WO2018028322A1 - 联动控制方法、联动控制***及智能穿戴设备 - Google Patents

联动控制方法、联动控制***及智能穿戴设备 Download PDF

Info

Publication number
WO2018028322A1
WO2018028322A1 PCT/CN2017/090399 CN2017090399W WO2018028322A1 WO 2018028322 A1 WO2018028322 A1 WO 2018028322A1 CN 2017090399 W CN2017090399 W CN 2017090399W WO 2018028322 A1 WO2018028322 A1 WO 2018028322A1
Authority
WO
WIPO (PCT)
Prior art keywords
wearable device
smart wearable
air conditioner
wireless connection
mode
Prior art date
Application number
PCT/CN2017/090399
Other languages
English (en)
French (fr)
Inventor
杜鹏杰
付清华
Original Assignee
广东美的制冷设备有限公司
美的集团股份有限公司
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.)
Filing date
Publication date
Application filed by 广东美的制冷设备有限公司, 美的集团股份有限公司 filed Critical 广东美的制冷设备有限公司
Publication of WO2018028322A1 publication Critical patent/WO2018028322A1/zh

Links

Classifications

    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B15/00Systems controlled by a computer
    • G05B15/02Systems controlled by a computer electric
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM]
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/26Pc applications
    • G05B2219/2642Domotique, domestic, home control, automation, smart house
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to the field of smart home technology, and in particular, to a linkage control method, a linkage control system, and a smart wearable device of a smart wearable device.
  • Smart wearable devices such as smart bracelets, watches, etc.
  • the existing smart wearable devices are mostly Bluetooth devices, and can only be connected to one device at a time, such as when connected as a slave device, can be connected to the air conditioner, and can not be connected with the mobile phone, thereby reducing the user experience; When the device is connected, it can be connected to the air conditioner and the mobile phone at the same time, but the power consumption of the smart wearable device increases. This greatly reduces the user experience.
  • the main purpose of the present invention is to provide a linkage control method, a linkage control system, and a smart wearable device of a smart wearable device, which are designed to reduce the power consumption of the smart wearable device under the normal function of the smart wearable device, thereby improving the user experience.
  • the present invention provides a linkage control method for a smart wearable device, the smart wearable device having a master mode and a slave mode, and implementing control of the air conditioner based on the two modes;
  • the smart wearable device alternately switches between the main mode and the slave mode to control the air conditioner.
  • the step of the smart wearable device alternately switching between the main mode and the slave mode to control the air conditioner comprises:
  • the smart wearable device enters a main mode and monitors a first hold time in the main mode
  • the smart wearable device When the second holding time reaches the second predetermined time, the smart wearable device is controlled to switch from the slave mode to the master mode.
  • the linkage control method of the smart wearable device further includes:
  • the wireless connection module comprises a Bluetooth module or a WiFi module.
  • the linkage control method of the smart wearable device further includes:
  • the smart wearable device When the smart wearable device enters the slave mode, if the request message sent by the mobile terminal successfully scanning the wireless connection module of the smart wearable device is received, establishing a wireless connection with the mobile terminal and completing the data communication.
  • the linkage control method of the smart wearable device further includes:
  • the present invention further provides a smart wearable device having a master mode and a slave mode, and implementing control of an air conditioner based on the two modes;
  • the smart wearable device includes:
  • a switching processing module configured for the smart wearable device to alternately switch between the main mode and the slave mode to control the air conditioner.
  • the handover processing module includes:
  • a monitoring unit configured to enter the main mode by the smart wearable device, and monitor a first hold time in the main mode
  • control unit configured to control the smart wearable device to switch from the main mode to the slave mode when the first hold time reaches a first predetermined time
  • the monitoring unit is further configured to monitor a second hold time of the smart wearable device in the slave mode
  • the control unit is further configured to control the smart wearable device to switch from the slave mode to a master mode when the second hold time reaches a second predetermined time.
  • the smart wearable device further includes:
  • a scanning module configured to scan a wireless connection module of the air conditioner when the smart wearable device enters the main mode
  • connection module configured to establish a wireless connection with the air conditioner and complete data communication when successfully scanning the wireless connection module of the air conditioner.
  • the wireless connection module comprises a Bluetooth module or a WiFi module.
  • connection module is further configured to:
  • the smart wearable device When the smart wearable device enters the slave mode, if the request message sent by the mobile terminal successfully scanning the wireless connection module of the smart wearable device is received, establishing a wireless connection with the mobile terminal and completing the data communication.
  • the smart wearable device further includes:
  • An acquiring module configured to acquire a connection state of the smart wearable device and body parameter information
  • the adjusting module is configured to adjust the size of the first holding time or the second holding time according to the connection state and/or the human body parameter information.
  • the present invention further provides a linkage control system, the linkage control system including a smart wearable device and an air conditioner and a mobile terminal wirelessly connected to the smart wearable device, the smart wearable device having a main mode and a slave Mode, and based on the two modes, controlling the air conditioner, the smart wearable device is configured to alternately switch between the main mode and the slave mode to control the air conditioner; the air conditioner is used in the When the smart wearable device enters the main mode and receives the wireless connection request message sent by the smart wearable device, establishing a wireless connection with the smart wearable device; the mobile terminal is configured to switch at the smart wearable device When the slave mode is successfully scanned to the smart wearable device, a wireless connection with the smart wearable device is established.
  • the linkage control system including a smart wearable device and an air conditioner and a mobile terminal wirelessly connected to the smart wearable device, the smart wearable device having a main mode and a slave Mode, and based on the two modes, controlling the air conditioner, the smart wearable device is configured
  • the invention provides a linkage control method, a linkage control system and a smart wearable device of a smart wearable device, the smart wearable device having a main mode and a slave mode, and implementing control of an air conditioner based on the two modes, the smart wearable device
  • the purpose of controlling the air conditioner is achieved by alternately switching between the main mode and the slave mode. In this way, the power consumption of the smart wearable device can be reduced while ensuring the normal function of the smart wearable device, thereby improving the user experience.
  • FIG. 1 is a schematic flowchart of a first embodiment of a method for controlling linkage of a smart wearable device according to the present invention
  • FIG. 2 is a schematic diagram of a refinement process of the first embodiment in which the step smart wearable device of FIG. 1 alternately switches between the main mode and the slave mode to control the air conditioner;
  • FIG. 3 is a schematic diagram of master-slave mode switching and duty cycle of the smart wearable device of the present invention.
  • FIG. 4 is a schematic diagram showing a refinement process of the second embodiment in which the step smart wearable device of FIG. 1 alternately switches between the main mode and the slave mode to control the air conditioner;
  • FIG. 5 is a schematic diagram showing the refinement process of the third embodiment of the step of the intelligent wearable device of FIG. 1 in which the main mode and the slave mode are alternately switched to control the air conditioner;
  • FIG. 6 is a schematic diagram of a first embodiment of performing duty ratio adjustment of a smart wearable device according to the present invention.
