事件地点作为该社交动作对应的第二事件参数之后,第二穿戴设备可以通过第二穿戴设备自身的可用网络连接能力(如NFC)来发布包括第二事件时间和第二事件地点的第二事件参数,相应地,第一穿戴设备也可以通过自身的可用网络连接能力(如NFC)来获取第二穿戴设备发布的第二事件参数。
203、第一穿戴设备判断第一事件参数与第二事件参数是否匹配,如果匹配,如果匹配,向第二穿戴设备发送第一用户设定信息。
在一个实施例中,该第一事件参数还可以包括第一社交动作类型(如握手),该第二事件参数还也可以包括第二社交动作类型(如握手),那么相应地,第一穿戴设备执行步骤201和202之后,还可以先执行以下步骤:
第一穿戴设备判断该第一社交动作类型与该第二社交动作类型是否相同,如果相同,执行步骤203;反之,不执行步骤203。其中,通过此步骤,可以提升向第二穿戴设备发送第一用户设定信息的准确性。
本发明实施例中,第一穿戴设备判断第一事件参数与第二事件参数是否匹配可以包括:
第一穿戴设备判断第一事件时间与第二事件时间是否匹配,和/或,判断第一事件地点与第二事件地点是否匹配,和/或,判断第一用户的标识与第二用户的标识是否匹配。
本发明实施例中,由于第一事件时间可以包括第一事件开始时间和第一事件持续时间,而且第二事件时间可以包括第二事件开始时间和第二事件持续时间,相应地,第一穿戴设备判断第一事件时间与第二事件时间是否匹配的具体实现方式可以为:
第一穿戴设备判断第一事件开始时间与第二事件开始时间的差值是否小于第一设定阈值(如2s),如果小于第一设定阈值,那么第一穿戴设备可以判断第一事件持续时间与第二事件持续时间的差值是否小于第二设定阈值(如 500ms),如果小于第二设定阈值,确定第一事件时间与第二事件时间匹配。
相应地,第一穿戴设备判断第一事件地点与第二事件地点是否匹配的具体实现方式可以为:
第一穿戴设备可以判断第一事件地点与第二事件地点是否相同,如果相同,可以确定第一事件地点与第二事件地点匹配。
或者,第一穿戴设备可以判断第一事件地点与第二事件地点之间的间隔是否小于预设阈值,如果小于预设阈值确定第一事件地点与第二事件地点匹配。
相应地,第一穿戴设备判断第一用户的标识与第二用户的标识是否匹配的具体实现方式可以为:
第一穿戴设备判断第一用户的标识与第二用户的标识是否属于同一关系链用户标识,如果属于,确定第一用户的标识与第二用户的标识匹配。
其中,上述的第一设定阈值和第二设定阈值、预设阈值的大小可以根据需要进行设置,本发明实施例不作限定。
本发明实施例中,如果第一穿戴设备判断第一事件开始时间与第二事件开始时间的差值大于等于第一设定阈值(如2s),或者,如果第一穿戴设备判断第一事件开始时间与第二事件开始时间的差值小于第一设定阈值(如2s),但是第一穿戴设备判断第一事件持续时间与第二事件持续时间的差值大于等于第二设定阈值(如500ms),则可以确定第一事件时间与第二事件时间不匹配;本发明实施例中,如果第一穿戴设备判断第一事件地点与第二事件地点不相同,则可以确定第一事件地点与第二事件地点不匹配。
本发明实施例中,第一穿戴设备判断该第一事件时间与该第二事件时间匹配,以及判断该第一事件地点与该第二事件地点匹配时,可以确定携带第一穿戴设备的商务人士与携带第二穿戴设备的商务人士之间发生握手等社交动作,此时第二穿戴设备作为第一穿戴设备的传递对象(或称为服务对象),相应地,第一穿戴设备可以向第二穿戴设备发送第一用户设定信息。其中,第一用户设定信息是指第一穿戴设备上存储的用户设定信息。
在图1所示的组网架构中,由于第一穿戴设备、第二穿戴设备均没有连接手机、平板电脑等其他智能设备,因此,第一穿戴设备判断该第一事件时间与该第二事件时间匹配,以及判断该第一事件地点与该第二事件地点匹配之后,第一穿戴设备可以通过自身的可用网络连接能力(如NFC)向第二穿戴设备发送第一用户设定信息;相应地,第二穿戴设备可以通过自身的可用网络连接能力(如NFC)来获取第一穿戴设备发送的第一用户设定信息。
本发明实施例中,第一穿戴设备在检测到发生社交动作时,还可以执行以下操作:
网络状态确定:
第一:第一穿戴设备进行自身的可用网络连接能力和网络连接状态判断。
其中,第一穿戴设备自身的可用网络连接能力可以包括BT、NFC、WIFI等各种可用网络连接能力,本发明实施例不作限定。其中,第一穿戴设备的网络连接状态可以包括第一穿戴设备连接智能设备或第一穿戴设备未连接智能设备。
第二:如果第一穿戴设备的网络连接状态为第一穿戴设备未连接智能设备,则第一穿戴设备可以在网络适配层上通过多种可用网络连接能力发布上述的第一事件参数;如果第一穿戴设备的网络连接状态为第一穿戴设备连接智能设备,则第一穿戴设备除了可以在网络适配层上通过多种可用网络连接能力发布上述的第一事件参数之外,还可以通过已连接的智能终端的可用网络连接能力发布上述的第一事件参数。
本发明实施例中,上述的第一事件参数可以采用分享服务的形式进行发布。其中,发布一个分享服务的过程可以如下:
第一:分配一个临时的网络地址,比如分配一个前缀为169.254.xxx.xxx(如169.254.150.84)的IP地址,并在网络中宣告此地址,如果没有响应则认为此地址可用分配给自己。
第二:为自身命名(如eds-xxx.local),并在网络中宣告该名称,如果无响 应则认为此名称可以命名给自己。
第三:开启自身的分享服务,如通过TCP端口1010开启自身的分享服务。
第四:在网络中利用比如广播消息(如mDNS消息)宣告分享服务。其中,分享服务可以包括分享服务类型(或称为服务类型)、穿戴设备名称(或称为服务名称)、第一事件地点(或称为服务地点,即检测到社交动作的地点)、第一事件时间(或称为服务时间,包括第一事件开始时间及第一事件持续时间)、社交动作类型、网络连接状态、可用网络连接能力(如NFC/BT/WIFI等)。
发现一个分享服务过程:
第一:在网络中发布查询消息,用于查询某一种分享服务类型的分享服务;
第二:如果查询到有提供该分享服务类型的分享服务,则进行响应。
传递对象(或称为服务对象)确定:
本发明实施例中,如前面所述的,第二穿戴设备可以将记录的第二事件时间以及第二事件地点作为该社交动作对应的第二事件参数进行发布。其中,第二穿戴设备也可以采用分享服务的形式进行发布第二事件参数。在实际应用中,包括第二穿戴设备在内的分享服务发布方有可能是有多个,相应地,第一穿戴设备在发现多个分享服务发布方发布的分享服务之后,第一穿戴设备就需要从多个分享服务发布方中确定出传递对象(或称为服务对象)。
以第二穿戴设备为例,第一穿戴设备可以从第二穿戴设备发布的分享服务中提取出分享服务包括的第二事件参数,即第二事件时间和第二事件地点,其中,第二事件时间可以包括第二事件开始时间(又称为第二穿戴设备检测到的社交动作的开始时间)和第二事件持续时间(又称为第二穿戴设备检测到的社交动作的持续时间);进一步地,第一穿戴设备可以判断第一事件开始时间与第二事件开始时间的差值是否小于第一设定阈值(如2s),如果小于第一设定阈值,那么第一穿戴设备可以判断第一事件持续时间与第二事件持续时间的差值是否小于第二设定阈值(如500ms),如果小于第二设定阈值,确定第一事件时间与第二事件时间匹配;以及,第一穿戴设备可以判断第一事件地点(又 称为第一穿戴设备检测到社交动作的地点)与第二事件地点(又称为第二穿戴设备检测到社交动作的地点)是否相同,如果相同,可以确定第一事件地点与第二事件地点匹配。其中,上述的第一设定阈值和第二设定阈值的大小可以根据需要进行设置,本发明实施例不作限定。
本发明实施例中,第一穿戴设备判断该第一事件时间与该第二事件时间匹配,以及判断该第一事件地点与该第二事件地点匹配时,可以确定携带第一穿戴设备的商务人士与携带第二穿戴设备的商务人士之间发生握手等社交动作,此时第二穿戴设备作为第一穿戴设备的传递对象(或称为服务对象),相应地,第一穿戴设备可以向第二穿戴设备发送第一用户设定信息。其中,第一用户设定信息是指第一穿戴设备上存储的用户设定信息。
本发明实施例中,第一穿戴设备和第二穿戴设备上可以存储用户设定信息,其中,第一穿戴设备上存储的用户设定信息可以称为第一用户设定信息,而第二穿戴设备上存储的用户设定信息可以称为第二用户设定信息。在实际应用中,用户设定信息的形式可以如表1所示:
