WO2011032377A1 - 一种实现监测管理的移动终端及其监测实现方法 - Google Patents

一种实现监测管理的移动终端及其监测实现方法 Download PDF

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Publication number
WO2011032377A1
WO2011032377A1 PCT/CN2010/071548 CN2010071548W WO2011032377A1 WO 2011032377 A1 WO2011032377 A1 WO 2011032377A1 CN 2010071548 W CN2010071548 W CN 2010071548W WO 2011032377 A1 WO2011032377 A1 WO 2011032377A1
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WIPO (PCT)
Prior art keywords
level
user
component
platform
monitoring
Prior art date
Application number
PCT/CN2010/071548
Other languages
English (en)
French (fr)
Inventor
杨琛
黄翠荣
Original Assignee
中兴通讯股份有限公司
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
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Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to US13/496,612 priority Critical patent/US8437733B2/en
Priority to EP10816581.2A priority patent/EP2469964B1/en
Publication of WO2011032377A1 publication Critical patent/WO2011032377A1/zh

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Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/001Alarm cancelling procedures or alarm forwarding decisions, e.g. based on absence of alarm confirmation
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/005Alarm destination chosen according to a hierarchy of available destinations, e.g. if hospital does not answer send to police station
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/006Alarm destination chosen according to type of event, e.g. in case of fire phone the fire service, in case of medical emergency phone the ambulance
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/01Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium
    • G08B25/016Personal emergency signalling and security systems
    • 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
    • H04M1/72418User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality for supporting emergency services
    • H04M1/72421User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality for supporting emergency services with automatic activation of emergency service functions, e.g. upon sensing an alarm
    • 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
    • H04M1/72418User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality for supporting emergency services
    • H04M1/72424User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality for supporting emergency services with manual activation of emergency-service functions
    • 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
    • H04M1/72475User interfaces specially adapted for cordless or mobile telephones specially adapted for disabled users
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/90Services for handling of emergency or hazardous situations, e.g. earthquake and tsunami warning systems [ETWS]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/50Connection management for emergency connections
    • 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
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/04Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
    • G08B21/0438Sensor means for detecting
    • G08B21/0461Sensor means for detecting integrated or attached to an item closely associated with the person but not worn by the person, e.g. chair, walking stick, bed sensor
    • 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
    • H04M1/7243User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality with interactive means for internal management of messages
    • H04M1/72436User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality with interactive means for internal management of messages for text messaging, e.g. SMS or e-mail
    • 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
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72457User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to geographic location
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/12Details of telephonic subscriber devices including a sensor for measuring a physical value, e.g. temperature or motion