  • FIG. 7 is a schematic diagram of a second embodiment of duty ratio adjustment of a smart wearable device according to the present invention.
  • FIG. 8 is a schematic diagram of a third embodiment of duty ratio adjustment of a smart wearable device according to the present invention.
  • FIG. 9 is a schematic diagram of functional modules of a first embodiment of a smart wearable device according to the present invention.
  • FIG. 10 is a schematic diagram of a refinement function module of the handover processing module in FIG. 9;
  • FIG. 11 is a schematic diagram of functional modules of a second embodiment of a smart wearable device according to the present invention.
  • FIG. 12 is a schematic diagram of functional modules of an embodiment of a linkage control system according to the present invention.
  • the present invention provides a linkage control method for a smart wearable device, a linkage control system, and a smart wearable device, the smart wearable device having a master mode and a slave mode, and implementing control of the air conditioner based on the two modes, therefore, the The smart wearable device can alternately switch between the main mode and the slave mode to achieve the purpose of controlling the air conditioner. In this way, the power consumption of the smart wearable device can be reduced while ensuring the normal function of the smart wearable device, thereby improving the user experience.
  • the linkage control method of the smart wearable device includes the following steps:
  • Step S10 The smart wearable device alternately switches between the main mode and the slave mode to control the air conditioner.
  • the smart wearable device can be a smart wristband, a smart watch, etc., and has various detection functions such as steps, sleep, heart rate, body temperature, illumination, environmental noise, diet, and the like, and can be connected with a mobile terminal such as a mobile phone.
  • a mobile terminal such as a mobile phone.
  • Devices such as tablets and air conditioners are connected wirelessly.
  • the smart wearable device has a master mode and a slave mode, and controls the air conditioner based on the two modes.
  • the main mode of the smart wearable device is: being able to search for the wireless connection module of the air conditioner, and actively establishing a wireless connection with the air conditioner; the slave mode: unable to actively establish a wireless connection with the mobile terminal, only Can wait for the mobile terminal to initiate a connection. Therefore, the smart wearable device of the present invention can switch between the master mode and the slave mode, and can be used as a master or a slave, thereby avoiding the smart wear caused by the simultaneous connection with the air conditioner and the mobile terminal in the prior art.
  • the problem of increased power consumption of the device In this way, not only the normal function of the smart wearable device but also the power consumption thereof can be reduced, thereby improving the user experience.
  • the linkage control method of the smart wearable device achieves the purpose of controlling the air conditioner by alternately switching between the main mode and the slave mode. In this way, the power consumption of the smart wearable device can be reduced while ensuring the normal function of the smart wearable device, thereby improving the user experience.
  • the step S10 includes:
  • Step S101 the smart wearable device enters a main mode, and monitors a first hold time in the main mode
  • Step S102 when the first holding time reaches the first predetermined time, controlling the smart wearable device to switch from the main mode to the slave mode;
  • Step S103 monitoring a second holding time of the smart wearable device in the slave mode
  • Step S104 When the second holding time reaches the second predetermined time, the smart wearable device is controlled to switch from the slave mode to the master mode.
  • the smart wearable device when the smart wearable device enters the main mode, the smart wearable device is monitored for the first hold time of the main mode, and if the first hold time reaches the first predetermined time t1, the main mode is switched to the slave mode. Mode; if the first hold time has not reached the first predetermined time t1, the communication connection with the air conditioner is continued until the first predetermined time t1 is reached.
  • the smart wearable device When the smart wearable device enters the slave mode, monitoring the smart wearable device in the second hold time of the slave mode, if the second hold time reaches the second predetermined time t2, the slave mode is switched to the master mode; if the second hold time is not up At the second predetermined time t2, the communication connection with the mobile terminal is continued until the second predetermined time t2 is reached.
  • the method further includes:
  • Step S105 scanning the wireless connection module of the air conditioner when the smart wearable device enters the main mode
  • the wireless connection module may be a Bluetooth module, or may be a WiFi module or the like.
  • Step S106 when the wireless connection module of the air conditioner is successfully scanned, establish a wireless connection with the air conditioner, and complete data communication.
  • the smart wearable device when the smart wearable device enters the main mode, the device that can be wirelessly connected is actively scanned, and when the wireless connection module of the air conditioner is successfully scanned, the wireless connection with the air conditioner is established, and the data is completed. communication.
  • the method further includes:
  • Step S107 when the smart wearable device enters the slave mode, if a request message sent by the mobile terminal successfully scanning the wireless connection module of the smart wearable device is received, establishing a wireless connection with the mobile terminal, And complete the data communication.
  • the smart wearable device when the smart wearable device enters the slave mode, the smart wearable device cuts off the wireless connection with the mobile terminal and is in a searchable state to be connected.
  • the connection request message may be sent.
  • the response message may be fed back to establish a wireless connection with the mobile terminal and complete the data. communication.
  • the method further includes:
  • Step S20 Obtain a connection state of the smart wearable device and body parameter information.
  • Step S30 correspondingly adjusting the size of the first holding time or the second holding time according to the connection state and/or the human body parameter information.
  • the size of the duty ratio A may be adjusted according to the connection state of the smart wearable device and/or the body parameter information, that is, by adjusting the size of the first hold time or the second hold time.
  • the smart wearable device when the user is outdoors, that is, when the connection state between the smart wearable device and the air conditioner is detected to be disconnected, the smart wearable device automatically reduces the size of the first hold time (or duty ratio);
  • the smart wearable device automatically increases the size of the first hold time (or duty cycle);
  • the smart wearable device determines that the user enters the light sleep mode or the deep sleep mode according to the detected human body parameter information, at this time, the data required by the air conditioner is more dense, and therefore, the smart wearable device continues to increase the first hold time. (or duty cycle) to make the uploaded human body data denser.
  • the smart wearable device can adjust the duty ratio according to the specific scenario, which can avoid unnecessary switching, thereby better meeting the actual needs of the user and further improving the user experience.
  • the present invention also provides a smart wearable device 1.
  • the smart wearable device has a master mode and a slave mode, and implements control of an air conditioner based on the two modes;
  • the smart wearer Device 1 includes:
  • the switching processing module 10 is configured to switch the smart wearable device between the main mode and the slave mode to control the air conditioner.
  • the smart wearable device can be a smart wristband, a smart watch, etc., and has various detection functions such as steps, sleep, heart rate, body temperature, illumination, environmental noise, diet, and the like, and can be connected with a mobile terminal such as a mobile phone.
  • a mobile terminal such as a mobile phone.
  • Devices such as tablets and air conditioners are connected wirelessly.
  • the smart wearable device has a master mode and a slave mode, and controls the air conditioner based on the two modes.