表1用户设定信息
Figure PCTCN2015095068-appb-000001
如上述的表1所示,用户设定信息的不仅可以包括个人信息,还可以包括第三方服务信息入口以及体征检测设备的标识信息。其中,用户设定信息中还可以包括个人信息、第三方服务信息入口以及体征检测设备的标识信息三个种 类是否授权的标识,例如Y表示授权,N表示非授权。在实际应用中,体征检测设备也可以是心率检测手环、脑电波注意力检测眼镜、Semg肌肉状态检测臂环等穿戴设备,或者,体征检测设备也可以是穿戴设备内置的体征传感器,本发明实施例不作限定。在实际应用中,用户可以自行添加、删除、修改、授权或去授权表1中某一个种类。
本发明实施例中,上述的表1中的第三方服务信息入口可以用于获取第三方服务信息,例如,个人博客、微博简介、当地天气信息、当地温度信息、当地景点、当地餐饮地点、当地酒店等。
本发明实施例中,上述的表1中的体征检测设备的状态信息主要用于获取用户体征数据同步信息。其中,用户体征数据可以包括心率、脑电波注意力、血氧等,本发明实施例不作限定。
本发明实施例中,第一穿戴设备和第二穿戴设备上还可以存储用户设定规则,其中,第一穿戴设备上存储的用户设定规则可以称为第一用户设定规则,而第二穿戴设备上存储的用户设定规则可以称为第二用户设定规则。在实际应用中,用户设定规则的形式可以如表2所示:
表2用户设定规则
Figure PCTCN2015095068-appb-000002
如上述的表2所示,用户设定规则不仅可以包括第三方检索引擎的标识信息,还可以包括IOT设备的标识信息。其中,如上述的表2所示,用户设定规 则中还可以包括第三方检索引擎的标识信息和IOT设备的标识信息两个种类是否授权的标识,例如Y表示授权,N表示非授权。在实际应用中,用户可以自行添加、删除、修改、授权或去授权表2中某一个种类。
本发明实施例中,上述的表2中的第三方搜索引擎的标识信息可以用于获取传递对象的背景信息。在实际应用中,可以从传递对象(如第二穿戴设备)发送的用户设定信息(如第二用户设定信息)包括的个人信息中提取关键字,并基于提取的关键字,利用上述的表2中授权的第三方搜索引擎进行用户背景信息的搜索。本发明实施例中,IOT设备的服务方式可以由用户自行设定,例如在检测到发生握手等社交动作之后,启动咖啡机开始煮咖啡、空调调低一度等。
本发明实施例中,第一穿戴设备在检测到发生社交动作时,还可以先执行以下步骤,即:
第一穿戴设备检测是否发生社交语句,如果发生,执行获取第二穿戴设备发布的第二事件参数的步骤。
其中,上述的检测是否发生社交语句可以包括检测是否发生“您好”、“好久不见”等一些常见的社交语句,如果检测发生“您好”、“好久不见”等一些常见的社交语句,再执行获取第二穿戴设备发布的第二事件参数的步骤,从而可以提升获取第二穿戴设备发布的第二事件参数的准确性。
基于图1所示的组网架构,实施图2所描述的信息传递方法,可以省去包括电子名片在内的信息传递时的繁琐手动操作,从而能够有效地提升信息传递的效率。此外,通过实施图2所描述的信息传递方法,可以在无需用户手动操作选择传递对象和信息、无需用户的情况下高效地传递信息,从而可以提高用户在商务环境中的体验。
请参阅图3,图3是本发明实施例公开的第二种组网架构示意图。如图3所示,该组网架构可以包括第一穿戴设备、第二穿戴设备以及第一智能设备,其中,第一穿戴设备连接在第一智能设备上,第二穿戴设备没有连接智能设备。 在图3所示的组网架构中,第一穿戴设备和第二穿戴设备检测发生社交动作的方式已在前面实施例中进行了描述,这里不再赘述。在图3所示的组网架构中:
第一穿戴设备:其可用网络连接能力可以包括BT、NFC、WIFI以及zigbee其中一种或者多种,第一穿戴设备可以通过BT连接第一智能设备,第一穿戴设备可以在网络适配层上通过除去BT之外的其它可用网络连接能力发布分享服务(包括第一事件参数),以及发现第二穿戴设备发布的分享服务(包括第二事件参数),其中,第一穿戴设备发布分享服务(包括第一事件参数),以及发现第二穿戴设备发布的分享服务(包括第二事件参数)的过程如前面实施例所述,这里不再赘述。其中,第一穿戴设备在网络适配层上通过除去BT之外的其它可用网络连接能力发现第二穿戴设备发布的分享服务(包括第二事件参数)时,可以实现在网络适配层上通过除去BT之外的其它可用网络连接能力获取第二穿戴设备发布的第二事件参数。
第一智能设备:第一智能设备可以接收第一穿戴设备通过BT推送分享服务广播请求,并检测第一智能设备自身的可用网络连接能力可能包括WIFI、BT等,第一智能设备可以在网络适配层上通过自身的可用网络连接能力(如WIFI)上去代理广播分享服务请求(包括分享服务)。从而,可以实现第一穿戴设备通过第一智能设备的可用网络连接能力发布第一事件参数。
第二穿戴设备:处于未连接智能设备的网络连接状态,第二穿戴设备自身的可用网络连接能力可能包括BT、NFC、WIFI、zigbee其中一种或者多种,这时第二穿戴设备可以在网络适配层上通过一个或者多个可用网络连接能力发布分享服务(包括第二事件参数),以及发布第一穿戴设备发布的分享服务(包括第一事件参数),其中,第二穿戴设备发布分享服务(包括第二事件参数),以及发现第一穿戴设备发布的分享服务(包括第一事件参数)的过程如前面实施例所述,这里不再赘述。其中,第二穿戴设备在网络适配层上通过一个或多个可用网络连接能力发现第一穿戴设备发布的分享服务(包括第一事件参数)时,可以实现在网络适配层上通过一个或多个可用网络连接能力获取第 一穿戴设备发布的第一事件参数。
在图3所示的组网架构中,第一穿戴设备可以通过第一智能设备代理广播分享服务,而第二穿戴设备可以自己广播分享服务。在确定传递对象之后,第一穿戴设备可以通过第一智能设备与第二穿戴设备进行用户设定信息的交互,其中,用户设定信息的形式如前面实施例所示,这里不再赘述。
请参阅图4,图4是本发明实施例公开的第三种组网架构示意图。如图4所示,该组网架构可以包括第一穿戴设备、第一智能设备、第二穿戴设备以及第二智能设备,其中,第一穿戴设备连接在第一智能设备上,第二穿戴设备连接在第二智能设备上。在图4所示的组网架构中,第一穿戴设备和第二穿戴设备检测发生社交动作的方式已在前面实施例中进行了描述,这里不再赘述。在图4所示的组网架构中:
第一穿戴设备:其可用网络连接能力可以包括BT、NFC、WIFI以及zigbee其中一种或者多种,第一穿戴设备可以通过BT连接第一智能设备,第一穿戴设备可以在网络适配层上通过除去BT之外的其它可用网络连接能力发布分享服务(包括第一事件参数),以及发现第二穿戴设备发布的分享服务(包括第二事件参数),其中,第一穿戴设备发布分享服务(包括第一事件参数),以及发现第二穿戴设备发布的分享服务(包括第二事件参数)的过程如前面实施例所述,这里不再赘述。其中,第一穿戴设备在网络适配层上通过除去BT之外的其它可用网络连接能力发现第二穿戴设备发布的分享服务(包括第二事件参数)时,可以实现在网络适配层上通过除去BT之外的其它可用网络连接能力获取第二穿戴设备发布的第二事件参数。
第二穿戴设备:其可用网络连接能力可以包括BT、NFC、WIFI以及zigbee其中一种或者多种,第二穿戴设备可以通过BT连接第二智能设备,第二穿戴设备可以在网络适配层上通过除去BT之外的其它可用网络连接能力发布分享服务(包括第二事件参数),以及发现第一穿戴设备发布的分享服务(包括第一事件参数),其中,第二穿戴设备发布分享服务(包括第二事件参数),以及 发现第一穿戴设备发布的分享服务(包括第一事件参数)的过程如前面实施例所述,这里不再赘述。其中,第二穿戴设备在网络适配层上通过除去BT之外的其它可用网络连接能力发现第一穿戴设备发布的分享服务(包括第一事件参数)时,可以实现在网络适配层上通过除去BT之外的其它可用网络连接能力获取第一穿戴设备发布的第一事件参数。
第一智能设备:第一智能设备可以接收第一穿戴设备通过BT推送分享服务广播请求,并检测第一智能设备自身的可用网络连接能力可能包括WIFI、BT等,第一智能设备可以在网络适配层上通过自身的可用网络连接能力(如WIFI)上去代理广播分享服务请求(包括分享服务)。从而,可以实现第一穿戴设备通过第一智能设备的可用网络连接能力发布第一事件参数。