Definitions

  • the present invention relates to the field of electronics and communications, and in particular, to a mobile terminal for implementing monitoring management and a monitoring implementation method thereof. Background technique
  • the mobile terminal is a mobile phone as an example.
  • the design of the mobile phone is different for different applicable groups and has different styles.
  • the design of mobile phones for the elderly is also endless.
  • the phone menu function, and increasing the size of the button silkscreen and ring tone the phone is more suitable for the elderly.
  • it is not difficult to find that the mobile phones currently suitable for the elderly are designed with the emphasis on ease of operation, practicality of use, and friendliness of use, as well as alarm handling in safety monitoring and emergency situations. There are not many considerations in other aspects.
  • the main purpose of the present invention is to provide a mobile terminal that implements monitoring and management and a monitoring implementation method thereof, which can perform real-time monitoring on the user's help, and timely retrieve corresponding rescue measures according to different needs faced by the user. Won the rescue time.
  • a mobile terminal that implements monitoring management includes: a user hazard level monitoring platform, configured to match the current situation of the monitored user, enable a corresponding hazard level, and retrieve corresponding rescue measures.
  • the user risk level monitoring platform includes: an enabling unit and a platform monitoring operation unit; wherein
  • an enabling unit configured to trigger the activation of the platform according to the received activation level of the user risk level monitoring platform; and adapt the monitored current situation of the user to enable a corresponding risk level;
  • the platform monitoring operation unit is configured to retrieve corresponding rescue measures according to the enabled hazard level.
  • the user risk level monitoring platform further includes: a fluctuation detecting component, configured to detect a user motion state, and when the user motion state exceeds a sudden fluctuation of the set fluctuation domain value, sending the enabling message to the enabling Unit
  • the enabling unit is further configured to enable the user danger level monitoring platform; and when the activation message is sent by the fluctuation detecting component, the first level of the danger level is enabled;
  • the platform monitoring operation unit further includes: an alarm component for issuing an alarm signal by buzzer or user-set help audio in the case of the first level of the dangerous level.
  • the platform monitoring operation unit further includes: a first timer component, configured to be turned on while the alarm component is enabled, allowing the user to select an active release alarm within a set time, and alerting when the set time arrives Still not released, notify the enable unit and be enabled
  • the unit activates the second level of the hazard level.
  • the user risk level monitoring platform further includes: a button parsing component, configured to parse a user's button operation, and when the parsing out the user's button operation matches the set button or button combination, sending the enable message to the Enable unit
  • the enabling unit is further configured to enable the user hazard level monitoring platform; and monitor the second level of the hazard level when the enable message is sent by the button parsing component.
  • the platform monitoring operation unit further includes: an automatic dialing component, configured to call for help by setting a help number set by the user, automatically establishing a relationship with the called party Call interaction.
  • the platform monitoring operation unit further includes: a first short message function component, configured to open the automatic dialing component at the same time as the automatic dialing component is enabled, or to call the helper number in a polling manner for help and cannot establish In the case of a call, the set help phrase is sent, and a short message interaction with the called person is established.
  • a first short message function component configured to open the automatic dialing component at the same time as the automatic dialing component is enabled, or to call the helper number in a polling manner for help and cannot establish In the case of a call, the set help phrase is sent, and a short message interaction with the called person is established.
  • the platform monitoring operation unit further includes: a polling number analyzer and a second timer component; wherein
  • a polling number analyzer configured to count the number of polling times, and notify the second timer component to be turned on if the number of polling times does not reach the set critical number of times;
  • the second timer component is configured to start when the number of polling times does not reach the set critical number.
  • the automatic dialing component is notified to start a new round of automatic dialing.
  • the platform monitoring operation unit further includes: a second short message function component, configured to: after the call interaction is established, the assisted party does not obtain the user response, and the The short message including the verification password is parsed, and when the parsed password matches the set dangerous elevation password, the activation unit is notified to enable the third level of the danger level; or the platform monitors the operation unit, further passes the number of polling
  • the analyzer counts the number of polls. When the number of polls has reached the set critical number, the notification is notified. The unit activates the third level of the hazard level.
  • the platform monitoring operation unit further includes: a space positioning component, configured to start when the alarm component is turned on again, according to the set help number Send the obtained location of the user to the called party corresponding to the help number.
  • a monitoring implementation method for implementing monitoring management comprising: matching the current situation of the monitored user, enabling a corresponding risk level, and obtaining corresponding rescue measures.
  • the method further comprises: triggering activation of the user hazard level monitoring platform according to the received user hazard level monitoring platform enable message.
  • the rescue measures specifically include:
  • the alarm component sends an alarm signal via a beep or user-set help audio.
  • the first timer component is turned on while the alarm component is enabled, and the user is allowed to select an active release alarm within a set time, when the alarm is still not released when the set time arrives, or in the enable message
  • the user button triggers itself
  • the second level of the hazard level is enabled, and the rescue measures specifically include:
  • the automatic dialing component automatically calls and contacts the called party by calling for help with the help number set by the user.
  • the established interaction further includes: the first short message function component is turned on at the same time that the automatic dialing component is enabled, or is opened in a case where the calling number is called for help in a polling manner, and the call cannot be established, and the sending is performed.
  • the method further includes: after the call interaction is established, the second short message function component parses the short message including the verification password from the called party after the called party does not obtain the user response , when the parsed password matches the set dangerous boost password, the third level of the hazard level is enabled;
  • the method further comprises: counting the number of polling times, and enabling the third level of the hazard level if the number of polling times has reached the set critical number of times.
  • the rescue measures specifically include: the space positioning component is started when the alarm component is turned on again, according to the set help number, the obtained The current location of the user is sent to the called party corresponding to the help number.
  • the user hazard level monitoring platform of the present invention is adapted to the current situation of the monitored user, the corresponding hazard level is enabled, and corresponding rescue measures are taken.
  • the invention differs from the prior art in that only a single alarm can be used for help.
  • the user's help can be monitored in real time, and corresponding rescue measures are taken in time for the different needs faced by the user, and won. Rescue time.
  • the invention is mainly applied to the special needs of the elderly and the weakened persons to improve the implementation of the monitoring measures.
  • the invention can also be extended to the care and use of special vulnerable persons.
  • Figure 1 is a structural diagram of the user's hazard level monitoring platform