  • the main mode of the smart wearable device is: being able to search for the wireless connection module of the air conditioner, and actively establishing a wireless connection with the air conditioner; the slave mode: unable to actively establish a wireless connection with the mobile terminal, only Can wait for the mobile terminal to initiate a connection. Therefore, the smart wearable device of the present invention can switch between the master mode and the slave mode, and can be used as a master or a slave, thereby avoiding the smart wear caused by the simultaneous connection with the air conditioner and the mobile terminal in the prior art.
  • the problem of increased power consumption of the device In this way, not only the normal function of the smart wearable device but also the power consumption thereof can be reduced, thereby improving the user experience.
  • the smart wearable device provided by the invention achieves the purpose of controlling the air conditioner by alternately switching between the main mode and the slave mode. In this way, the power consumption of the smart wearable device can be reduced while ensuring the normal function of the smart wearable device, thereby improving the user experience.
  • the switching processing module 10 includes:
  • the monitoring unit 101 is configured to enter the main mode of the smart wearable device, and monitor a first hold time in the main mode;
  • the control unit 102 is configured to control the smart wearable device to switch from the main mode to the slave mode when the first hold time reaches the first predetermined time;
  • the monitoring unit 101 is further configured to monitor a second hold time of the smart wearable device in the slave mode
  • the control unit 102 is further configured to control the smart wearable device to switch from the slave mode to a master mode when the second hold time reaches a second predetermined time.
  • the smart wearable device when the smart wearable device enters the main mode, the smart wearable device is monitored in the first hold time of the main mode, and if the first hold time reaches the first predetermined time t1, the main mode is switched to the slave mode; When the hold time has not reached the first predetermined time t1, the communication connection with the air conditioner is continued until the first predetermined time t1 is reached.
  • the smart wearable device When the smart wearable device enters the slave mode, monitoring the smart wearable device in the second hold time of the slave mode, if the second hold time reaches the second predetermined time t2, the slave mode is switched to the master mode; if the second hold time is not up At the second predetermined time t2, the communication connection with the mobile terminal is continued until the second predetermined time t2 is reached.
  • the period during which the smart wearable device switches between the main mode and the slave mode is t1+t2.
  • the smart wearable device further includes:
  • the scanning module 20 is configured to scan a wireless connection module of the air conditioner when the smart wearable device enters the main mode;
  • the wireless connection module may be a Bluetooth module, or may be a WiFi module or the like.
  • connection module 30 is configured to establish a wireless connection with the air conditioner and complete data communication when the wireless connection module of the air conditioner is successfully scanned.
  • the smart wearable device when the smart wearable device enters the main mode, the device that can be wirelessly connected is actively scanned, and when the wireless connection module of the air conditioner is successfully scanned, the wireless connection with the air conditioner is established, and the data is completed. communication.
  • connection module 30 is further configured to:
  • the smart wearable device When the smart wearable device enters the slave mode, if the request message sent by the mobile terminal successfully scanning the wireless connection module of the smart wearable device is received, establishing a wireless connection with the mobile terminal and completing the data communication.
  • the smart wearable device when the smart wearable device enters the slave mode, the smart wearable device cuts off the wireless connection with the mobile terminal and is in a searchable state to be connected.
  • the connection request message may be sent.
  • the response message may be fed back to establish a wireless connection with the mobile terminal and complete the data. communication.
  • the smart wearable device 1 further includes:
  • the obtaining module 40 is configured to acquire a connection state of the smart wearable device and body parameter information
  • the adjusting module 50 is configured to adjust the size of the first holding time or the second holding time according to the connection state and/or the human body parameter information.
  • the size of the duty ratio A may be adjusted according to the connection state of the smart wearable device and/or the body parameter information, that is, by adjusting the size of the first hold time or the second hold time.
  • the smart wearable device when the user is outdoors, that is, when the connection state between the smart wearable device and the air conditioner is detected to be disconnected, the smart wearable device automatically reduces the size of the first hold time (or duty ratio);
  • the smart wearable device automatically increases the size of the first hold time (or duty cycle);
  • the smart wearable device determines that the user enters the light sleep mode or the deep sleep mode according to the detected human body parameter information, at this time, the data required by the air conditioner is more dense, and therefore, the smart wearable device continues to increase the first hold time. (or duty cycle) to make the uploaded human body data denser.
  • the smart wearable device can adjust the duty ratio according to the specific scenario, which can avoid unnecessary switching, thereby better meeting the actual needs of the user and further improving the user experience.
  • the linkage control system 100 includes a smart wearable device 1 and an air conditioner 2 and a mobile terminal 3 wirelessly connected to the smart wearable device 1.
  • the smart wearable device 1 has a master mode and a slave mode, and controls the air conditioner 2 based on the two modes, the smart wearable device 1 is configured to alternately switch between the master mode and the slave mode, Controlling the air conditioner 2;
  • the air conditioner 2 is configured to establish the smart wearable device when the smart wearable device 1 enters the main mode and receives the wireless connection request message sent by the smart wearable device 1 a wireless connection between 1;
  • the mobile terminal 3 is configured to establish a wireless connection with the smart wearable device 1 when the smart wearable device 1 switches to a slave mode and successfully scans to the smart wearable device 1 connection.
  • the smart wearable device 1 can be a smart wristband, a smart watch, etc., and has various detection functions such as steps, sleep, heart rate, body temperature, illumination, environmental noise, diet, and the like, and can be combined with the mobile terminal 3
  • the device such as a mobile phone or a tablet computer and the air conditioner 2 are wirelessly connected.
  • the smart wearable device 1 has a master mode and a slave mode, and controls the air conditioner 2 based on the two modes.
  • the main mode of the smart wearable device 1 is: capable of searching for the wireless connection module of the air conditioner 2, and actively establishing a wireless connection with the air conditioner 2; slave mode: unable to actively establish an interaction with the mobile terminal 3
  • the wireless connection can only wait for the mobile terminal 3 to initiate a connection. Therefore, the smart wearable device 1 can switch between the master mode and the slave mode, and can be used as a master or a slave, thereby avoiding the smart wear caused by the simultaneous connection with the air conditioner 2 and the mobile terminal 3 in the prior art.
  • the problem that the power consumption of the device 1 increases accordingly. In this way, not only the normal function of the smart wearable device 1 but also the power consumption thereof can be reduced, thereby improving the user experience.
  • the smart wearable device 1 When the smart wearable device 1 enters the main mode, the device that can be wirelessly connected is actively scanned. When the wireless connection module of the air conditioner 2 is successfully scanned, a wireless connection request message is sent to the air conditioner 2, and the air conditioner 2 can be established and Wireless connection between smart wearable devices 1 and complete data communication.
  • the mobile terminal 3 scans the connectable device, and when the smart wearable device 1 is successfully scanned, establishes a wireless connection with the smart wearable device 1.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Manufacturing & Machinery (AREA)
  • Quality & Reliability (AREA)
  • Selective Calling Equipment (AREA)
  • Air Conditioning Control Device (AREA)
  • Telephone Function (AREA)