第二智能设备:第二智能设备可以接收第二穿戴设备通过BT推送分享服务广播请求,并检测第二智能设备自身的可用网络连接能力可能包括WIFI、BT等,第二智能设备可以在网络适配层上通过自身的可用网络连接能力(如WIFI)上去代理广播分享服务请求(包括分享服务)。从而,可以实现第二穿戴设备通过第二智能设备的可用网络连接能力发布第二事件参数。
在图4所示的组网架构中,第一穿戴设备可以通过第一智能设备代理广播分享服务,第二穿戴设备可以通过第二智能设备代理广播分享服务。在确定传递对象之后,第一穿戴设备可以通过除去BT之外的其它可用网络连接能力向第二穿戴设备发送第一用户设定信息,第二穿戴设备也可以通过除去BT之外的其它可用网络连接能力向第一穿戴设备发送第二用户设定信息;更进一步地,第一穿戴设备可以通过第一智能设备的可用网络连接能力向第二智能设备发送第一用户设定信息,以触发第二智能设备向第二穿戴设备发送第一用户设定信息;而第二穿戴设备也可以通过第二智能设备的可用网络连接能力向第一智能设备发送第二用户设定信息,以触发第一智能设备向第一穿戴设备发送第二用户设定信息。也即是说,第一智能设备和第二智能设备可以代理穿戴设备完成用户设定信息的交换。其中,第一用户设定信息、第二用户设定信息的形 式如前面实施例所示,这里不再赘述。
请参阅图5,图5是本发明实施例公开的第四种组网架构示意图。在5所示的组网架构中,第一智能设备连接第一穿戴设备,并且第一智能设备通过WIFI热点(如WIFI路由器)或者蜂窝网络连接了云服务器,而云服务器又连接了第三方服务***,并且IOT设备连接入上述的WIFI热点,WIFI热点可以支持802.11a/b/n/c等标准协议;第二穿戴设备与第二智能设备只有本地BT连接。在图5所示的组网架构中,第一穿戴设备和第二穿戴设备检测发生社交动作的方式已在前面实施例中进行了描述,这里不再赘述。在图5所示的组网架构中:
云服务器:第一穿戴设备和第二终端设备在进行用户设定信息交换之后,如果第一智能设备和第二智能设备仍处于联网状态,那么第一穿戴设备、第二穿戴设备可以分别通过各自连接的第一智能设备、第二智能设备向云服务器进行状态注册,即第一穿戴设备可以通过第一智能设备会向云服务器上报第一智能设备与第一穿戴设备的组网连接状态、第二用户设定信息以及第一用户设定规则;而第二穿戴设备可以通过第二智能设备会向云服务器上报第二智能设备与第二穿戴设备的组网连接状态、第一用户设定信息以及第二用户设定规则。云服务器会维护第一穿戴设备和第二穿戴设备注册的状态,并且会标定两组交换对象(即第一穿戴设备和第二穿戴设备)处于“连接”状态。
本发明实施例中,云服务器可以从第一穿戴设备通过第一智能设备上报的第二用户设定信息包括的个人信息中提取关键字(如表1中的“xx公司CEO”),并且通过第一穿戴设备通过第一智能设备上报的第一用户设定规则包括的授权的第三方搜索引擎(如Google),搜索获得的与该关键字相匹配的第二用户背景信息。更进一步地,云服务器可以通过第一智能设备将获得的第二用户背景信息发送给第一穿戴设备,从而实现第一穿戴设备可以通过第一智能设备获取云服务器发送的第二用户背景信息。
本发明实施例中,云服务器可以从第二穿戴设备通过第二智能设备上报的 第一用户设定信息包括的个人信息中提取关键字(如表1中的“张三”),并且通过第二穿戴设备通过第二智能设备上报的第二用户设定规则包括的授权的第三方搜索引擎(如Google),搜索获得的与该关键字相匹配的第一用户背景信息。更进一步地,云服务器可以通过第二智能设备将获得的第一用户背景信息发送给第二穿戴设备,从而实现第二穿戴设备可以通过第二智能设备获取云服务器发送的第一用户背景信息。
本发明实施例中,云服务器可以从第一穿戴设备通过第一智能设备上报的第二用户设定信息包括的第三方服务信息入口,向第三方服务***获取第三方服务信息(如天气信息、温度信息等)。更进一步地,云服务器可以通过第一智能设备将获得的第三方服务信息(如天气信息、温度信息等)发送给第一穿戴设备,从而实现第一穿戴设备可以通过第一智能设备获取云服务器发送的第三方服务信息(如天气信息、温度信息等)。
本发明实施例中,云服务器可以从第二穿戴设备通过第二智能设备上报的第一用户设定信息包括的第三方服务信息入口,向第三方服务***获取第三方服务信息(如天气信息、温度信息等)。更进一步地,云服务器可以通过第二智能设备将获得的第三方服务信息(如天气信息、温度信息等)发送给第二穿戴设备,从而实现第二穿戴设备可以通过第二智能设备获取云服务器发送的第三方服务信息(如天气信息、温度信息等)。
在图5所示的网络架构中,由于第一智能终端与IOT设备可以连接同一个WIFI热点,因此,第一智能设备可以在基于WIFI的网络中进行IOT设备识别。相应地,第一穿戴设备在判断第一事件时间与第二事件时间匹配,以及第一事件地点与第二事件地点匹配之后,第一穿戴设备可以将第一用户设定规则发送给第一智能设备,以使第一智能设备可以依据第一用户设定规则触发授权的IOT设备提供服务,其中,可以触发的授权IOT设备及其服务的种类可以参考上述表2。在实际应用中,用户可以自行设定,或者可以提供更细分的第一用户设定规定,比如可以触发与社交动作的发生地点、社交事件发生时的 室外温度同时相对应的访客模式下的具体IOT设备提供服务。
更进一步地,在上述的用户设定信息(具体内容见表1)的基础上,用户还可以自行添加个人喜好,比如有的用户比较喜欢喝茶,不太喜欢喝咖啡,则智能设备在触发IOT设备提供服务时可以根据用户设定规则和用户喜好综合去触发IOT泡茶设备提供服务,而不触发咖啡机设备提供服务。
请参阅图6,图6是本发明实施例公开的第五种组网架构示意图。在5所示的组网架构中,第一智能设备连接第一穿戴设备,并且第一智能设备通过WIFI热点(如WIFI路由器)或者蜂窝网络连接了云服务器,而云服务器又连接了第三方服务***,并且IOT设备连接入上述的WIFI热点,WIFI热点可以支持802.11a/b/n/c等标准协议;第二智能设备连接第二穿戴设备,并且第二智能设备通过WIFI热点(如WIFI路由器)或者蜂窝网络连接了云服务器,其中,第二智能设备和体检检测设备可以连接同一个WIFI热点,在实际应用中,体征检测设备也可以是穿戴设备。在图6所示的组网架构中,第一穿戴设备和第二穿戴设备检测发生社交动作的方式已在前面实施例中进行了描述,这里不再赘述。与图5所示的组网架构相比,在图6所示的组网架构中:
第二智能设备可以和体征检测设备保持通信连接,并且体征检测设备可以通过第二智能设备将检测到的第二用户体征数据同步信息发送至云服务器。进一步地,云服务器可以从第一穿戴设备通过第一智能设备上报的第二用户设定信息提取出授权的体征检测设备的标识信息,并且获取该授权的体征检测设备上报的第二用户体征数据同步信息(如心率),以及通过第一智能设备将获取的第二用户体征数据同步信息发送给第一穿戴设备,从而实现第一穿戴设备通过第一智能设备获取云服务器发送的第二用户体征数据同步信息。
更进一步地,在图6所示的组网架构中,通过云服务器可以同步第二穿戴设备一侧的第二用户体征数据同步信息至第一穿戴设备,而根据第二用户体征数据同步信息,第一智能设备可以触发相应的IOT设备提供服务,例如,根据第二用户体征数据同步信息,如果发现第二用户的情绪比较紧张,则第一智 能设备可以触发IOT音箱设备播放舒缓的音乐。
在图6所示的组网架构中,第一穿戴设备获得的第二用户体征数据同步信息可以存在以下几个情形,即:
1、将第二用户体征数据同步信息在第二智能终端进行数据处理后通过云服务器推送给第一智能终端;
2、将第二用户体征数据同步信息在云服务器进行大数据处理后推送给第一智能终端;
3、将第二用户体征数据同步信息发送给第一智能终端上进行数据处理后进行推送显示。
其中,数据处理可以包括模数转换、数字与图形转换等,本发明实施例限定。
以上对本发明实施例公开的组网架构以及信息传递方法进行了描述,下面再详细介绍本发明实施例公开的穿戴设备。请参阅图7,图7是本发明实施例公开的一种穿戴设备的结构示意图。如图7所示,该穿戴设备700可以包括:
记录单元701,用于在检测到穿戴有穿戴设备700的第一用户发生社交动作时,记录所述社交动作对应的第一事件参数,所述第一事件参数包括第一事件时间、第一事件地点或者所述第一用户的标识;
第一获取单元702,用于获得第二穿戴设备发布的第二事件参数,所述第二事件参数包括第二事件时间、第二事件地点或者第二用户的标识;所述第二事件参数是所述第二穿戴设备检测到穿戴有所述第二穿戴设备的所述第二用户发生社交动作时记录的事件参数;
第一判断单元703,用于判断第一事件参数与第二事件参数是否匹配;
发送单元704,用于在第一判断单元703的判断结果匹配时,向第二穿戴设备发送第一用户设定信息。
本发明实施例中,第一判断单元703可以用于判断第一事件时间与第二事件时间是否匹配,和/或,可以用于判断第一事件地点与第二事件地点是否匹 配,和/或,可以用于判断第一用户的标识与所述第二用户的标识是否匹配。
本发明实施例中,所述第一事件时间包括第一事件开始时间和第一事件持续时间,所述第二事件时间包括第二事件开始时间和第二事件持续时间,第一判断单元703判断所述第一事件时间与所述第二事件时间是否匹配,包括:
第一判断单元703判断所述第一事件开始时间与所述第二事件开始时间的差值是否小于第一设定阈值,如果小于所述第一设定阈值,所述第一穿戴设备判断所述第一事件持续时间与所述第二事件持续时间的差值是否小于第二设定阈值,如果小于所述第二设定阈值,确定所述第一事件时间与所述第二事件时间匹配;
第一判断单元703判断所述第一事件地点与所述第二事件地点是否匹配,包括:
第一判断单元703判断所述第一事件地点与所述第二事件地点是否相同,如果相同,确定所述第一事件地点与所述第二事件地点匹配;
或者,第一判断单元703判断所述第一事件地点与所述第二事件地点之间的间隔是否小于预设阈值,如果小于预设阈值确定所述第一事件地点与所述第二事件地点匹配;
第一判断单元703判断所述第一用户的标识与所述第二用户的标识是否匹配,包括:
第一判断单元703判断所述第一用户的标识与所述第二用户的标识是否属于同一关系链用户标识,如果属于,确定所述第一用户的标识与所述第二用户的标识匹配。
在一个实施例中,图7所示的穿戴设备700还可以包括:
社交语句检测单元705,用于在检测到穿戴有穿戴设备700的第一用户发生社交动作时,检测是否发生社交语句,如果是,触发第一获取单元702执行所述的获得第二穿戴设备发布的第二事件参数的操作。
在一个实施例中,第一获取单元702具体用于通过该穿戴设备700自身的可 用网络连接能力获得第二穿戴设备发布的第二事件参数;和/或,第一获取单元702具体用于通过第一智能设备的可用网络连接能力获得第二穿戴设备发布的第二事件参数,其中,该穿戴设备700与第一智能设备保持通信连接;
其中,发送单元704向第二穿戴设备发送第一用户设定信息的方式具体为:
发送单元704用于通过该穿戴设备700自身的可用网络连接能力向第二穿戴设备发送第一用户设定信息;和/或,用于通过该第一智能设备的可用网络连接能力向第二穿戴设备发送第一用户设定信息。
在一个实施例中,图7所示的穿戴设备700还可以包括:
发布单元706,用于通过该穿戴设备700自身的可用网络连接能力发布记录单元701记录的该第一事件参数;和/或,用于通过该第一智能设备的可用网络连接能力发布记录单元701记录的该第一事件参数。
在一个实施例中,图7所示的穿戴设备700还可以包括:
第二获取单元707,用于通过该穿戴设备700自身的可用网络连接能力获取第二穿戴设备发送的第二用户设定信息;和/或,用于通过该第一智能设备的可用网络连接能力获取第二穿戴设备发送的第二用户设定信息;
其中,第二用户设定信息由第二穿戴设备获取到该第一事件参数之后,判断第一事件时间与第二事件时间匹配,以及第一事件地点与第二事件地点匹配之后向该穿戴设备700发送。
在一个实施例中,该第一事件参数还包括第一社交动作类型(如握手),该第二事件参数还可以包括第二社交动作类型(如握手),那么相应地,该穿戴设备700还可以包括:
第二判断单元708,用于判断该第一社交动作类型与该第二社交动作类型是否相同,如果相同,触发该第一判断单元703执行上述的判断第一事件参数与第二事件参数是否匹配的操作。
在一个实施例中,发送单元704还用于在第一判断单元703判断第一事件参数与第二事件参数是否匹配之后,将第一用户设定规则发送给第一智能设备, 以使第一智能设备依据第一用户设定规则触发授权的IOT设备提供服务;其中,第一用户设定规则包括至少一个授权的IOT设备的标识信息。
在一个实施例中,该第一用户设定规则还包括至少一个授权的第三方搜索引擎的标识信息,第二获取单元707获取到的该第二用户设定信息包括个人信息,其中:
发送单元704,还用于通过该第一智能设备向云服务器发送该第二用户设定信息以及该第一用户设定规则;
第二获取单元707,还用于通过该第一智能设备获取云服务器发送的第二用户背景信息,其中,该第二用户背景信息是由云服务器从该第二用户设定信息包括的个人信息中提取关键字之后,通过授权的第三方搜索引擎搜索获得的与该关键字相匹配的第二用户背景信息。
在一个实施例中,第二获取单元707获取到的该第二用户设定信息还包括授权的第三方服务信息入口,其中:
第二获取单元707,还用于通过该第一智能设备获取云服务器发送的第三方服务信息,其中,该第三方服务信息是由云服务器通过该第三方服务信息入口向第三方服务***获取的第三方服务信息。
在一个实施例中,第二获取单元707获取到的该第二用户设定信息还包括授权的体征检测设备的标识信息,其中:
第二获取单元707,还用于通过该第一智能设备获取云服务器发送的第二用户体征数据同步信息,该第二用户体征数据同步信息是授权的体征检测设备通过第二智能设备发送至云服务器的,其中,该第二穿戴设备与该第二智能设备保持通信连接。
在一个实施例中,该第一事件时间包括第一事件开始时间(即穿戴设备700检测到的社交动作的开始时间)和第一事件持续时间(即穿戴设备700检测到的社交动作的持续时间),该第二事件时间包括第二事件开始时间(即第二穿戴设备检测到的社交动作的开始时间)和第二事件持续时间(即第二穿戴设备 检测到的社交动作的持续时间),相应地,判断单元704具体用于判断该第一事件开始时间与该第二事件开始时间的差值是否小于第一设定阈值(如2s),如果小于该第一设定阈值,判断该第一事件持续时间与该第二事件持续时间的差值是否小于第二设定阈值(如500ms),如果小于该第二设定阈值,确定该第一事件时间与该第二事件时间匹配;以及,判断该第一事件地点与该第二事件地点是否相同,如果相同,确定该第一事件地点与该第二事件地点匹配。
本发明实施例中,该第一用户设定信息、第二用户设定信息可以如上述表1所示,可以包括个人信息、授权的第三方服务信息入口以及授权的体征检测设备的状态信息,本发明实施例不作限定。
本发明实施例中,通过应用如图7所示的穿戴设备,可以省去包括电子名片在内的信息传递时的繁琐手动操作,从而能够有效地提升信息传递的效率。此外,通过应用如图7所示的穿戴设备,可以在无需用户手动操作选择传递对象和信息、无需用户的情况下高效地传递信息,从而可以提高用户在商务环境中的体验。
请参阅图8,图8是本发明实施例公开的另一种穿戴设备的结构示意图。如图8所示,该穿戴设备800可以包括:
中央处理单元(CPU)部件801、存储器部件802、I/O***部件803、射频(RF)部件804、传感器部件805以及电源部件806等组件。这些组件通过一条或多条总线807进行通信。本领域技术人员可以理解,图8中所示的穿戴设备的结构并不构成对本发明的限定,它既可以是总线形结构,也可以是星型结构,还可以包括比图8所示的更多或更少的部件。在本发明实施例中,该穿戴设备800可以是包括但不限于手表、手环、腕带、眼镜、项链、戒指、耳环等各类智能的穿戴设备。
