WO2017054486A1 - 告警处理方法及装置 - Google Patents

告警处理方法及装置 Download PDF

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Publication number
WO2017054486A1
WO2017054486A1 PCT/CN2016/084163 CN2016084163W WO2017054486A1 WO 2017054486 A1 WO2017054486 A1 WO 2017054486A1 CN 2016084163 W CN2016084163 W CN 2016084163W WO 2017054486 A1 WO2017054486 A1 WO 2017054486A1
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Prior art keywords
monitoring
distance
alarm
monitored object
module
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PCT/CN2016/084163
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English (en)
French (fr)
Inventor
胡飞飞
卫伟
张家明
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中兴通讯股份有限公司
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Publication of WO2017054486A1 publication Critical patent/WO2017054486A1/zh

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    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B13/00Burglar, theft or intruder alarms
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/18Status alarms
    • G08B21/24Reminder alarms, e.g. anti-loss alarms
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B29/00Checking or monitoring of signalling or alarm systems; Prevention or correction of operating errors, e.g. preventing unauthorised operation

Definitions

  • This document relates to, but is not limited to, the field of communications, and more particularly to an alarm processing method and apparatus.
  • Losing a wallet or losing a mobile phone is one of the common things in life. I believe that many people around have had such experiences. Once lost, they will not only suffer economic losses, but also affect life and bring to our lives. A lot of inconvenience.
  • the problem to be solved by the embodiments of the present invention is to find this problem in the first time when the mobile phone or the wallet is lost, thereby recovering our losses or minimizing our losses.
  • Bluetooth anti-lost technology There are two main types of Bluetooth anti-lost technology: one is to start the alarm when the signal cannot be received by Bluetooth, and in some cases (such as being stolen), it cannot be effectively and timely alarmed; the other is through calculation The distance is alarmed, but the same distance calculation method is used in different environments, which inevitably leads to inaccurate calculation results; and the current anti-lost technology can only provide the system's own mode or distance calculation method, and does not support the user's own Defining the mode or user input greatly limits the use of the alarm system.
  • the anti-lost technology in the related art uses the same distance calculation method in different environments to make the alarm not timely, and an effective solution has not been proposed.
  • the embodiment of the invention provides an alarm processing method and device, which can use different distance calculation methods in different environments to make the alarm timely.
  • An embodiment of the present invention provides an alarm processing method, including: detecting a current monitoring scenario, where different monitoring scenarios correspond to different distance calculation methods; and using the distance calculation method corresponding to the detected monitoring scenario to calculate and the monitored object The distance between the calculated objects and the monitored object is greater than a preset value; when it is determined that the calculated distance from the monitored object is greater than a preset value, the alarm processing is performed.
  • the performing the alarm processing includes: determining, from the preset distance interval and the monitoring level correspondence table, a monitoring level corresponding to the distance interval to which the distance between the monitored object belongs; and starting the determined monitoring level Corresponding alarms.
  • the method further includes:
  • Whether the calculated distance between the calculated object and the monitored object is greater than a preset value includes:
  • the method further includes:
  • the method further includes: after determining that the calculated distance from the monitored object is greater than a preset value, sending an alert message to the monitored object, where the monitored object is configured according to The alarm message is processed by an alarm.
  • the monitoring scenario includes: an indoor scenario and an outdoor scenario, where the outdoor scenario includes one of the following: an open scene, a road noisy scene, a ride scene, and a multi-person scene.
  • the method further includes: receiving a user-defined monitoring mode and a distance calculation method corresponding to the customized monitoring mode; and comparing the customized monitoring mode and the distance corresponding to the customized monitoring mode A calculation method is added to the monitoring scenario.
  • the embodiment of the present invention further provides an alarm processing method, including: receiving an alarm message sent by a mobile terminal, where the alarm message is calculated by the mobile terminal in determining a distance calculation method corresponding to the detected monitoring scene. The method is performed when the distance between the monitored object and the monitored object is greater than a preset value, where different monitoring scenarios correspond to different distance calculation methods; and the alarm processing is performed according to the alarm message.
  • the embodiment of the invention further provides an alarm processing device, including:
  • the detection module is configured to detect a current monitoring scenario, where different monitoring scenarios correspond to different distance calculation methods; and the calculation module is set to use a distance meter corresponding to the detected monitoring scenario. Calculating a distance between the method and the monitored object; the determining module is configured to determine whether the calculated distance from the monitored object is greater than a preset value; the first alarm module is configured to determine the calculated The alarm processing is performed when the distance between the monitored object and the monitored object is greater than the preset value.
  • the first alarm module is configured to:
  • the monitoring level corresponding to the distance interval to which the distance between the monitored object belongs is determined from the preset distance interval and the monitoring level correspondence table, and the alarm corresponding to the determined monitoring level is started.
  • the device further includes: a setting module, configured to set a distance calculation manner corresponding to the monitoring scenario for different monitoring scenarios.
  • the device further includes: a receiving module, configured to receive a user-defined monitoring mode and a distance calculating method corresponding to the customized monitoring mode; and adding a module, configured to set the customized monitoring mode and The distance calculation method corresponding to the customized monitoring mode is added to the monitoring scenario.
  • a receiving module configured to receive a user-defined monitoring mode and a distance calculating method corresponding to the customized monitoring mode
  • adding a module configured to set the customized monitoring mode and The distance calculation method corresponding to the customized monitoring mode is added to the monitoring scenario.
  • the embodiment of the present invention further provides an alarm processing apparatus, including: a receiving module, configured to receive an alarm message sent by the mobile terminal, where the alarm message is a distance corresponding to the monitored monitoring scene determined by the mobile terminal The calculation is performed when the distance between the object to be monitored and the object to be monitored is greater than a preset value, wherein different monitoring scenarios correspond to different distance calculation methods; and the second alarm module is configured to perform alarm according to the alarm message. deal with.
  • a receiving module configured to receive an alarm message sent by the mobile terminal, where the alarm message is a distance corresponding to the monitored monitoring scene determined by the mobile terminal The calculation is performed when the distance between the object to be monitored and the object to be monitored is greater than a preset value, wherein different monitoring scenarios correspond to different distance calculation methods
  • the second alarm module is configured to perform alarm according to the alarm message. deal with.