Abstract

一种智能穿戴设备的联动控制方法、联动控制***及智能穿戴设备,该智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制;该智能穿戴设备的联动控制方法包括:智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制(S10)。该联动控制***可以在保证智能穿戴设备的正常功能情况下,降低智能穿戴设备功耗,从而提高用户体验。

Description

联动控制方法、联动控制***及智能穿戴设备
技术领域
本发明涉及智能家居技术领域,尤其涉及一种智能穿戴设备的联动控制方法、联动控制***及智能穿戴设备。
背景技术
智能穿戴设备如智能手环、手表等,由于方便携带同时可通过传感器准确获得人体数据,从而常常作为智能家居的数据入口。现有的智能穿戴设备大多是蓝牙设备,而且每次仅能与一个设备进行连接,如在作为从设备时,可以与空调连接,而不能与手机保持连接,从而降低了用户体验;若作为主设备时,则可以与空调和手机同时连接,但智能穿戴设备的功耗随之增大。这样,极大地降低了用户体验。
发明内容
本发明的主要目的在于提供一种智能穿戴设备的联动控制方法、联动控制***及智能穿戴设备,旨在保证智能穿戴设备的正常功能情况下,降低智能穿戴设备功耗,从而提高用户体验。
为实现上述目的,本发明提供一种智能穿戴设备的联动控制方法,所述智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制;包括以下步骤:
所述智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制。
优选地,所述智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制的步骤包括:
所述智能穿戴设备进入主模式,并监测处于所述主模式的第一保持时间;
待所述第一保持时间达到第一预定时间时,控制所述智能穿戴设备从所述主模式切换为从模式;
监测所述智能穿戴设备处于所述从模式的第二保持时间;
待所述第二保持时间达到第二预定时间时,控制所述智能穿戴设备从所述从模式切换为主模式。
优选地,所述智能穿戴设备的联动控制方法还包括:
在所述智能穿戴设备进入主模式时,扫描空调器的无线连接模块;
当成功扫描到所述空调器的无线连接模块时,建立与所述空调器的无线连接,并完成数据通讯。
优选地,所述无线连接模块包括蓝牙模块或WiFi模块。
优选地,所述智能穿戴设备的联动控制方法还包括:
在所述智能穿戴设备进入从模式时,若接收到移动终端成功扫描到所述智能穿戴设备的无线连接模块而发送的请求消息,则建立与所述移动终端之间的无线连接,并完成数据通讯。
优选地,所述智能穿戴设备的联动控制方法还包括:
获取所述智能穿戴设备的连接状态以及人体参数信息;
根据所述连接状态和/或所述人体参数信息,对应调整所述第一保持时间或第二保持时间的大小。
为实现上述目的,本发明还提供一种智能穿戴设备,所述智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制;所述智能穿戴设备包括:
切换处理模块,用于所述智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制。
优选地,所述切换处理模块包括:
监测单元,用于所述智能穿戴设备进入主模式,并监测处于所述主模式的第一保持时间;
控制单元,用于待所述第一保持时间达到第一预定时间时,控制所述智能穿戴设备从所述主模式切换为从模式;
所述监测单元,还用于监测所述智能穿戴设备处于所述从模式的第二保持时间;
所述控制单元,还用于待所述第二保持时间达到第二预定时间时,控制所述智能穿戴设备从所述从模式切换为主模式。
优选地,所述智能穿戴设备还包括:
扫描模块,用于在所述智能穿戴设备进入主模式时,扫描空调器的无线连接模块;
连接模块,用于当成功扫描到所述空调器的无线连接模块时,建立与所述空调器的无线连接,并完成数据通讯。
优选地,所述无线连接模块包括蓝牙模块或WiFi模块。
优选地,所述连接模块,还用于:
在所述智能穿戴设备进入从模式时,若接收到移动终端成功扫描到所述智能穿戴设备的无线连接模块而发送的请求消息,则建立与所述移动终端之间的无线连接,并完成数据通讯。
优选地,所述智能穿戴设备还包括:
获取模块,用于获取所述智能穿戴设备的连接状态以及人体参数信息;
调整模块,用于根据所述连接状态和/或所述人体参数信息,对应调整所述第一保持时间或第二保持时间的大小。
为实现上述目的,本发明还提供一种联动控制***,所述联动控制***包括智能穿戴设备以及与所述智能穿戴设备无线连接的空调器、移动终端,所述智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制,所述智能穿戴设备用于在所述主模式和从模式之间进行交替切换,以对空调器进行控制;所述空调器用于在所述智能穿戴设备进入主模式,并接收到所述智能穿戴设备发送的无线连接请求消息时,建立与所述智能穿戴设备之间的无线连接;所述移动终端用于在所述智能穿戴设备切换为从模式,并成功扫描到所述智能穿戴设备时,建立与所述智能穿戴设备之间的无线连接。
本发明提供的智能穿戴设备的联动控制方法、联动控制***及智能穿戴设备,所述智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制,所述智能穿戴设备通过在所述主模式和从模式之间进行交替切换,达到对空调器进行控制的目的。这样,可以在保证智能穿戴设备的正常功能情况下,降低智能穿戴设备功耗,从而提高用户体验。
附图说明
图1为本发明智能穿戴设备的联动控制方法第一实施例的流程示意图;
图2为图1中步骤智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制第一实施例的细化流程示意图;
图3为本发明智能穿戴设备的主、从模式周期切换以及占空比示意图;
图4为图1中步骤智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制第二实施例的细化流程示意图;
图5为图1中步骤智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制第三实施例的细化流程示意图;
图6为本发明智能穿戴设备的进行占空比调节第一实施例的示意图;