本发明实施例中,I/O***部件803用于实现用户与穿戴设备的交互,即用于将信息输入到穿戴设备以及用于输出穿戴设备的信息。在实际应用中,I/O***部件803可以包括输入单元和输出单元,其中,输入单元可以接收用户输 入的数字或字符信息,以发生与用户设置或功能控制有关的信号输入。在本发明具体实施方式中,输入单元可以是触控面板,也可以是其他人机交互界面,例如实体输入键、麦克风等,还可以是其他外部信息撷取装置,例如摄像头等。触控面板,也称为触摸屏或触控屏,可收集用户在其上触摸或接近的操作动作。比如用户使用手指、触笔等任何适合的物体或附件在触控面板上或接近触控面板的位置的操作动作,并根据预先设定的程式驱动相应的连接装置。可选的,触控面板可包括触摸检测装置和触摸控制器两个部分。其中,触摸检测装置检测用户的触摸操作,并将检测到的触摸操作转换为电信号,以及将所述电信号传送给触摸控制器;触摸控制器从触摸检测装置上接收所述电信号,并将它转换成触点坐标,再送给处理器部件801。触摸控制器还可以接收处理器部件801发来的命令并执行。此外,可以采用电阻式、电容式、红外线(Infrared)以及表面声波等多种类型实现触控面板。在本发明的其他实施方式中,输入单元所采用的实体输入键可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、操作杆等中的一种或多种。麦克风形式的输入单元可以收集用户或环境输入的语音并将其转换成电信号形式的、处理器部件801可执行的命令。
输出单元可以包括但不限于影像输出单元、声音输出单元和触感输出单元。影像输出单元用于输出文字、图片和/或视频。影像输出单元可包括显示面板,例如采用LCD(Liquid Crystal Display,液晶显示器)、OLED(Organic Light-Emitting Diode,有机发光二极管)、场发射显示器(Field Emission Display,简称FED)等形式来配置的显示面板。或者影像输出单元可以包括反射式显示器,例如电泳式显示器,或利用光干涉调变技术的显示器。影像输出单元可以包括单个显示器或不同尺寸的多个显示器。在本发明的具体实施方式中,上述输入单元所采用的触控面板亦可同时作为输出单元的显示面板。例如,当触控面板检测到在其上的触摸或接近的手势操作后,传送给处理器部件801以确定触摸事件的类型,随后处理器部件801根据触摸事件的类型在显示面板上提 供相应的视觉输出。在某些实施例中,可以将触控面板与显示面板集成一体而实现穿戴设备的输入和输出功能。例如,影像输出单元可以显示各种图形化用户接口(Graphical User Interface,简称GUI)以作为虚拟控制组件,包括但不限于窗口、卷动轴、图标及剪贴簿,以供用户通过触控方式进行操作。
在本发明具体实施方式中,影像输出单元包括滤波器及放大器,用来将处理器部件801所输出的视频滤波及放大。声音输出单元包括数字模拟转换器,用来将处理器部件801所输出的音频信号从数字格式转换为模拟格式。
处理器部件801为穿戴设备的控制中心,利用各种接口和线路连接整个穿戴设备的各个部件,通过运行或执行存储在存储器部件802内的软件程序和/或模块,以及调用存储在存储器部件802内的数据,以执行穿戴设备的各种功能和/或处理数据。处理器部件801可以由集成电路(Integrated Circuit,简称IC)组成,例如可以由单颗封装的IC所组成,也可以由连接多颗相同功能或不同功能的封装IC而组成。举例来说,处理器部件801可以仅包括CPU,也可以是CPU、数字信号处理器(Digital Signal Processor,简称DSP)、图形处理器(Graphic Processing Unit,简称GPU)等处理器的组合。在本发明实施方式中,处理器部件801可以是单运算核心,也可以包括多运算核心。
RF部件804用于建立通信信道,使穿戴设备通过该通信信道以连接至通信对端,并通过该通信信道与通信对端进行数据交互。RF部件804可以包括无线局域网(Wireless Local Area Network,简称wireless LAN)模块(如WIFI模块)、BT模块、NFC模块、基带模块等无线通信模块。RF部件804用于穿戴设备中的各部件与通信对端的通信,并且可以支持直接内存存取(Direct Memory Access)。
在本发明的不同实施方式中,RF部件804中的各种通信模块一般以集成电路芯片(Integrated Circuit Chip)的形式出现,并可进行选择性组合,而不必包括所有通信模块。例如,RF部件804可以仅包括基带芯片、射频芯片以及相应的天线以在一个蜂窝通信***中提供通信功能。经由RF部件804建立 的无线通信连接,例如无线局域网(如WIFI)接入或WCDMA接入,穿戴设备可以连接至蜂窝网(Cellular Network)或因特网(Internet)。在本发明的一些可选实施方式中,RF部件804中的通信模块,例如基带模块可以集成到处理器部件801中,典型的如高通(Qualcomm)公司提供的APQ+MDM系列平台。
存储器部件802可用于存储软件程序以及模块,处理器部件801通过运行存储在存储器部件802的软件程序以及模块,从而执行穿戴设备的各种功能应用以及实现数据处理。存储器部件802主要包括程序存储区和数据存储区,其中,程序存储区可存储操作***、至少一个功能所需的软件程序,比如信息传递程序、文字播放程序、声音播放程序、图像播放程序等等;数据存储区可存储穿戴设备创建的数据(比如音频数据、电话本等)。在本发明具体实施方式中,存储器部件802可以包括易失性存储器,例如非挥发性动态随机存取内存(Nonvolatile Random Access Memory,简称NVRAM)、相变化随机存取内存(Phase Change RAM,简称PRAM)、磁阻式随机存取内存(Magetoresistive RAM,简称MRAM)等,还可以包括非易失性存储器,例如至少一个磁盘存储器件、电子可抹除可规划只读存储器(Electrically Erasable Programmable Read-Only Memory,简称EEPROM)、闪存器件,例如反或闪存(NOR flash memory)或是反及闪存(NAND flash memory)。非易失存储器储存处理器部件801所执行的操作***及应用程序。处理器部件801可以从非易失存储器加载运行程序与数据到内存并将数字内容储存于大量储存装置中。操作***包括用于控制和管理常规***任务,例如内存管理、存储设备控制、电源管理等,以及有助于各种软硬件之间通信的各种组件和/或驱动器。在本发明实施方式中,操作***可以是Google公司的Android***、Apple公司开发的iOS***或Microsoft公司开发的Windows操作***等,或者是Vxworks这类的嵌入式操作***。
传感器部件805可以包括但不限于加速度计、陀螺仪、磁力计、光线传感 器、GPS、心率传感器、血氧传感器、脑电波传感器等各类传感器。
电源部件806用于给穿戴设备的不同部件进行供电以维持其运行。作为一般性理解,电源部件806可以是内置的电池,例如常见的锂离子电池、镍氢电池等,也包括直接向穿戴设备供电的外接电源,例如AC适配器等。在本发明的一些实施方式中,电源部件806还可以作更为广泛的定义,例如还可以包括电源管理***、充电***、电源故障检测电路、电源转换器或逆变器、电源状态指示器(如发光二极管),以及与穿戴设备的电能生成、管理及分布相关联的其他任何组件。
在图8所示的穿戴设备800中,处理器部件801可以用于调用存储器部件802中存储的信息传递程序,并执行以下操作:
处理器部件801在根据传感器部件805上报的采集数据检测到有穿戴设备800的第一用户发生社交动作时,记录该社交动作对应的第一事件参数至存储器部件802,其中,该第一事件参数包括第一事件时间、第一事件地点或者所述第一用户的标识;其中,第一事件时间可以由处理器部件81根据自身的时钟确定出来,而第一事件地点可以由传感器部件805包括的GPS定位并实时上报给处理器部件801;
处理器部件801通过RF部件804获得第二穿戴设备发布的第二事件参数,所述第二事件参数包括第二事件时间、第二事件地点或者第二用户的标识;所述第二事件参数是所述第二穿戴设备检测到穿戴有所述第二穿戴设备的所述第二用户发生社交动作时记录的事件参数;