  • the current monitoring scenario is detected, wherein different monitoring scenarios correspond to different distance calculation methods; the distance calculation method corresponding to the detected monitoring scenario is used to calculate the distance between the monitored object and the monitored object; Whether the distance from the monitored object is greater than a preset value; when it is determined that the calculated distance from the monitored object is greater than a preset value, the alarm processing is performed, and different distances can be used in different environments.
  • the calculation method makes the alarm timely, makes the alarm more accurate, and improves the user experience.
  • FIG. 1 is a flowchart 1 of an alarm processing method according to an embodiment of the present invention.
  • FIG. 2 is a second flowchart of an alarm processing method according to an embodiment of the present invention.
  • FIG. 3 is a block diagram 1 of an alarm processing apparatus according to an embodiment of the present invention.
  • FIG. 4 is a second block diagram of an alarm processing apparatus according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of an entire system according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of a composition of a mobile terminal monitoring APP device according to an embodiment of the present invention.
  • FIG. 7 is a schematic diagram of the composition of an embedded monitoring apparatus according to an embodiment of the present invention.
  • FIG. 1 is a flowchart 1 of an alarm processing method according to an embodiment of the present invention. As shown in FIG.
  • Step S102 detecting a current monitoring scenario, where different monitoring scenarios correspond to different distance calculation methods
  • Step S104 Calculate a distance from the monitored object by using a distance calculation method corresponding to the detected monitoring scenario
  • Step S106 determining whether the calculated distance from the monitored object is greater than a preset value
  • Step S108 Perform an alarm process when it is determined that the calculated distance from the monitored object is greater than a preset value.
  • the current monitoring scenario is detected, wherein different monitoring scenarios correspond to different distance calculation methods; the distance calculation method corresponding to the detected monitoring scenario is used to calculate the distance between the monitored object and the monitored object; Whether the distance between the monitored objects is greater than a preset value; when it is determined that the calculated distance from the monitored object is greater than a preset value, the alarm processing is performed, thereby realizing different distance calculation methods in different environments.
  • the alarms are timely, which makes the alarms more accurate and improves the user experience.
  • different distances may be set corresponding to different alarm modes, and the distance between the preset distance and the monitoring may be determined after determining that the calculated distance from the monitored object is greater than a preset value.
  • the monitoring level corresponding to the distance interval to which the distance between the monitored object belongs is determined; and the alarm corresponding to the determined monitoring level is started.
  • the calculated distance between the calculated object and the monitored object may be corrected by the preset correction value, and then judged. Whether the corrected distance from the monitored object is greater than the preset value.
  • a distance calculation method corresponding to the monitoring scenario is set for different monitoring scenarios.
  • the foregoing monitoring scenarios include: an indoor scene and an outdoor scene, where the outdoor scene includes one of the following: an open scene, a road noisy scene, a ride scene, a multi-person scene, and other monitoring scenarios.
  • the user may be provided with a self-defined monitoring scenario and a corresponding distance calculation method, which may be implemented by: receiving a user-defined monitoring mode and a distance calculation method corresponding to the customized monitoring mode; Adding the customized monitoring mode and the distance calculation method corresponding to the customized monitoring mode to the monitoring scenario.
  • the above method can be implemented by the first terminal.
  • FIG. 2 is a second flowchart of an alarm processing method according to an embodiment of the present invention. As shown in FIG. 2, the method includes:
  • Step S202 receiving an alarm message sent by the mobile terminal, where the alarm message is a situation in which the mobile terminal determines that the distance between the monitored object and the monitored object is greater than a preset value by using the distance calculation method corresponding to the detected monitoring scene. Transmitted, wherein different monitoring scenarios correspond to different distance calculation methods;
  • Step S204 Perform alarm processing according to the alarm message.
  • the above method can be implemented by the second terminal.
  • FIG. 3 is a block diagram of an alarm processing apparatus according to an embodiment of the present invention. As shown in FIG. 3, the detection module 32, the calculation module 34, the determination module 36, and the first alarm are included. Module 38, each module is further described below.
  • the detecting module 32 is configured to detect a current monitoring scenario, where different monitoring scenarios correspond to different distance calculation methods;
  • the calculation module 34 is configured to calculate and calculate the distance calculation method corresponding to the detected monitoring scene. The distance between the monitored objects;
  • the determining module 36 is configured to determine whether the calculated distance from the monitored object is greater than a preset value
  • the first alarm module 38 is configured to perform alarm processing when it is determined that the calculated distance from the monitored object is greater than a preset value.
  • the first alarm module 38 is configured to:
  • the monitoring corresponding to the distance interval to which the distance between the monitored object belongs is determined from the preset distance interval and the monitoring level correspondence table. Level, the alarm corresponding to the determined monitoring level is activated.
  • the device further includes: a setting module, configured to set a distance calculation manner corresponding to the monitoring scenario for different monitoring scenarios.
  • the device further includes: a receiving module, configured to receive a user-defined monitoring mode and a distance calculating method corresponding to the customized monitoring mode; adding a module, setting the customized monitoring mode and the customization The distance calculation method corresponding to the monitoring mode is added to the monitoring scenario.
  • FIG. 4 is a block diagram 2 of an alarm processing device according to an embodiment of the present invention. As shown in FIG. 4, the device includes:
  • the receiving module 42 is configured to receive an alarm message sent by the mobile terminal, where the alarm message is that the distance calculated by the mobile terminal from the distance calculation method corresponding to the detected monitoring scene is greater than a preset Transmitted in the case of a value, wherein different monitoring scenarios correspond to different distance calculation methods;
  • the second alarm module 44 is configured to perform alarm processing according to the alarm message.
  • the embodiment of the invention provides a method for calculating the distance from the monitored object by using the Bluetooth technology, and determining whether to start the alarm by comparing the distance between the object to be monitored and the security threshold set by the user (ie, a preset value). Or the method of starting several levels of alarms, providing different distance calculation methods for different monitoring modes of different monitoring scenarios, and providing multiple security thresholds for the user to set. In addition, user-defined mode is also supported, and the user can enter the distance method formula and the result correction value autonomously (ie Preset correction value).