图7为本发明智能穿戴设备的进行占空比调节第二实施例的示意图;
图8为本发明智能穿戴设备的进行占空比调节第三实施例的示意图;
图9为本发明智能穿戴设备第一实施例的功能模块示意图;
图10为图9中切换处理模块的细化功能模块示意图;
图11为本发明智能穿戴设备第二实施例的功能模块示意图;
图12为本发明联动控制***一实施例的功能模块示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明提供一种智能穿戴设备的联动控制方法、联动控制***及智能穿戴设备,所述智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制,因此,所述智能穿戴设备可以在所述主模式和从模式之间进行交替切换,达到对空调器进行控制的目的。这样,可以在保证智能穿戴设备的正常功能情况下,降低智能穿戴设备功耗,从而提高用户体验。
参照图1,在一实施例中,所述智能穿戴设备的联动控制方法包括以下步骤:
步骤S10、所述智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制。
本实施例中,所述智能穿戴设备可以为智能手环、智能手表等,具有步数、睡眠、心率、体温、光照、环境噪声、饮食等多种检测功能,并可与移动终端如手机、平板电脑等设备以及空调器进行无线连接。
所述智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制。本实施例中,智能穿戴设备的主模式为:能够搜索空调器的无线连接模块,并主动建立与空调器之间的无线连接;从模式:不能主动建立与移动终端之间的无线连接,只能等待移动终端发起连接。因此,本发明的智能穿戴设备可以在主模式和从模式之间进行切换,既可以作主机也可以作从机,从而避免了现有技术中与空调器、移动终端同时连接时,导致智能穿戴设备的功耗随之增大的问题。如此,不仅可以保证智能穿戴设备的正常功能,还可以降低其功耗,因此,提高了用户体验。
本发明提供的智能穿戴设备的联动控制方法,通过在所述主模式和从模式之间进行交替切换,达到对空调器进行控制的目的。这样,可以在保证智能穿戴设备的正常功能情况下,降低智能穿戴设备功耗,从而提高用户体验。
在一实施例中,如图2所示,在上述图1所示的基础上,所述步骤S10包括:
步骤S101,所述智能穿戴设备进入主模式,并监测处于所述主模式的第一保持时间;
步骤S102,待所述第一保持时间达到第一预定时间时,控制所述智能穿戴设备从所述主模式切换为从模式;
步骤S103,监测所述智能穿戴设备处于所述从模式的第二保持时间;
步骤S104,待所述第二保持时间达到第二预定时间时,控制所述智能穿戴设备从所述从模式切换为主模式。
本实施例中,参照图3,当智能穿戴设备进入主模式时,监测智能穿戴设备处于主模式的第一保持时间,若第一保持时间达到第一预定时间t1,则将主模式切换为从模式;若第一保持时间未到第一预定时间t1,则继续保持与空调器之间的通讯连接,直至达到第一预定时间t1。
当智能穿戴设备进入从模式时,监测智能穿戴设备处于从模式的第二保持时间,若第二保持时间达到第二预定时间t2,则将从模式切换为主模式;若第二保持时间未到第二预定时间t2,则继续保持与移动终端之间的通讯连接,直至达到第二预定时间t2。
其中,智能穿戴设备进行主模式和从模式之间切换的周期为T=t1+ t2。
在一实施例中,如图4所示,在上述图2所示的基础上,所述步骤S101之前还包括:
步骤S105,在所述智能穿戴设备进入主模式时,扫描空调器的无线连接模块;
本实施例中,无线连接模块可以是蓝牙模块,还可以是WiFi模块等。
步骤S106,当成功扫描到所述空调器的无线连接模块时,建立与所述空调器之间的无线连接,并完成数据通讯。
本实施例中,在所述智能穿戴设备进入主模式时,主动扫描可以无线连接的设备,当成功扫描到空调器的无线连接模块时,即建立与空调器之间的无线连接,并完成数据通讯。
在一实施例中,如图5所示,在上述图2或图3所示的基础上,所述步骤S102之后还包括:
步骤S107,在所述智能穿戴设备进入从模式时,若接收到移动终端成功扫描到所述智能穿戴设备的无线连接模块而发送的请求消息,则建立与所述移动终端之间的无线连接,并完成数据通讯。
本实施例中,在所述智能穿戴设备进入从模式时,智能穿戴设备切断与移动终端之间的无线连接,并处于可搜索的待连接状态。当移动终端扫描到智能穿戴设备的无线连接模块时,可以发送连接请求消息,在智能穿戴设备接收到该请求消息时,可以反馈应答消息,以建立与移动终端之间的无线连接,并完成数据通讯。
在一实施例中,如图1所示,所述步骤S10之后还包括:
步骤S20,获取所述智能穿戴设备的连接状态以及人体参数信息;
步骤S30,根据所述连接状态和/或所述人体参数信息,对应调整所述第一保持时间或第二保持时间的大小。
本实施例中,可以根据智能穿戴设备的连接状态和/或所述人体参数信息,对应调整占空比A的大小,也即通过调整第一保持时间或第二保持时间的大小来实现。以下以调整第一保持时间为例进行说明,其中,占空比A=t1/T。具体地:
参照图6,当用户在户外,也即检测到智能穿戴设备与空调器之间的连接状态为断开时,所述智能穿戴设备自动减小第一保持时间(或占空比)的大小;
参照图7,当用户在室内,也即移动终端、空调器以及智能穿戴设备在同一空间内时,由于此时更倾向于通过智能穿戴设备控制空调器,智能穿戴设备处于主模式的几率更高,因此,所述智能穿戴设备自动增大第一保持时间(或占空比)的大小;
参照图8,当智能穿戴设备根据检测的人体参数信息,判断用户进入浅睡模式或深睡模式时,此时,空调器要求的数据更加密集,因此,智能穿戴设备继续增大第一保持时间(或占空比),以使上传的人体数据越密集。
这样,智能穿戴设备可以根据具体场景对应调整占空比,可以避免不必要的切换,从而可以更好的满足用户实际需求,进一步提高用户体验。
本发明还提供一种智能穿戴设备1,参照图9,在一实施例中,所述智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制;所述智能穿戴设备1包括:
切换处理模块10,用于所述智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制。
本实施例中,所述智能穿戴设备可以为智能手环、智能手表等,具有步数、睡眠、心率、体温、光照、环境噪声、饮食等多种检测功能,并可与移动终端如手机、平板电脑等设备以及空调器进行无线连接。