处理器部件801判断判断所述第一事件参数与所述第二事件参数是否匹配,如果匹配,通过RF部件804向第二穿戴设备发送存储器部件802中存储的第一用户设定信息。
在一个实施例中,处理器部件801判断所述第一事件参数与所述第二事件参数是否匹配,包括:
处理器部件801判断所述第一事件时间与所述第二事件时间是否匹配,和/ 或,判断所述第一事件地点与所述第二事件地点是否匹配,和/或,判断所述第一用户的标识与所述第二用户的标识是否匹配。
本发明实施例中,所述第一事件时间包括第一事件开始时间和第一事件持续时间,所述第二事件时间包括第二事件开始时间和第二事件持续时间,所述第一穿戴设备判断所述第一事件时间与所述第二事件时间是否匹配,包括:
处理器部件801判断所述第一事件开始时间与所述第二事件开始时间的差值是否小于第一设定阈值,如果小于所述第一设定阈值,处理器部件801判断所述第一事件持续时间与所述第二事件持续时间的差值是否小于第二设定阈值,如果小于所述第二设定阈值,确定所述第一事件时间与所述第二事件时间匹配;
处理器部件801判断所述第一事件地点与所述第二事件地点是否匹配,包括:
处理器部件801判断所述第一事件地点与所述第二事件地点是否相同,如果相同,确定所述第一事件地点与所述第二事件地点匹配;
或者,处理器部件801判断所述第一事件地点与所述第二事件地点之间的间隔是否小于预设阈值,如果小于预设阈值确定所述第一事件地点与所述第二事件地点匹配;
处理器部件801判断所述第一用户的标识与所述第二用户的标识是否匹配,包括:
处理器部件801判断所述第一用户的标识与所述第二用户的标识是否属于同一关系链用户标识,如果属于,确定所述第一用户的标识与所述第二用户的标识匹配。
在一个实施例中,处理器部件801调用存储器部件802中存储的信息传递程序,还可以执行以下操作:
处理器部件801在根据传感器部件805上报的采集数据检测到穿戴有穿戴设备800的第一用户发生社交动作时,通过I/O***部件803检测是否发生社交 语句,如果发生,执行通过RF部件804获取第二穿戴设备发布的第二事件参数的步骤。
在一个实施例中,处理器部件801通过RF部件804获取第二穿戴设备发布的第二事件参数,包括:
处理器部件801通过RF部件804自身的可用网络连接能力获取第二穿戴设备发布的第二事件参数;和/或,处理器部件801通过第一智能设备的可用网络连接能力获取第二穿戴设备发布的第二事件参数,其中,RF部件804与第一智能设备保持通信连接,也即是说,穿戴设备800与第一智能设备保持通信连接。
在一个实施例中,处理器部件801通过RF部件804向第二穿戴设备发送存储器部件802中存储的第一用户设定信息,包括:
处理器部件801通过RF部件804自身的可用网络连接能力向第二穿戴设备发送第一用户设定信息;和/或,处理器部件801通过第一智能设备的可用网络连接能力向第二穿戴设备发送第一用户设定信息,其中,RF部件804与第一智能设备保持通信连接。
在一个实施例中,处理器部件801调用存储器部件802中存储的信息传递程序,还可以执行以下操作:
处理器部件801通过RF部件804自身的可用网络连接能力发布该第一事件参数;
和/或,处理器部件801通过第一智能设备的可用网络连接能力发布该第一事件参数,其中,RF部件804与第一智能设备保持通信连接。
在一个实施例中,处理器部件801调用存储器部件802中存储的信息传递程序,还可以执行以下操作:
处理器部件801通过RF部件804自身的可用网络连接能力获取第二穿戴设备发送的第二用户设定信息;
和/或,处理器部件801通过第一智能设备的可用网络连接能力获取第二穿戴设备发送的第二用户设定信息,其中,RF部件804与第一智能设备保持通信 连接;其中,该第二用户设定信息由第二穿戴设备获取到该第一事件参数之后,判断该第一事件时间与该第二事件时间匹配,以及该第一事件地点与该第二事件地点匹配之后向该穿戴设备发送。
在一个实施例中,该第一事件参数还包括第一社交动作类型,该第二事件参数还包括第二社交动作类型,相应地,处理器部件801调用存储器部件802中存储的信息传递程序,还可以执行以下操作:
判断该第一社交动作类型与该第二社交动作类型是否相同,如果相同,执行上述的判断所述第一事件参数与所述第二事件参数是否匹配的操作。
在一个实施例中,处理器部件801调用存储器部件802中存储的信息传递程序,还可以执行以下操作:
处理器部件801判断该第一事件时间与该第二事件时间匹配,以及该第一事件地点与该第二事件地点匹配之后,通过RF部件804将第一用户设定规则发送给第一智能设备,以使第一智能设备依据该第一用户设定规则触发授权的IOT设备提供服务;其中,该第一用户设定规则包括至少一个授权的IOT设备的标识信息。
在一个实施例中,该第一用户设定规则还包括至少一个授权的第三方搜索引擎的标识信息,并且该第二用户设定信息包括个人信息,相应地,处理器部件801调用存储器部件802中存储的信息传递程序,还可以执行以下操作:
处理器部件801通过第一智能设备向云服务器发送该第二用户设定信息以及该第一用户设定规则,其中,RF部件804与第一智能设备保持通信连接;
处理器部件801通过第一智能设备获取云服务器发送的第二用户背景信息,其中,该第二用户背景信息是由云服务器从该第二用户设定信息包括的个人信息中提取关键字之后,通过授权的第三方搜索引擎搜索获得的与该关键字相匹配的第二用户背景信息。
在一个实施例中,该第二用户设定信息还包括授权的第三方服务信息入口,相应地,处理器部件801调用存储器部件802中存储的信息传递程序,还可 以执行以下操作:
处理器部件801通过第一智能设备获取云服务器发送的第三方服务信息,其中,RF部件804与第一智能设备保持通信连接,该第三方服务信息是由云服务器通过该第三方服务信息入口向第三方服务***获取的第三方服务信息。
在一个实施例中,该第二用户设定信息还包括授权的体征检测设备的标识信息,相应地,处理器部件801调用存储器部件802中存储的信息传递程序,还可以执行以下操作:
处理器部件801通过第一智能设备获取云服务器发送的第二用户体征数据同步信息,该第二用户体征数据同步信息是授权的体征检测设备通过第二智能设备发送至云服务器的,其中,RF部件804与第一智能设备保持通信连接,并且第二穿戴设备与第二智能设备保持通信连接。
在一个实施例中,该第一事件时间包括第一事件开始时间(即该穿戴设备检测到的社交动作的开始时间)和第一事件持续时间(即该穿戴设备检测到的社交动作的持续时间),而该第二事件时间包括第二事件开始时间(即第二穿戴设备检测到的社交动作的开始时间)和第二事件持续时间(即第二穿戴设备检测到的社交动作的持续时间),那么相应地,处理器部件801判断该第一事件时间与所述第二事件时间是否匹配,以及该第一事件地点与该第二事件地点是否匹配,包括:
处理器部件801判断该第一事件开始时间与该第二事件开始时间的差值是否小于第一设定阈值(如2s),如果小于第一设定阈值,处理器部件801判断该第一事件持续时间与该第二事件持续时间的差值是否小于第二设定阈值(如500ms),如果小于第二设定阈值,确定该第一事件时间与该第二事件时间匹配;以及,处理器部件801判断该第一事件地点(又称为该穿戴设备检测到社交动作的地点)与该第二事件地点(又称为第二穿戴设备检测到社交动作的地点)是否相同,如果相同,确定该第一事件地点与该第二事件地点匹配。
其中,上述的第一设定阈值和第二设定阈值的大小可以根据需要进行设 置,本发明实施例不作限定。
在一个实施例中,该第一用户设定信息、第二用户设定信息可以如表1所示,包括个人信息、授权的第三方服务信息入口以及授权的体征检测设备的状态信息,本发明实施例不作限定。
在一个实施例中,该第一用户设定规则可以如表2所示,本发明实施例不作限定。
本发明实施例中,通过应用如图8所示的穿戴设备,可以省去包括电子名片在内的信息传递时的繁琐手动操作,从而能够有效地提升信息传递的效率。此外,通过应用如图8所示的穿戴设备,可以在无需用户手动操作选择传递对象和信息、无需用户感知的情况下高效地传递信息,从而可以提高用户在商务环境中的体验。
通过实施本发明实施例公开的信息传递方法以及穿戴设备,还可以带来以后有益效果:
1、穿戴设备之间利用社交动作(如握手)的发生来进行信息交换,可以更好适应复杂组网条件。此种情况更经常的出现在实际情况中,有更大的实际意义,在用户不用参与和感知的情况下完成,也提升了用户体验。
2、穿戴设备之间利用社交动作(如握手)的触发,可以智能结合具体场景进行IOT设备的联动服务。IOT设备的联动服务可以根据用户设定、用户体征数据、第三方服务信息(如天气、地点信息)等综合因素来触发,从而在社交会客时有更好的体验。
3、穿戴设备之间利用社交动作(如握手)的触发,不仅可以进行信息交换,还可以推送更多交流对象的背景信息。例如,可以从个人信息中提取关键字进行背景信息检索并推送给用户,从而可以提升用户在交流中的体验,并可以进行保存记录。
4、穿戴设备之间利用社交动作(如握手)的触发,可以通过同步更多体征检测设备的数据分析结果,从而可以更好的了解你的交流对象,提升交流效 果。其中,举例来说,数据分析结果可以是通过智能眼镜的眼球、脑电波等体征检测设备检测到人的注意力集中程度的分析结果、或者是通过腕表或其他IOT设备检测到的心跳、血氧等数据的精神紧张度得分析结果,从而可以关注交流对象的注意力变化。
需要说明的是,本发明实施例基于社交动作(除了握手可以包括很多种)可以衍生出来各种应用场景,并且在各种应用场景中用户可以通过了解交流对象的背景信息、身体状况来调整自己的表达方式,从而提高与交流对象之间的交流效果。
需要说明的是,本发明实施例中,“第一”、“第二”等仅用于彼此的区分,而并非表示它们的重要程度及顺序等。本文中,“第一穿戴设备”、“第二穿戴设备”等用于区分数值不同的穿戴设备,不代表它们具有不同的类型。
需要说明的是,对于前述的各个方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本申请并不受所描述的动作顺序的限制,因为依据本申请,某一些步骤可以采用其他顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和模块并不一定是本申请所必须的。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详细描述的部分,可以参见其他实施例的相关描述。
本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步骤是可以通过程序来指令相关的硬件(例如处理器)来完成,该程序可以存储于一计算机可读存储介质中,存储介质包括只读存储器(Read-Only Memory,ROM)、随机存储器(Random Access Memory,RAM)、可编程只读存储器(Programmable Read-only Memory,PROM)、可擦除可编程只读存储器(Erasable Programmable Read Only Memory,EPROM)、一次可编程只读存储器(One-time Programmable Read-Only Memory,OTPROM)、电子抹除式可复写只读存储器(Electrically-Erasable Programmable Read-Only Memory, EEPROM)、只读光盘(Compact Disc Read-Only Memory,CD-ROM)或其他光盘存储器、磁盘存储器、磁带存储器、或者能够用于携带或存储数据的计算机可读的任何其他介质。
以上对本发明实施例公开的一种基于穿戴设备的信息传递方法及相关设备进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。

Claims (24)

  1. 一种基于穿戴设备的信息传递方法,其特征在于,包括:
    第一穿戴设备在检测到穿戴有所述第一穿戴设备的第一用户发生社交动作时,记录所述社交动作对应的第一事件参数,所述第一事件参数包括第一事件时间、第一事件地点或者所述第一用户的标识;
    所述第一穿戴设备获得第二穿戴设备发布的第二事件参数,所述第二事件参数包括第二事件时间、第二事件地点或者第二用户的标识;所述第二事件参数是所述第二穿戴设备检测到穿戴有所述第二穿戴设备的所述第二用户发生社交动作时记录的事件参数;
    所述第一穿戴设备判断所述第一事件参数与所述第二事件参数是否匹配,如果匹配,所述第一穿戴设备向所述第二穿戴设备发送第一用户设定信息。
  2. 根据权利要求1所述的信息传递方法,其特征在于,所述第一穿戴设备判断所述第一事件参数与所述第二事件参数是否匹配,包括:
    所述第一穿戴设备判断所述第一事件时间与所述第二事件时间是否匹配,和/或,判断所述第一事件地点与所述第二事件地点是否匹配,和/或,判断所述第一用户的标识与所述第二用户的标识是否匹配。
  3. 根据权利要求2所述的信息传递方法,其特征在于,所述第一事件时间包括第一事件开始时间和第一事件持续时间,所述第二事件时间包括第二事件开始时间和第二事件持续时间,所述第一穿戴设备判断所述第一事件时间与所述第二事件时间是否匹配,包括:
    所述第一穿戴设备判断所述第一事件开始时间与所述第二事件开始时间的差值是否小于第一设定阈值,如果小于所述第一设定阈值,所述第一穿戴设备判断所述第一事件持续时间与所述第二事件持续时间的差值是否小于第二设定阈值,如果小于所述第二设定阈值,确定所述第一事件时间与所述第二事件时间匹配;
    所述第一穿戴设备判断所述第一事件地点与所述第二事件地点是否匹配, 包括:
    所述第一穿戴设备判断所述第一事件地点与所述第二事件地点是否相同,如果相同,确定所述第一事件地点与所述第二事件地点匹配;
    或者,所述第一穿戴设备判断所述第一事件地点与所述第二事件地点之间的间隔是否小于预设阈值,如果小于预设阈值确定所述第一事件地点与所述第二事件地点匹配;
    所述第一穿戴设备判断所述第一用户的标识与所述第二用户的标识是否匹配,包括:
    所述第一穿戴设备判断所述第一用户的标识与所述第二用户的标识是否属于同一关系链用户标识,如果属于,确定所述第一用户的标识与所述第二用户的标识匹配。
  4. 根据权利要求1~3任一项所述的信息传递方法,其特征在于,所述方法还包括:
    第一穿戴设备在检测到穿戴有所述第一穿戴设备的第一用户发生社交动作时,检测是否发生社交语句,如果是,执行所述的获得第二穿戴设备发布的第二事件参数的步骤。
  5. 根据权利要求4所述的信息传递方法,其特征在于,所述第一穿戴设备获得第二穿戴设备发布的第二事件参数,包括:
    所述第一穿戴设备通过自身的可用网络连接能力获得第二穿戴设备发布的第二事件参数;和/或,所述第一穿戴设备通过第一智能设备的可用网络连接能力获得第二穿戴设备发布的第二事件参数,其中,所述第一穿戴设备与所述第一智能设备具有通信连接;
    所述第一穿戴设备向所述第二穿戴设备发送第一用户设定信息,包括:
    所述第一穿戴设备通过所述自身的可用网络连接能力向所述第二穿戴设备发送第一用户设定信息;和/或,所述第一穿戴设备通过所述第一智能设备的可用网络连接能力向所述第二穿戴设备发送第一用户设定信息。
  6. 根据权利要求5所述的信息传递方法,其特征在于,所述方法还包括:
    所述第一穿戴设备通过所述自身的可用网络连接能力发布所述第一事件参数;
    和/或,所述第一穿戴设备通过所述第一智能设备的可用网络连接能力发布所述第一事件参数。
  7. 根据权利要求6所述的信息传递方法,其特征在于,所述方法还包括:
    所述第一穿戴设备通过所述自身的可用网络连接能力获取所述第二穿戴设备发送的第二用户设定信息;
    和/或,所述第一穿戴设备通过所述第一智能设备的可用网络连接能力获取所述第二穿戴设备发送的第二用户设定信息;
    其中,所述第二用户设定信息由所述第二穿戴设备获取到所述第一事件参数之后,判断所述第一事件时间与所述第二事件时间匹配,以及所述第一事件地点与所述第二事件地点匹配之后向所述第一穿戴设备发送。
  8. 根据权利要求7所述的信息传递方法,其特征在于,所述第一穿戴设备判断所述第一事件参数与所述第二事件参数匹配之后,所述方法还包括:
    所述第一穿戴设备将第一用户设定规则发送给所述第一智能设备,以使所述第一智能设备依据所述第一用户设定规则触发授权的物联网设备提供服务;其中,所述第一用户设定规则包括至少一个授权的物联网设备的标识信息。
  9. 根据权利要求8所述的信息传递方法,其特征在于,所述第一用户设定规则还包括至少一个授权的第三方搜索引擎的标识信息,所述第二用户设定信息包括个人信息,所述方法还包括:
    所述第一穿戴设备通过所述第一智能设备向云服务器发送所述第二用户设定信息以及所述第一用户设定规则;
    所述第一穿戴设备通过所述第一智能设备获取所述云服务器发送的第二用户背景信息,其中,所述第二用户背景信息是由所述云服务器从所述第二用户设定信息包括的个人信息中提取关键字之后,通过所述授权的第三方搜索引 擎搜索获得的与所述关键字相匹配的第二用户背景信息。
  10. 根据权利要求9所述的信息传递方法,其特征在于,所述第二用户设定信息还包括授权的第三方服务信息入口,所述方法还包括:
    所述第一穿戴设备通过所述第一智能设备获取所述云服务器发送的第三方服务信息,其中,所述第三方服务信息是由所述云服务器通过所述第三方服务信息入口向第三方服务***获取的第三方服务信息。
  11. 根据权利要求10所述的信息传递方法,其特征在于,所述第二用户设定信息还包括授权的体征检测设备的标识信息,所述方法还包括:
    所述第一穿戴设备通过所述第一智能设备获取所述云服务器发送的第二用户体征数据同步信息,所述第二用户体征数据同步信息是所述授权的体征检测设备通过第二智能设备发送至所述云服务器的,其中,所述第二穿戴设备与所述第二智能设备保持通信连接。
  12. 根据权利要求1~3任一项所述的信息传递方法,其特征在于,所述第一用户设定信息包括个人信息、授权的第三方服务信息入口以及授权的体征检测设备的状态信息。
  13. 一种穿戴设备,其特征在于,包括:
    记录单元,用于在检测到穿戴有所述穿戴设备的第一用户发生社交动作时,记录所述社交动作对应的第一事件参数,所述第一事件参数包括第一事件时间、第一事件地点或者所述第一用户的标识;
    第一获取单元,用于获得第二穿戴设备发布的第二事件参数,所述第二事件参数包括第二事件时间、第二事件地点或者第二用户的标识;所述第二事件参数是所述第二穿戴设备检测到穿戴有所述第二穿戴设备的所述第二用户发生社交动作时记录的事件参数;
    第一判断单元,用于判断所述第一事件参数与所述第二事件参数是否匹配;
    发送单元,用于在所述第一判断单元的判断结果为匹配时,向所述第二穿 戴设备发送第一用户设定信息。
  14. 根据权利要求13所述的穿戴设备,其特征在于,所述第一判断单元用于判断所述第一事件时间与所述第二事件时间是否匹配,和/或,用于判断所述第一事件地点与所述第二事件地点是否匹配,和/或,用于判断所述第一用户的标识与所述第二用户的标识是否匹配。
  15. 根据权利要求14所述的穿戴设备,其特征在于,所述第一事件时间包括第一事件开始时间和第一事件持续时间,所述第二事件时间包括第二事件开始时间和第二事件持续时间,所述第一判断单元判断所述第一事件时间与所述第二事件时间是否匹配,包括:
    所述第一判断单元判断所述第一事件开始时间与所述第二事件开始时间的差值是否小于第一设定阈值,如果小于所述第一设定阈值,判断所述第一事件持续时间与所述第二事件持续时间的差值是否小于第二设定阈值,如果小于所述第二设定阈值,确定所述第一事件时间与所述第二事件时间匹配;
    所述第一判断单元判断所述第一事件地点与所述第二事件地点是否匹配,包括:
    所述第一判断单元判断所述第一事件地点与所述第二事件地点是否相同,如果相同,确定所述第一事件地点与所述第二事件地点匹配;
    或者,所述第一判断单元判断所述第一事件地点与所述第二事件地点之间的间隔是否小于预设阈值,如果小于预设阈值确定所述第一事件地点与所述第二事件地点匹配;
    所述第一判断单元判断所述第一用户的标识与所述第二用户的标识是否匹配,包括:
    所述第一判断单元判断所述第一用户的标识与所述第二用户的标识是否属于同一关系链用户标识,如果属于,确定所述第一用户的标识与所述第二用户的标识匹配。
  16. 根据权利要求13~15任一项所述的穿戴设备,其特征在于,还包括:
    社交语句检测单元,用于在检测到穿戴有所述穿戴设备的第一用户发生社交动作时,检测是否发生社交语句,如果是,触发所述第一获取单元执行所述的获得第二穿戴设备发布的第二事件参数的操作。
  17. 根据权利要求16所述的穿戴设备,其特征在于,所述第一获取单元具体用于通过所述穿戴设备自身的可用网络连接能力获得第二穿戴设备发布的第二事件参数;和/或,所述第一获取单元通过第一智能设备的可用网络连接能力获得第二穿戴设备发布的第二事件参数,其中,所述穿戴设备与所述第一智能设备具有通信连接;
    其中,所述发送单元向所述第二穿戴设备发送第一用户设定信息的方式具体为:
    所述发送单元用于通过所述穿戴设备自身的可用网络连接能力向所述第二穿戴设备发送第一用户设定信息;和/或,用于通过所述第一智能设备的可用网络连接能力向所述第二穿戴设备发送第一用户设定信息。
  18. 根据权利要求17所述的穿戴设备,其特征在于,还包括:
    发布单元,用于通过所述穿戴设备自身的可用网络连接能力发布所述第一事件参数;和/或,用于通过所述第一智能设备的可用网络连接能力发布所述第一事件参数。
  19. 根据权利要求18所述的穿戴设备,其特征在于,还包括:
    第二获取单元,用于通过穿戴设备自身的可用网络连接能力获取所述第二穿戴设备发送的第二用户设定信息;和/或,用于通过所述第一智能设备的可用网络连接能力获取所述第二穿戴设备发送的第二用户设定信息;
    其中,所述第二用户设定信息由所述第二穿戴设备获取到所述第一事件参数之后,判断所述第一事件时间与所述第二事件时间匹配,以及所述第一事件地点与所述第二事件地点匹配之后向所述穿戴设备发送。
  20. 根据权利要求19所述的穿戴设备,其特征在于:
    所述发送单元,还用于在所述第一判断单元判断所述第一事件参数与所述 第二事件参数匹配之后,将第一用户设定规则发送给所述第一智能设备,以使所述第一智能设备依据所述第一用户设定规则触发授权的物联网设备提供服务;其中,所述第一用户设定规则包括至少一个授权的物联网设备的标识信息。
  21. 根据权利要求20所述的穿戴设备,其特征在于,所述第一用户设定规则还包括至少一个授权的第三方搜索引擎的标识信息,所述第二用户设定信息包括个人信息,其中:
    所述发送单元,还用于通过所述第一智能设备向云服务器发送所述第二用户设定信息以及所述第一用户设定规则;
    所述第二获取单元,还用于通过所述第一智能设备获取所述云服务器发送的第二用户背景信息,其中,所述第二用户背景信息是由所述云服务器从所述第二用户设定信息包括的个人信息中提取关键字之后,通过所述授权的第三方搜索引擎搜索获得的与所述关键字相匹配的第二用户背景信息。
  22. 根据权利要求21所述的穿戴设备,其特征在于,所述第二用户设定信息还包括授权的第三方服务信息入口,其中:
    所述第二获取单元,还用于通过所述第一智能设备获取所述云服务器发送的第三方服务信息,其中,所述第三方服务信息是由所述云服务器通过所述第三方服务信息入口向第三方服务***获取的第三方服务信息。
  23. 根据权利要求22所述的穿戴设备,其特征在于,所述第二用户设定信息还包括授权的体征检测设备的标识信息,其中:
    所述第二获取单元,还用于通过所述第一智能设备获取所述云服务器发送的第二用户体征数据同步信息,所述第二用户体征数据同步信息是所述授权的体征检测设备通过第二智能设备发送至所述云服务器的,其中,所述第二穿戴设备与所述第二智能设备保持通信连接。
  24. 根据权利要求13~15任一项所述的穿戴设备,其特征在于,所述第一用户设定信息包括个人信息、授权的第三方服务信息入口以及授权的体征检测设备的状态信息。
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