  • the monitor can be set on the monitored object side by using the monitoring APP on the mobile terminal and the different distance calculation methods in different monitoring scenarios.
  • the monitor can be implemented by the embedded control device, and the embedded control device includes a Bluetooth device and an embedded chip. (set to receive and process signals) and have an alarm device.
  • FIG. 5 is a schematic structural diagram of an entire system according to an embodiment of the present invention.
  • the system includes two main parts: a monitoring APP and an embedded control device, wherein the function of the embedded device is performed by the receiving module 42 and The second alarm module 44 is implemented together.
  • the user opens the monitoring APP, sets the security threshold, and selects the monitoring scenario and monitoring mode.
  • the monitoring scenes are divided into indoor and outdoor, and the outdoor is divided into empty scenes, road noisy and (bus, subway or train) multi-scenarios (additional scenes can be added according to actual conditions in actual application), and different monitoring scenes have different distance calculations.
  • Method the monitoring mode corresponding to all monitoring scenarios includes automatic and expert mode. If automatic mode is selected, the distance calculation method is calculated according to a preset method.
  • the distance calculation method is corrected according to the method set by the user and the correction value in combination with the result of the current calculation.
  • the monitoring APP first caches the monitoring mode, and at the same time, calls the signal processing module in FIG. 6 to encapsulate the monitoring mode and other necessary information (such as user identification, current time, etc.), and send it to the distance calculation module and Signal transmitting or receiving module.
  • the signal transmitting or receiving module sends a signal (ie, monitoring mode and other necessary information) to the embedded control device, and the embedded control device receives the signal and forwards it to the signal processing module in FIG. 7, and the signal processing module parses the transmitted data packet. , send a response to the monitoring app.
  • the monitoring APP After receiving the response, the monitoring APP processes it by the signal processing module in Figure 6, and then forwards it to the distance calculation module for distance calculation.
  • the calculated distance is compared with the security threshold set by the user, and it is determined according to the comparison result whether it needs to be started.
  • the alarm is generated, and the comparison result is converted into a corresponding signal and sent to the embedded control device through the signal transmitting or receiving module.
  • the embedded control device After receiving the data packet sent by the monitoring APP, the embedded control device parses the data packet according to the agreed communication protocol and executes an alarm.
  • the embodiment of the invention can monitor the security of the mobile phone and the wallet when going out, and can install the monitoring APP through the mobile phone when going out, and install the monitoring device on the wallet to monitor the two in real time, when the distance between the mobile phone and the wallet exceeds a preset value
  • the alarm will activate an alarm to alert you to the location of the phone and wallet to ensure the security of both.
  • I can help find a mobile phone or wallet when I am at home. Sometimes I forget where to put my mobile phone or wallet when I am at home.
  • the wallet With the monitoring device installed, the target range can be narrowed by an alarm when the distance between the two exceeds a certain value, thereby locking the target.
  • the embodiments of the present invention can also extend various application implementation scenarios, for example, can help find keys, pads, and the like.
  • FIG. 6 is a schematic diagram of a composition of a mobile terminal monitoring APP device according to an embodiment of the present invention.
  • the monitoring APP is located on the mobile terminal side, and mainly includes a UI (User Interface), a signal processing module, and a distance.
  • the computing module, the database module, the signal transmitting or receiving module and the alarm module are respectively implemented by the detection module 32, the calculation module 34, the determination module 36 and the first alarm module 38.
  • the monitor UI module is set to interact with the user, accept input from the user, and forward it to the signal processing module for corresponding processing.
  • the signal processing module is configured to receive a signal sent by the monitoring program UI module or the signal sending or receiving module, and after performing corresponding processing, return the processing result to the distance calculating module, and the distance calculating module is configured to calculate according to the monitoring scenario and the monitoring mode selected by the user.
  • the corresponding distance from the monitored object is given to the alarm module, and the alarm module is set to compare the calculated distance between the monitored object and the dangerous initial value set by the user to determine whether to activate the alarm.
  • the database module is configured to store data, and is mainly used for the information of the article itself, the application scenario, the application mode, the expert mode correction value table, the security threshold table, the alarm level table and the control command table, etc., as shown in the following table. Show.
  • the signal sending or receiving module mainly encapsulates the processing result of the signal processing module, and then sends the data packet to the corresponding embedded control device, or parses the packet sent by the embedded control device into corresponding data, and forwards the data to the corresponding data.
  • the signal processing module performs processing.
  • FIG. 7 is a schematic diagram of the composition of an embedded monitoring apparatus according to an embodiment of the present invention.
  • the embedded control apparatus is embedded in a monitor of a wallet end, and mainly includes: a communication module, a signal processing module, and an alarm module.
  • the communication module is configured to send and receive information to and from the monitoring APP;
  • the signal processing module is configured to monitor the APP to start an alarm working scenario, and is responsible for transmitting a startup alarm command sent by the monitoring APP to the alarm module, thereby starting an alarm.
  • the protocol message format is defined.
  • the protocol message includes two types of request and response.
  • the two message formats are consistent, and are composed of a message type flag, a header field, and a message body. There may be multiple header fields, and the message body may not be.
  • the header field and the message body are separated by blank lines. Even if the message body is not included in the message, the blank line cannot be omitted.
  • the message type flag, each message header and the blank line, the message body must be changed by carriage return to identify the end. .
  • Protocol message message type flag
  • the message type flag of the request message is Request.
  • Request consists of a method name and a protocol version separated by spaces. Request ends with a carriage return line feed character.
  • the format is as follows:
  • the definitiontion is used by the embedded control device to report the scenario to the distance of the monitoring APP; the Executive is used to monitor the APP to issue a user operation command scenario to the embedded control device.
  • the message type flag of the response message is (Response), and the Response consists of the protocol version, the status code, and the text description related to the state, and each part is separated by a space. CRLF characters are not allowed in the status line except for the carriage return line feed (CRLF) character at the end.