所述智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制。本实施例中,智能穿戴设备的主模式为:能够搜索空调器的无线连接模块,并主动建立与空调器之间的无线连接;从模式:不能主动建立与移动终端之间的无线连接,只能等待移动终端发起连接。因此,本发明的智能穿戴设备可以在主模式和从模式之间进行切换,既可以作主机也可以作从机,从而避免了现有技术中与空调器、移动终端同时连接时,导致智能穿戴设备的功耗随之增大的问题。如此,不仅可以保证智能穿戴设备的正常功能,还可以降低其功耗,因此,提高了用户体验。
本发明提供的智能穿戴设备,通过在所述主模式和从模式之间进行交替切换,达到对空调器进行控制的目的。这样,可以在保证智能穿戴设备的正常功能情况下,降低智能穿戴设备功耗,从而提高用户体验。
在一实施例中,如图10所示,在上述图9所示的基础上,所述切换处理模块10包括:
监测单元101,用于所述智能穿戴设备进入主模式,并监测处于所述主模式的第一保持时间;
控制单元102,用于待所述第一保持时间达到第一预定时间时,控制所述智能穿戴设备从所述主模式切换为从模式;
所述监测单元101,还用于监测所述智能穿戴设备处于所述从模式的第二保持时间;
所述控制单元102,还用于待所述第二保持时间达到第二预定时间时,控制所述智能穿戴设备从所述从模式切换为主模式。
本实施例中,当智能穿戴设备进入主模式时,监测智能穿戴设备处于主模式的第一保持时间,若第一保持时间达到第一预定时间t1,则将主模式切换为从模式;若第一保持时间未到第一预定时间t1,则继续保持与空调器之间的通讯连接,直至达到第一预定时间t1。
当智能穿戴设备进入从模式时,监测智能穿戴设备处于从模式的第二保持时间,若第二保持时间达到第二预定时间t2,则将从模式切换为主模式;若第二保持时间未到第二预定时间t2,则继续保持与移动终端之间的通讯连接,直至达到第二预定时间t2。
其中,智能穿戴设备进行主模式和从模式之间切换的周期为t1+ t2。
在第一实施例中,如图9所示,所述智能穿戴设备还包括:
扫描模块20,用于在所述智能穿戴设备进入主模式时,扫描空调器的无线连接模块;
本实施例中,无线连接模块可以是蓝牙模块,还可以是WiFi模块等。
连接模块30,用于当成功扫描到所述空调器的无线连接模块时,建立与所述空调器的无线连接,并完成数据通讯。
本实施例中,在所述智能穿戴设备进入主模式时,主动扫描可以无线连接的设备,当成功扫描到空调器的无线连接模块时,即建立与空调器之间的无线连接,并完成数据通讯。
在第二实施例中,如图9所示,所述连接模块30,还用于:
在所述智能穿戴设备进入从模式时,若接收到移动终端成功扫描到所述智能穿戴设备的无线连接模块而发送的请求消息,则建立与所述移动终端之间的无线连接,并完成数据通讯。
本实施例中,在所述智能穿戴设备进入从模式时,智能穿戴设备切断与移动终端之间的无线连接,并处于可搜索的待连接状态。当移动终端扫描到智能穿戴设备的无线连接模块时,可以发送连接请求消息,在智能穿戴设备接收到该请求消息时,可以反馈应答消息,以建立与移动终端之间的无线连接,并完成数据通讯。
在一实施例中,如图11所示,在上述图9所示的基础上,所述智能穿戴设备1还包括:
获取模块40,用于获取所述智能穿戴设备的连接状态以及人体参数信息;
调整模块50,用于根据所述连接状态和/或所述人体参数信息,对应调整所述第一保持时间或第二保持时间的大小。
本实施例中,可以根据智能穿戴设备的连接状态和/或所述人体参数信息,对应调整占空比A的大小,也即通过调整第一保持时间或第二保持时间的大小来实现。以下以调整第一保持时间为例进行说明,其中,占空比A=t1/T。具体地:
参照图6,当用户在户外,也即检测到智能穿戴设备与空调器之间的连接状态为断开时,所述智能穿戴设备自动减小第一保持时间(或占空比)的大小;
参照图7,当用户在室内,也即移动终端、空调器以及智能穿戴设备在同一空间内时,由于此时更倾向于通过智能穿戴设备控制空调器,智能穿戴设备处于主模式的几率更高,因此,所述智能穿戴设备自动增大第一保持时间(或占空比)的大小;
参照图8,当智能穿戴设备根据检测的人体参数信息,判断用户进入浅睡模式或深睡模式时,此时,空调器要求的数据更加密集,因此,智能穿戴设备继续增大第一保持时间(或占空比),以使上传的人体数据越密集。
这样,智能穿戴设备可以根据具体场景对应调整占空比,可以避免不必要的切换,从而可以更好的满足用户实际需求,进一步提高用户体验。
本发明还提供一种联动控制***100,参照图12,在一实施例中,所述联动控制***100包括智能穿戴设备1以及与所述智能穿戴设备1无线连接的空调器2、移动终端3,所述智能穿戴设备1具有主模式和从模式,并基于该两种模式实现对空调器2的控制,所述智能穿戴设备1用于在所述主模式和从模式之间进行交替切换,以对空调器2进行控制;所述空调器2用于在所述智能穿戴设备1进入主模式,并接收到所述智能穿戴设备1发送的无线连接请求消息时,建立与所述智能穿戴设备1之间的无线连接;所述移动终端3用于在所述智能穿戴设备1切换为从模式,并成功扫描到所述智能穿戴设备1时,建立与所述智能穿戴设备1之间的无线连接。
本实施例中,所述智能穿戴设备1可以为智能手环、智能手表等,具有步数、睡眠、心率、体温、光照、环境噪声、饮食等多种检测功能,并可与移动终端3如手机、平板电脑等设备以及空调器2进行无线连接。
所述智能穿戴设备1具有主模式和从模式,并基于该两种模式实现对空调器2的控制。本实施例中,智能穿戴设备1的主模式为:能够搜索空调器2的无线连接模块,并主动建立与空调器2之间的无线连接;从模式:不能主动建立与移动终端3之间的无线连接,只能等待移动终端3发起连接。因此,智能穿戴设备1可以在主模式和从模式之间进行切换,既可以作主机也可以作从机,从而避免了现有技术中与空调器2、移动终端3同时连接时,导致智能穿戴设备1的功耗随之增大的问题。如此,不仅可以保证智能穿戴设备1的正常功能,还可以降低其功耗,因此,提高了用户体验。
在所述智能穿戴设备1进入主模式时,主动扫描可以无线连接的设备,当成功扫描到空调器2的无线连接模块时,发送无线连接请求消息至空调器2,空调器2即可以建立与智能穿戴设备1之间的无线连接,并完成数据通讯。而当所述智能穿戴设备1进入从模式时,移动终端3扫描可以连接的设备,当成功扫描到所述智能穿戴设备1时,建立与所述智能穿戴设备1之间的无线连接。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (17)