  • the format of Response is as follows:
  • Method#Resp The response message corresponding to the request, in the format of the method name in the corresponding request message is connected to "Resp".
  • P-Version The current version number of the protocol.
  • the current version number is P/1.0.
  • This parameter is used to indicate the execution result of the request message. It is a 3-digit decimal integer. For example, the 200 flag is successfully executed, and 5xx indicates the internal error of the service.
  • Status-Des This parameter is used to briefly describe the Status-Code and can be empty.
  • the header field of the protocol message consists of the field name and the field value, separated by ":”. Its format is as follows:
  • the interaction process and message format of the message in the embodiment of the present invention mainly includes two processes: the distance reporting process and the command delivery process, which are respectively described below.
  • the distance reporting process refers to the process in which the embedded control device in the embodiment of the present invention sends a signal to the monitoring APP, thereby facilitating the APP to calculate the distance.
  • the parameters of this method are shown in Table 9 below.
  • the embedded control device initiates a distance report request message to the monitoring APP:
  • the monitoring APP responds to the embedded control device with a response message:
  • the command issuing process refers to a process in which the monitoring APP in the present invention sends a signal to the embedded control device to start an alarm after calculating that the distance is greater than the safety threshold.
  • the parameters of this method are as follows:
  • the monitoring APP sends a request message to the embedded control device:
  • the embedded control device replies to the monitoring APP with a response message:
  • Step 001 The user opens the monitoring APP and enters the application home page.
  • Step 002 The monitoring program UI module displays the item information currently available to the user in a list form by querying the database.
  • Step 003 The user selects the item to be monitored and enters the monitoring page.
  • Step 004 The monitoring program UI module queries the database, and displays the currently selected monitoring scenarios and security thresholds in a list form, wherein the security threshold includes three levels (temporarily divided into three levels, which can be adjusted according to actual conditions when applied), different The safety threshold corresponds to a different alarm level.
  • Step 005 The user selects an appropriate monitoring scenario and a security threshold.
  • Step 006 The monitoring program UI module queries the database and displays the currently selectable monitoring mode to the user in a list form.
  • Step 007 The user selects an appropriate monitoring mode. If the automatic mode is selected to jump to step 8, if the expert mode is selected, the process jumps to step 15.
  • Step 008 The monitoring program UI forwards the operation instruction from the user (ie, the monitoring mode selected by the user) to the signal processing module.
  • Step 009 The signal processing module queries the database to find the signal data corresponding to the operation instruction. (the signal indicating the monitoring mode selected by the user) and the distance calculation formula are respectively transferred to the signal transmitting or receiving module and the distance calculating module.
  • Step 010 The signal sending or receiving module encapsulates the signal data and sends the signal data to the corresponding embedded control device.
  • Step 011 The embedded control device returns a response message to the signal transmitting or receiving module of the monitoring APP.
  • Step 012 The signal sending or receiving module parses the corresponding result from the response message data packet and forwards the result to the signal processing module.
  • the result includes the transmission time and/or the reception time and the like.
  • Step 013 The signal processing module forwards the result to the distance calculation module according to the corresponding result code.
  • Step 014 The distance calculation module calculates the distance according to the data in step 009 and the data in step 013, and forwards it to the application UI, and queries the database according to the calculation result, and determines whether to start the alarm and start according to the query result (ie, the alarm threshold). Alarm level. This operation ends here.
  • Step 015 The monitor UI displays the interface of the expert mode to the user.
  • Step 016 The user may select an input distance calculation formula and a distance correction value (at least one of them is input), and jump to step 17.
  • Step 017 The monitoring program UI forwards the operation instruction from the user to the signal processing module.
  • Step 018 The signal processing module stores the distance calculation formula and the distance correction value in a database, and respectively forwards them to the signal sending or receiving module and the distance calculation module, and jumps to step 10.
  • Embodiments of the present invention also provide a computer readable storage medium storing computer executable instructions for performing any of the methods described above.
  • each module/unit in the foregoing embodiment may be implemented in the form of hardware, for example, by implementing an integrated circuit to implement its corresponding function, or may be implemented in the form of a software function module, for example, by executing a memory and a memory in a processor. Programs/instructions to implement their respective functions.
  • the invention is not limited to any specific form of combination of hardware and software.
  • the foregoing technical solution can use different distance calculation methods in different environments to make the alarms timely, so that the alarms are more accurate and the user experience is improved.

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Abstract

一种告警处理方法及装置,其中,该方法包括:检测当前的监控场景,其中,不同的监控场景对应不同的距离计算方法(S102);采用检测到的监控场景对应的距离计算方法计算与被监控对象之间的距离(S104);判断计算出的与该被监控对象之间的距离是否大于预设值(S106);当判断出计算出的与被监控对象之间的距离大于预设值时,进行告警处理(S108)。

Description

告警处理方法及装置 技术领域
本文涉及但不限于通信领域,尤指一种告警处理方法及装置。
背景技术
丢钱包或丢手机是生活中一件及其常见的事情,相信周围很多人都有过这样的经历,一旦丢失后,不仅要遭受经济损失,而且还会影响到生活,给我们的生活带来诸多不便。本发明实施例要解决的问题就是在手机或钱包丢失的第一时间发现这个问题,从而挽回我们的损失或者将我们的损失降到最低。
目前的蓝牙防丢技术主要有两种:一种是通过蓝牙无法接收到信号时才会启动报警,在某些情况下(比如被偷)这样就无法及时有效地告警;另一种是通过计算距离来报警,但在不同环境下使用的是相同的距离计算方法,这样难免会造成计算结果的不准确;而且目前的防丢技术只能提供***自带模式或者距离计算方法,不支持用户自定义模式或用户输入,很大程度上限制了报警***的使用场景。
针对相关技术中的防丢技术在不同环境下使用相同的距离计算方法使得告警不及时的问题,还未提出有效的解决方案。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
本发明实施例提供了一种告警处理方法及装置,能够在不同环境下使用不同的距离计算方法使得告警及时。
本发明实施例提供了一种告警处理方法,包括:检测当前的监控场景,其中,不同的监控场景对应不同的距离计算方法;采用检测到的监控场景对应的距离计算方法计算与被监控对象之间的距离;判断计算出的与所述被监控对象之间的距离是否大于预设值;当判断出计算出的与被监控对象之间的距离大于预设值时,进行告警处理。
可选地,所述进行告警处理包括:从预设的距离区间与监控等级对应表中确定所述与被监控对象之间的距离所属的距离区间所对应的监控等级;启动确定出的监控等级对应的告警。
可选地,所述方法还包括:
在采用检测到的监控场景对应的距离计算方法计算与被监控对象之间的距离之后,判断计算出的与所述被监控对象之间的距离是否大于预设值之前,通过预设修正值对计算出的与被监控对象之间的距离进行修正;
所述判断计算出的与所述被监控对象之间的距离是否大于预设值包括:
判断修正后的与被监控对象之间的距离是否大于所述预设值。
可选地,所述方法还包括:
在检测当前的监控场景之前,针对不同的监控场景设置与监控场景对应的距离计算方式。
可选地,所述方法还包括:在判断出计算出的与所述被监控对象之间的距离大于预设值之后,向所述被监控对象发送告警消息,其中,所述被监控对象根据所述告警消息进行告警处理。
可选地,所述监控场景包括:室内场景和室外场景,其中,所述室外场景包括以下之一:空旷场景、马路嘈杂场景、乘车场景、人多场景。
可选地,所述方法还包括:接收用户自定义的监控模式以及所述自定义的监控模式对应的距离计算方法;将所述自定义的监控模式以及所述自定义的监控模式对应的距离计算方法添加到所述监控场景中。
本发明实施例还提供了一种告警处理方法,包括:接收移动终端发送的告警消息,其中,所述告警消息是所述移动终端在判断采用检测到的监控场景对应的距离计算方法计算出的与被监控对象之间的距离大于预设值的情况下发送的,其中,不同的监控场景对应不同的距离计算方法;根据所述告警消息进行告警处理。
本发明实施例还提供了一种告警处理装置,包括:
检测模块,设置为检测当前的监控场景,其中,不同的监控场景对应不同的距离计算方法;计算模块,设置为采用检测到的监控场景对应的距离计 算方法计算与被监控对象之间的距离;判断模块,设置为判断计算出的与所述被监控对象之间的距离是否大于预设值;第一告警模块,设置为当判断出计算出的与被监控对象之间的距离大于预设值时,进行告警处理。
可选地,所述第一告警模块是设置为:
从预设的距离区间与监控等级对应表中确定所述与被监控对象之间的距离所属的距离区间所对应的监控等级,启动确定出的监控等级对应的告警。
可选地,所述装置还包括:设置模块,设置为针对不同的监控场景设置与监控场景对应的距离计算方式。
可选地,所述装置还包括:接收模块,设置为接收用户自定义的监控模式以及所述自定义的监控模式对应的距离计算方法;添加模块,设置为将所述自定义的监控模式以及所述自定义的监控模式对应的距离计算方法添加到所述监控场景中。
本发明实施例还提供了一种告警处理装置,包括:接收模块,设置为接收移动终端发送的告警消息,其中,所述告警消息是所述移动终端在判断采用检测到的监控场景对应的距离计算方法计算出的与被监控对象之间的距离大于预设值的情况下发送的,其中,不同的监控场景对应不同的距离计算方法;第二告警模块,设置为根据所述告警消息进行告警处理。
通过本发明实施例,采用检测当前的监控场景,其中,不同的监控场景对应不同的距离计算方法;采用检测到的监控场景对应的距离计算方法计算与被监控对象之间的距离;判断计算出的与所述被监控对象之间的距离是否大于预设值;当判断出计算出的与被监控对象之间的距离大于预设值时,进行告警处理,能够在不同环境下使用不同的距离计算方法使得告警及时,使得告警更准确,提高了用户体验。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1是本发明实施例的告警处理方法的流程图一;
图2是本发明实施例的告警处理方法的流程图二;
图3是本发明实施例的告警处理装置的框图一;
图4是本发明实施例的告警处理装置的框图二;
图5是本发明实施例的整个***结构示意图;
图6是本发明实施例的手机端监控APP装置的组成示意图;
图7是本发明实施例的嵌入式监控装置的组成示意图。
本发明的实施方式
下文中将参考附图并结合实施例来详细说明本发明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。
本发明实施例提供了一种告警处理方法,图1是根据本发明实施例的告警处理方法的流程图一,如图1所示,包括:
步骤S102,检测当前的监控场景,其中,不同的监控场景对应不同的距离计算方法;
步骤S104,采用检测到的监控场景对应的距离计算方法计算与被监控对象之间的距离;
步骤S106,判断计算出的与该被监控对象之间的距离是否大于预设值;