  1. 一种智能穿戴设备的联动控制方法,其特征在于,所述智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制;所述智能穿戴设备的联动控制方法包括:
    所述智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制。
  2. 如权利要求1所述的智能穿戴设备的联动控制方法,其特征在于,所述智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制的步骤包括:
    所述智能穿戴设备进入主模式,并监测处于所述主模式的第一保持时间;
    待所述第一保持时间达到第一预定时间时,控制所述智能穿戴设备从所述主模式切换为从模式;
    监测所述智能穿戴设备处于所述从模式的第二保持时间;
    待所述第二保持时间达到第二预定时间时,控制所述智能穿戴设备从所述从模式切换为主模式。
  3. 如权利要求1所述的智能穿戴设备的联动控制方法,其特征在于,所述智能穿戴设备的联动控制方法还包括:
    在所述智能穿戴设备进入主模式时,扫描空调器的无线连接模块;
    当成功扫描到所述空调器的无线连接模块时,建立与所述空调器的无线连接,并完成数据通讯。
  4. 如权利要求2所述的智能穿戴设备的联动控制方法,其特征在于,所述智能穿戴设备的联动控制方法还包括:
    在所述智能穿戴设备进入主模式时,扫描空调器的无线连接模块;
    当成功扫描到所述空调器的无线连接模块时,建立与所述空调器的无线连接,并完成数据通讯。
  5. 如权利要求4所述的智能穿戴设备的联动控制方法,其特征在于,所述无线连接模块包括蓝牙模块或WiFi模块。
  6. 如权利要求1所述的智能穿戴设备的联动控制方法,其特征在于,所述智能穿戴设备的联动控制方法还包括:
    在所述智能穿戴设备进入从模式时,若接收到移动终端成功扫描到所述智能穿戴设备的无线连接模块而发送的请求消息,则建立与所述移动终端之间的无线连接,并完成数据通讯。
  7. 如权利要求2所述的智能穿戴设备的联动控制方法,其特征在于,所述智能穿戴设备的联动控制方法还包括:
    在所述智能穿戴设备进入从模式时,若接收到移动终端成功扫描到所述智能穿戴设备的无线连接模块而发送的请求消息,则建立与所述移动终端之间的无线连接,并完成数据通讯。
  8. 如权利要求2所述的智能穿戴设备的联动控制方法,其特征在于,所述智能穿戴设备的联动控制方法还包括:
    获取所述智能穿戴设备的连接状态以及人体参数信息;
    根据所述连接状态和/或所述人体参数信息,对应调整所述第一保持时间或第二保持时间的大小。
  9. 一种智能穿戴设备,其特征在于,所述智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制;所述智能穿戴设备包括:
    切换处理模块,用于所述智能穿戴设备在所述主模式和从模式之间进行交替切换,以对空调器进行控制。
  10. 如权利要求9所述的智能穿戴设备,其特征在于,所述切换处理模块包括:
    监测单元,用于所述智能穿戴设备进入主模式,并监测处于所述主模式的第一保持时间;
    控制单元,用于待所述第一保持时间达到第一预定时间时,控制所述智能穿戴设备从所述主模式切换为从模式;
    所述监测单元,还用于监测所述智能穿戴设备处于所述从模式的第二保持时间;
    所述控制单元,还用于待所述第二保持时间达到第二预定时间时,控制所述智能穿戴设备从所述从模式切换为主模式。
  11. 如权利要求9所述的智能穿戴设备,其特征在于,所述智能穿戴设备还包括:
    扫描模块,用于在所述智能穿戴设备进入主模式时,扫描空调器的无线连接模块;
    连接模块,用于当成功扫描到所述空调器的无线连接模块时,建立与所述空调器的无线连接,并完成数据通讯。
  12. 如权利要求10所述的智能穿戴设备,其特征在于,所述智能穿戴设备还包括:
    扫描模块,用于在所述智能穿戴设备进入主模式时,扫描空调器的无线连接模块;
    连接模块,用于当成功扫描到所述空调器的无线连接模块时,建立与所述空调器的无线连接,并完成数据通讯。
  13. 如权利要求12所述的智能穿戴设备,其特征在于,所述无线连接模块包括蓝牙模块或WiFi模块。
  14. 如权利要求9所述的智能穿戴设备,其特征在于,所述连接模块,还用于:
    在所述智能穿戴设备进入从模式时,若接收到移动终端成功扫描到所述智能穿戴设备的无线连接模块而发送的请求消息,则建立与所述移动终端之间的无线连接,并完成数据通讯。
  15. 如权利要求10所述的智能穿戴设备,其特征在于,所述连接模块,还用于:
    在所述智能穿戴设备进入从模式时,若接收到移动终端成功扫描到所述智能穿戴设备的无线连接模块而发送的请求消息,则建立与所述移动终端之间的无线连接,并完成数据通讯。
  16. 如权利要求10所述的智能穿戴设备,其特征在于,所述智能穿戴设备还包括:
    获取模块,用于获取所述智能穿戴设备的连接状态以及人体参数信息;
    调整模块,用于根据所述连接状态和/或所述人体参数信息,对应调整所述第一保持时间或第二保持时间的大小。
  17. 一种联动控制***,其特征在于,所述联动控制***包括智能穿戴设备以及与所述智能穿戴设备无线连接的空调器、移动终端,所述智能穿戴设备具有主模式和从模式,并基于该两种模式实现对空调器的控制,所述智能穿戴设备用于在所述主模式和从模式之间进行交替切换,以对空调器进行控制;所述空调器用于在所述智能穿戴设备进入主模式,并接收到所述智能穿戴设备发送的无线连接请求消息时,建立与所述智能穿戴设备之间的无线连接;所述移动终端用于在所述智能穿戴设备切换为从模式,并成功扫描到所述智能穿戴设备时,建立与所述智能穿戴设备之间的无线连接。
PCT/CN2017/090399 2016-08-09 2017-06-27 联动控制方法、联动控制***及智能穿戴设备 WO2018028322A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201610649330.2A CN106054658B (zh) 2016-08-09 2016-08-09 联动控制方法、联动控制***及智能穿戴设备
CN201610649330.2 2016-08-09