步骤S108,当判断出计算出的与被监控对象之间的距离大于预设值时,进行告警处理。
通过上述步骤,检测当前的监控场景,其中,不同的监控场景对应不同的距离计算方法;采用检测到的监控场景对应的距离计算方法计算与被监控对象之间的距离;判断计算出的与该被监控对象之间的距离是否大于预设值;当判断出计算出的与被监控对象之间的距离大于预设值时,进行告警处理,实现了在不同环境下使用不同的距离计算方法使得告警及时,使得告警更准确,提高了用户体验。
为了对被监控对象实现大致的定位,可以设置不同的距离对应不同的告警方式,可以在确定计算出的与该被监控对象之间的距离大于预设值之后,从预设的距离区间与监控等级对应表中确定与被监控对象之间的距离所属的距离区间所对应的监控等级;启动确定出的监控等级对应的告警。
其中,可以设置距离越远,采用越大的告警音量来进行告警。
为了提高计算出的距离的准确性,在根据该监控场景计算与被监控对象之间的距离之后,还可以通过预设修正值对计算出的与被监控对象之间的距离进行修正,然后判断修正后的与被监控对象之间的距离是否大于预设值。
可选地,在检测当前的监控场景之前,针对不同的监控场景设置与监控场景对应的距离计算方法。
上述的监控场景包括:室内场景和室外场景,其中,该室外场景包括以下之一:空旷场景、马路嘈杂场景、乘车场景、人多场景,也可以包括其他的监控场景。
为了适应更多的监控场景,可以提供给用户实现自定义监控场景以及对应的距离计算方法,可以通过以下方式实现:接收用户自定义的监控模式以及该自定义的监控模式对应的距离计算方法;将该自定义的监控模式以及该自定义的监控模式对应的距离计算方法添加到该监控场景中。
上述方法可以通过第一终端实现。
本发明实施例还提供了一种告警处理方法,图2是根据本发明实施例的告警处理方法的流程图二,如图2所示,包括:
步骤S202,接收移动终端发送的告警消息,其中,该告警消息是该移动终端在判断采用检测到的监控场景对应的距离计算方法计算出的与被监控对象之间的距离大于预设值的情况下发送的,其中,不同的监控场景对应不同的距离计算方法;
步骤S204,根据该告警消息进行告警处理。
上述方法可以通过第二终端实现。
本发明实施例提供了一种告警处理装置,图3是根据本发明实施例的告警处理装置的框图一,如图3所示,包括检测模块32、计算模块34、判断模块36和第一告警模块38,下面对每一个模块进行进一步说明。
检测模块32,设置为检测当前的监控场景,其中,不同的监控场景对应不同的距离计算方法;
计算模块34,设置为采用检测到的监控场景对应的距离计算方法计算与 被监控对象之间的距离;
判断模块36,设置为判断计算出的与该被监控对象之间的距离是否大于预设值;
第一告警模块38,设置为当判断出计算出的与被监控对象之间的距离大于预设值时,进行告警处理。
可选地,第一告警模块38是设置为:
当判断出计算出的与被监控对象之间的距离大于预设值时,从预设的距离区间与监控等级对应表中确定该与被监控对象之间的距离所属的距离区间所对应的监控等级,启动该确定出的监控等级对应的告警。
可选地,该装置还包括:设置模块,设置为针对不同的监控场景设置与监控场景对应的距离计算方式。
可选地,该装置还包括:接收模块,设置为接收用户自定义的监控模式以及该自定义的监控模式对应的距离计算方法;添加模块,设置为将该自定义的监控模式以及该自定义的监控模式对应的距离计算方法添加到该监控场景中。
本发明实施例还提供了一种告警处理装置,图4是根据本发明实施例的告警处理装置的框图二,如图4所示,该装置包括:
接收模块42,设置为接收移动终端发送的告警消息,其中,该告警消息是该移动终端在判断采用检测到的监控场景对应的距离计算方法计算出的与被监控对象之间的距离大于预设值的情况下发送的,其中,不同的监控场景对应不同的距离计算方法;
第二告警模块44,设置为根据该告警消息进行告警处理。
下面结合具体实施例对本发明实施例进行进一步说明。
本发明实施例提出了一种利用蓝牙技术来计算与被监控对象之间的距离,通过对比与被监控对象之间的距离和用户设置的安全阈值(即预设值)来确定是否启动报警(或启动几级告警)的方法,针对不同监控场景不同监控模式提供不同的距离计算方法,并且提供多重安全阈值供用户设置。此外,还支持用户自定义模式,用户可以自主输入距离方法公式及结果修正值(即 预设修正值)。可以通过在移动终端上的监控APP,不同监控场景下不同距离计算方法,在被监控对象侧设置监控器,该监控器可以通过嵌入式控制装置实现,嵌入式控制装置包括蓝牙装置、嵌入式芯片(设置为接收和处理信号)以及有报警装置。
图5是根据本发明实施例的整个***结构示意图,如图5所示,该***共包括两大部分:监控APP以及嵌入式控制装置,其中,嵌入式装置的功能由上述的接收模块42和第二告警模块44一起实现。用户打开监控APP,设置安全阈值,选择监控场景及监控模式。监控场景分室内和室外,室外又分为空旷场景、马路嘈杂和(公交车、地铁或火车)人多场景(实际应用时还可以根据实际情况增加额外场景),不同监控场景具有不同的距离计算方法;所有监控场景对应的监控模式均包含自动和专家模式,如果选择自动模式,则距离计算方法按照预先设置的方法进行计算。如果选择专家模式,则距离计算方法按照用户设置的方法及修正值结合当前计算的结果进行修正。选择完成后,监控APP首先将该监控模式缓存起来,同时,调用图6中的信号处理模块将该监控模式以及其他必要信息(如用户标识、当前时间等)封装起来,发送到距离计算模块及信号发送或接收模块。信号发送或接收模块发送信号(即监控模式和其他必要信息)到嵌入式控制装置,嵌入式控制装置收到信号后转交给图7中的信号处理模块,信号处理模块解析发送过来的数据包后,发送响应到监控APP。监控APP收到响应后,由图6中的信号处理模块对其进行处理,然后转交给距离计算模块进行距离计算,计算得出的距离跟用户设置的安全阈值对比,根据对比结果确定是否需要启动报警,并将对比结果转换成对应的信号通过信号发送或接收模块发送到嵌入式控制装置。嵌入式控制装置收到监控APP发送过来的数据包后,按照约定的通信协议对数据包进行解析,执行报警。
本发明实施例可以在外出时监控手机和钱包的安全,出门在外时可以通过手机安装监控APP,在钱包上安装监控装置来对二者进行实时监控,当手机和钱包的距离超过预设值时,报警器就会启动报警,提醒注意手机和钱包的所在位置,从而确保二者的安全性。在家时可以帮助寻找手机或钱包,在家时有时候会忘记把手机或钱包放在哪里,如果手机安装了监控APP,钱包 安装了监控装置,就可以通过当二者之间的距离超过一定值时的报警来缩小目标范围,从而锁定目标。本发明实施例还可以拓展多种应用实施场景,例如:可以帮助寻找钥匙、pad等。
图6是根据本发明实施例的手机端监控APP装置的组成示意图,如图6所示,监控APP位于手机终端侧,它主要包括监控程序用户界面(UI,User Interface)、信号处理模块、距离计算模块、数据库模块、信号发送或接收模块和报警模块六个部分,其功能分别由上述的检测模块32、计算模块34、判断模块36和第一告警模块38的部分或全部实现。监控程序UI模块设置为和用户的交互,接受来自用户的输入,并转交给信号处理模块进行对应处理。信号处理模块设置为接收监控程序UI模块或信号发送或接收模块发送过来的信号,做对应处理后,返回处理结果到距离计算模块,距离计算模块设置为根据用户选择的监控场景和监控模式计算出对应的与被监控对象之间的距离交给报警模块,报警模块设置为对比计算得到的与被监控对象之间的距离和用户设置的危险初始值决定是否启动报警。数据库模块设置为数据的存储,本发明实施例中主要用于物品本身的信息、应用场景,应用模式,专家模式修正值表,安全阈值表,报警级别表及控制命令表等,分别如下表所示。
表1 物品信息表
Figure PCTCN2016084163-appb-000001
表2 监控场景表
Figure PCTCN2016084163-appb-000002
表3 监控模式表
Figure PCTCN2016084163-appb-000003
表4 专家模式修正值表
Figure PCTCN2016084163-appb-000004
表5 安全阈值表
Figure PCTCN2016084163-appb-000005
表6 报警级别表
Figure PCTCN2016084163-appb-000006
Figure PCTCN2016084163-appb-000007
表7 控制命令表
Figure PCTCN2016084163-appb-000008
信号发送或接收模块主要将信号处理模块的处理结果进行封装,之后将数据包发送到对应的嵌入式控制装置中去,或者将嵌入式控制装置发送过来的包解析成对应的数据,并转交给信号处理模块进行处理。
图7是根据本发明实施例的嵌入式监控装置的组成示意图,如图7所示,嵌入式控制装置嵌入在钱包端的监控器中,它主要包括:通信模块、信号处理模块和报警模块。通信模块设置为和监控APP之间进行信息的收发;信号处理模块设置为监控APP启动报警工作场景,它负责将监控APP发送过来的启动报警指令发送到报警模块,从而启动报警。
协议消息格式定义,协议消息包括请求和响应两种,两种消息格式一致,都是由消息类型标志,头字段,和消息体组成。其中,头字段可以有多个,消息体可以没有。头字段和消息体之间以空行分隔,即使消息中未包含消息体,空行也不能省略;消息类型标志、每一个消息头部以及空行,消息体都必须由回车换行来标识终结。
消息的格式如下:
协议消息=消息类型标志
*消息头部(一个或多个头字段)
CRLF(空行)
[消息正文]
消息类型标志=请求或响应
请求消息的消息类型标志为请求(Request)。Request由方法名和协议版本组成,两者之间用空格分隔。Request以回车换行字符标识结束。格式如下:
Request=Method[]P-Version[]CRLF
1.Method:包含Definition和Executive,如下表8所示。
表8 协议方法表
Figure PCTCN2016084163-appb-000009
Definetion用于嵌入式控制装置向监控APP的距离上报场景;Executive用于监控APP向嵌入式控制装置下发用户操作命令场景。
2.P-Version:协议的当前版本号。当前版本号为P/1.0。
响应消息的消息类型标志为(Response),Response由协议版本、状态码、与状态相关的文本描述组成,每个部分之间用一个空格进行分隔。除尾部的回车换行(CRLF)字符之外,状态行中不允许出现CRLF字符。Response的格式如下:
Status-Line=Method#Resp[]P-Version[]Status-Code[][Status-Des][]CRLF
Method#Resp:对应请求的响应消息,格式为对应请求消息中方法名连接上“Resp”。
P-Version:协议的当前版本号。当前版本号为P/1.0。
Status-Code(状态码):该参数用于指示请求消息的执行结果,为一个3位数的十进制整数例如:200标志执行成功,5xx表示服务内部错误等。
Status-Des:该参数用于对Status-Code进行简单描述,可为空。
协议消息的头字段由字段名和字段值组成,两者用“:“分隔。其格式如下:
Head-Name:Head-Value
本发明实施例中的消息的交互过程及消息格式。整个监控报警***主要包含两个过程:距离上报过程和命令下发过程,分别进行说明如下。
距离上报Definetion过程:
距离上报过程是指本发明实施例中的嵌入式控制装置发送信号到监控APP,从而方便APP计算距离的过程。该方法的参数如下表9所示。
表9 Definetion方法参数
Figure PCTCN2016084163-appb-000010
表10 DefinetionResp方法参数
Figure PCTCN2016084163-appb-000011
1.嵌入式控制装置向监控APP发起距离上报请求报文:
Definetion P/1.0<CRLF>
IDENTIFICATION:物品识别号<CRLF>
TYPE:1<CRLF>
DATA:xxxxxxxxx<CRLF>
MSEQ:1234<CRLF>
<CRLF>
2.监控APP向嵌入式控制装置回复响应报文:
DefinetionResp P/1.0 200 OK<CRLF>
MSEQ:1234<CRLF>
<CRLF>
3.Executive:命令下发过程
命令下发过程是指本发明中的监控APP通过计算得出距离大于安全阈值后,就会发送信号给嵌入式控制装置,来启动报警的过程。该方法的参数如下:
表11 Executive方法参数
Figure PCTCN2016084163-appb-000012
表12 ExecutiveResp方法参数
Figure PCTCN2016084163-appb-000013
过程描述如下:
1.监控APP向嵌入式控制装置发送请求报文:
Executive P/1.0<CRLF>
IDENTIFICATION:物品识别号<CRLF>
DATA:xxxxxxxxx<CRLF>
MSEQ:1234<CRLF>