Publications (1)

Publication Number Publication Date
WO2018028322A1 true WO2018028322A1 (zh) 2018-02-15

Family

ID=57480808

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/090399 WO2018028322A1 (zh) 2016-08-09 2017-06-27 联动控制方法、联动控制***及智能穿戴设备

Country Status (2)

Country Link
CN (1) CN106054658B (zh)
WO (1) WO2018028322A1 (zh)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106054658B (zh) * 2016-08-09 2019-09-13 广东美的制冷设备有限公司 联动控制方法、联动控制***及智能穿戴设备

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104200632A (zh) * 2014-09-16 2014-12-10 广东欧珀移动通信有限公司 穿戴式设备结合智能移动终端实现遥控功能的方法与***
CN104375623A (zh) * 2014-11-28 2015-02-25 北京华网汇通技术服务有限公司 一种穿戴式智能设备及其节电控制方法
WO2015154312A1 (zh) * 2014-04-11 2015-10-15 华为技术有限公司 一种可穿戴式设备及运行模式的切换控制方法
CN105101362A (zh) * 2014-05-05 2015-11-25 刘洪明 降低蓝牙低功耗设备发送信号辐射的方法及***
CN105187282A (zh) * 2015-08-13 2015-12-23 小米科技有限责任公司 智能家居设备的控制方法、装置、***及设备
CN105208639A (zh) * 2015-08-31 2015-12-30 宇龙计算机通信科技(深圳)有限公司 一种可穿戴设备及其功耗优化方法
CN106054658A (zh) * 2016-08-09 2016-10-26 广东美的制冷设备有限公司 联动控制方法、联动控制***及智能穿戴设备

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104748312B (zh) * 2015-03-31 2018-01-02 美的集团股份有限公司 空调器的控制方法及***
CN104748311B (zh) * 2015-03-31 2017-08-15 美的集团股份有限公司 空调器的控制方法及***
CN204717960U (zh) * 2015-03-31 2015-10-21 美的集团股份有限公司 空调器的控制***
CN104864554A (zh) * 2015-04-30 2015-08-26 广东美的制冷设备有限公司 空调器及其控制方法、可穿戴设备、智能控制设备
CN105120499B (zh) * 2015-08-21 2019-01-01 深圳Tcl数字技术有限公司 蓝牙主从模式自动切换的方法和***
CN105516896A (zh) * 2015-12-02 2016-04-20 惠州Tcl移动通信有限公司 一种可穿戴设备与移动终端的蓝牙互连方法及***

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2015154312A1 (zh) * 2014-04-11 2015-10-15 华为技术有限公司 一种可穿戴式设备及运行模式的切换控制方法
CN105101362A (zh) * 2014-05-05 2015-11-25 刘洪明 降低蓝牙低功耗设备发送信号辐射的方法及***
CN104200632A (zh) * 2014-09-16 2014-12-10 广东欧珀移动通信有限公司 穿戴式设备结合智能移动终端实现遥控功能的方法与***
CN104375623A (zh) * 2014-11-28 2015-02-25 北京华网汇通技术服务有限公司 一种穿戴式智能设备及其节电控制方法
CN105187282A (zh) * 2015-08-13 2015-12-23 小米科技有限责任公司 智能家居设备的控制方法、装置、***及设备
CN105208639A (zh) * 2015-08-31 2015-12-30 宇龙计算机通信科技(深圳)有限公司 一种可穿戴设备及其功耗优化方法
CN106054658A (zh) * 2016-08-09 2016-10-26 广东美的制冷设备有限公司 联动控制方法、联动控制***及智能穿戴设备

Also Published As

Publication number Publication date
CN106054658A (zh) 2016-10-26
CN106054658B (zh) 2019-09-13

Similar Documents

Publication Publication Date Title
WO2011007984A2 (en) Updating method and apparatus of sleep mode operation
WO2012033342A2 (en) Apparatus and method for supporting location update registration process in machine to machine communication system
WO2017211054A1 (zh) 蓝牙智能手表、智能终端、及其spp远程控制拍照的方法和***
WO2014069844A1 (en) System and method of connecting devices via wi-fi network
WO2016037461A1 (zh) 一种利用ibeacons技术的会议管理方法及终端
WO2020155089A1 (zh) 蓝牙耳机的控制方法、蓝牙耳机及计算机可读存储介质
WO2015139371A1 (zh) 一种移动设备工作模式的控制方法及控制***
WO2019066353A1 (en) APPARATUS AND METHOD FOR CONTROLLING THE OPERATING CYCLE OF AN ELECTRONIC DEVICE IN A WIRELESS COMMUNICATION SYSTEM
WO2017107561A1 (zh) 一种基于多关联设备的事件提醒方法及***
WO2019114559A1 (zh) 空气调节器的控制方法、装置及计算机可读存储介质
WO2015143776A1 (zh) 一种多模省电的多媒体传输方法及其***
WO2017088304A1 (zh) 基于调温器的变频空调控制装置、终端、***及方法
WO2017143488A1 (zh) 家庭环境监控方法、装置及***
WO2019114587A1 (zh) 虚拟现实终端的信息处理方法、装置及可读存储介质
WO2021091175A1 (ko) Nan 기반의 클러스터 머징 방법 및 이를 지원하는 전자 장치
WO2019233190A1 (zh) 基于显示终端的文本转语音方法、显示终端及存储介质
WO2017164643A1 (en) Method and system for managing session across multiple electronic devices in network system
WO2020133766A1 (zh) 视频同步播放方法、设备及计算机可读存储介质
WO2016192587A1 (zh) 一种无线通信方法及装置
WO2018113315A1 (zh) 物联网定位方法、云端服务器、智能终端及智能硬件
WO2018145597A1 (zh) 基于移动终端的屏幕补光拍照方法及***、移动终端
WO2021082134A1 (zh) 家电的控制方法、家电控制装置和计算机存储介质
WO2017067232A1 (zh) 一种基于移动终端的自动呼叫转移方法、***及移动终端
WO2011021901A2 (en) Home network system and method for controlling the same
WO2020097995A1 (zh) 家用电器的电量监控方法、空气调节器和存储介质

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 17838452

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 17838452

Country of ref document: EP

Kind code of ref document: A1