<CRLF>
2.嵌入式控制装置向监控APP回复响应报文:
ExecutiveResp P/1.0 200 OK<CRLF>
MSEQ:1234<CRLF>
<CRLF>
本发明实施例中使用监控***全流程包括:
步骤001:用户打开监控APP,进入应用首页。
步骤002:监控程序UI模块通过查询数据库,以列表形式展示给用户当前可被监控的物品信息。
步骤003:用户选择欲监控的物品,进入监控页面。
步骤004:监控程序UI模块查询数据库,以列表形式展示给用户当前可选择的监控场景和安全阈值,其中安全阈值包括三级(暂时分三级,应用时可以根据实际情况进行调整),不同的安全阈值对应不同的报警级别。
步骤005:用户选择合适的监控场景及安全阈值。
步骤006:监控程序UI模块查询数据库,以列表形式展示给用户当前可选择的监控模式。
步骤007:用户选择合适的监控模式,如果选择自动模式跳转到步骤8,如果选择专家模式跳转到步骤15。
步骤008:监控程序UI将来自用户的操作指令(即用户选择的监控模式)转交给信号处理模块。
步骤009:信号处理模块查询数据库,找到该操作指令对应的信号数据 (表示用户选择的监控模式的信号)及距离计算公式,分别转交给信号发送或接收模块和距离计算模块。
步骤010:信号发送或接收模块将信号数据封装,并发送给对应的嵌入式控制装置。
步骤011:嵌入式控制装置返回响应信息给监控APP的信号发送或接收模块。
步骤012:信号发送或接收模块从响应消息数据包中解析出对应的结果,转交给信号处理模块。
本步骤中,结果包括发送时间和/或接收时间等等。
步骤013:信号处理模块根据对应的结果码,转交给距离计算模块。
步骤014:距离计算模块根据步骤009中的数据及步骤013中的数据计算出距离,转交给应用程序UI,并根据计算结果查询数据库,根据查询结果(即告警阈值)决定是否启动报警及启动的报警级别。本次操作过程到此结束。
步骤015:监控程序UI向用户展示专家模式的界面。
步骤016:用户可选择输入距离计算公式及距离修正值(二者至少输入一个),跳转到步骤17。
步骤017:监控程序UI将来自用户的操作指令转交给信号处理模块。
步骤018:信号处理模块将距离计算公式及距离修正值存入数据库,并分别转交给信号发送或接收模块和距离计算模块,跳转到步骤10。
本发明实施例还提出了一种计算机可读存储介质,存储有计算机可执行指令,计算机可执行指令用于执行上述描述的任意一个方法。
本领域普通技术人员可以理解上述方法中的全部或部分步骤可通过程序来指令相关硬件(例如处理器)完成,所述程序可以存储于计算机可读存储介质中,如只读存储器、磁盘或光盘等。可选地,上述实施例的全部或部分步骤也可以使用一个或多个集成电路来实现。相应地,上述实施例中的各模块/单元可以采用硬件的形式实现,例如通过集成电路来实现其相应功能,也可以采用软件功能模块的形式实现,例如通过处理器执行存储与存储器中的 程序/指令来实现其相应功能。本发明不限于任何特定形式的硬件和软件的结合。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
工业实用性
上述技术方案能够在不同环境下使用不同的距离计算方法使得告警及时,使得告警更准确,提高了用户体验。

Claims (10)

  1. 一种告警处理方法,包括:
    检测当前的监控场景,其中,不同的监控场景对应不同的距离计算方法;
    采用检测到的监控场景对应的距离计算方法计算与被监控对象之间的距离;
    判断计算出的与所述被监控对象之间的距离是否大于预设值;
    当判断出计算出的与被监控对象之间的距离大于预设值时,进行告警处理。
  2. 根据权利要求1所述的方法,其中,所述进行告警处理包括:
    从预设的距离区间与监控等级对应表中确定所述与被监控对象之间的距离所属的距离区间所对应的监控等级;启动确定出的监控等级对应的告警。
  3. 根据权利要求1所述的方法,所述方法还包括:
    在采用检测到的监控场景对应的距离计算方法计算与被监控对象之间的距离之后,所述判断计算出的与所述被监控对象之间的距离是否大于预设值之前,通过预设修正值对计算出的与被监控对象之间的距离进行修正;
    所述判断计算出的与所述被监控对象之间的距离是否大于预设值包括:
    判断修正后的与被监控对象之间的距离是否大于所述预设值。
  4. 根据权利要求1所述的方法,所述方法还包括:
    在检测当前的监控场景之前,针对不同的监控场景设置与监控场景对应的距离计算方式。
  5. 根据权利要求1所述的方法,所述方法还包括:
    在判断出计算出的与所述被监控对象之间的距离大于预设值之后,向所述被监控对象发送告警消息,其中,所述被监控对象根据所述告警消息进行告警处理。
  6. 根据权利要求1至5中任一项所述的方法,其中,所述监控场景包括:室内场景和室外场景,其中,所述室外场景包括以下之一:空旷场景、马路 嘈杂场景、乘车场景、人多场景。
  7. 根据权利要求1至5中任一项所述的方法,所述方法还包括:
    接收用户自定义的监控模式以及所述自定义的监控模式对应的距离计算方法;
    将所述自定义的监控模式以及所述自定义的监控模式对应的距离计算方法添加到所述监控场景中。
  8. 一种告警处理方法,包括:
    接收移动终端发送的告警消息,其中,所述告警消息是所述移动终端在判断采用检测到的监控场景对应的距离计算方法计算出的与被监控对象之间的距离大于预设值的情况下发送的,其中,不同的监控场景对应不同的距离计算方法;
    根据所述告警消息进行告警处理。
  9. 一种告警处理装置,包括:
    检测模块,设置为检测当前的监控场景,其中,不同的监控场景对应不同的距离计算方法;
    计算模块,设置为采用检测到的监控场景对应的距离计算方法计算与被监控对象之间的距离;
    判断模块,设置为判断计算出的与所述被监控对象之间的距离是否大于预设值;
    第一告警模块,设置为当判断出计算出的与被监控对象之间的距离大于预设值时,进行告警处理。
  10. 一种告警处理装置,包括:
    接收模块,设置为接收移动终端发送的告警消息,其中,所述告警消息是所述移动终端在判断采用检测到的监控场景对应的距离计算方法计算出的与被监控对象之间的距离大于预设值的情况下发送的,其中,不同的监控场景对应不同的距离计算方法;
    第二告警模块,设置为根据所述告警消息进行告警处理。
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