  • Figure 2 is a flow chart of the level switching of the user hazard level monitoring platform
  • Figure 3 is a flow chart of a level of processing of the user's hazard level monitoring platform
  • Figure 4 is a flow chart of another level of processing of the user hazard level monitoring platform
  • Figure 5 is a flow chart of another level of processing of the user hazard level monitoring platform
  • Figure 6 is a schematic diagram of the rescue information management component. detailed description
  • the basic idea of the invention is: adapting to the current situation of the monitored user, enabling the corresponding hazard level, and taking corresponding rescue measures.
  • a mobile terminal that implements monitoring management includes: a user hazard level monitoring platform, configured to match the current situation of the monitored user, enable a corresponding hazard level, and retrieve corresponding rescue measures.
  • the user hazard level monitoring platform includes: an enabling unit and a platform monitoring operating unit.
  • the enabling unit is configured to trigger the activation of the platform according to the received user risk level monitoring platform; and corresponding to the current situation of the monitored user, the corresponding risk level is enabled.
  • the platform monitoring operation unit is configured to retrieve corresponding rescue measures according to the enabled hazard level.
  • the user hazard monitoring platform will only be enabled after receiving the enable message sent by the user by the button or sent by the fluctuation detection component, as explained below.
  • the first scenario A scenario in which the message is enabled by the fluctuation detection component.
  • the user danger level monitoring platform further includes: a fluctuation detecting component, configured to detect a user motion state, and send an enable message to the enabling unit when the user motion state occurs beyond a sudden fluctuation of the set fluctuation domain value.
  • the enable unit is further used to enable the platform; monitoring the enable message is sent by the fluctuation detection component, ie: the enable message is not triggered by the user button itself, enabling the first level of the hazard level.
  • the platform monitoring operation unit further includes: an alarm component for issuing an alarm signal by buzzer or user-set help audio in the case of the first level of the danger level.
  • the platform monitoring operation unit further includes: a first timer component, configured to be turned on while the alarm component is enabled, allowing the user to select the active release alarm within the set time, when The alarm is still unresolved when the set time arrives
  • the notification enable unit enables the second level of the hazard level.
  • the second scenario The scene of the enable message is sent by the user by the button.
  • the user danger level monitoring platform further includes: a button parsing component, configured to parse the user's button operation, and when the parsing out the user's button operation matches the set button or button combination, sending an enable message to the enabling unit.
  • the enable unit is further used to enable the platform; the detected enable message is sent by the button parsing component, ie: the enable message is triggered by the user button, enabling the second level of the hazard level.
  • the platform monitoring operation unit further includes: an automatic dialing component, configured to call for help by setting a help number set by the user, and automatically establishing a relationship with the called party Call interaction.
  • the platform monitoring operation unit may further include: an auxiliary component, that is, a first short message function component, and a first short message function component for automatically dialing The component is enabled at the same time, or when the call for help number is called in a polling manner and the call cannot be established, the set help phrase is sent, and a short message interaction with the called person is established.
  • an auxiliary component that is, a first short message function component, and a first short message function component for automatically dialing The component is enabled at the same time, or when the call for help number is called in a polling manner and the call cannot be established, the set help phrase is sent, and a short message interaction with the called person is established.
  • the platform monitoring operation unit further includes: a polling number analyzer and a second timer component.
  • the polling frequency analyzer is configured to count the number of polling times, and notify the second timer component to be turned on when the number of polling times does not reach the set critical number.
  • the second timer component is configured to be turned on when the number of polling times does not reach the set critical number.
  • the platform monitoring operating unit when the platform monitoring operating unit is in the second level of the dangerous level, it will automatically upgrade to the third level of the dangerous level in the following two cases.
  • the platform monitoring operation unit further includes: a polling number analyzer, configured to count the number of polling times, and notify the enabling unit to enable the third level of the dangerous level when the number of polling times has reached the set critical number of times level.
  • the platform monitoring operation unit further comprises: a space positioning component, configured to be started when the alarm component is turned on again, according to the set help number, which will be acquired The current location of the user is sent to the called party corresponding to the help number.
  • help number the above-mentioned help number, help phrase, and help audio are all maintained by the rescue information management component.
  • a monitoring implementation method for implementing monitoring management comprising: matching the current situation of the monitored user, enabling a corresponding risk level, and obtaining corresponding rescue measures.
  • the method further includes: triggering the activation of the user hazard level monitoring platform according to the received user hazard level monitoring platform enable message.
  • the user hazard level monitoring platform needs to judge the source of the received enable message, that is, judge whether the enable message is triggered by the user's button, and use different processing for different judgment results, which are respectively described below.
  • the first scenario Enabling a message is not a scene triggered by the user's button.
  • the first level of the hazard level is enabled, and the rescue measures specifically include:
  • the alarm component sends an alarm signal by buzzer or user-set help audio.
  • the first timer component is turned on while the alarm component is enabled, and the user is allowed to select the active release alarm for a set time, and the second level of the danger level is enabled when the alarm is still not released when the set time is reached.
  • the second scenario The enable message is a scenario triggered by the user's button. At this time, the danger is enabled. The second level of the risk level.
  • the rescue measures specifically include:
  • the automatic dialing component automatically calls to establish a call interaction with the called party by calling for assistance with the help number set by the user.
  • the established interaction further includes: the first short message function component is turned on while the automatic dialing component is enabled, or is turned on when the calling number is called for help in a polling manner and the call cannot be established. Send the set help phrase to establish a short message interaction with the person being asked.
  • the help number is polled in a polling manner
  • the number of polling times is further counted, and when the number of polling times does not reach the set critical number, the second is notified.
  • the timer component is turned on, and when the set time arrives, the automatic dialing component is notified to start a new round of automatic dialing.
  • the first case after the call interaction is established, the second short message function component parses the short message containing the verification password from the called party after the helper does not obtain the user's own response, and the parsed password and When the set danger is increased, the third level of the hazard level is enabled.
  • Case 2 Count the number of polls. When the number of polls has reached the set critical number, the third level of the hazard level is enabled.
  • the rescue measures specifically include: the space positioning component is started when the alarm component is turned on again, according to the set help number, the acquired user is currently located The location is sent to the called party corresponding to the help number.
  • the main object of the present invention is to implement a safe and effective monitoring function in a mobile terminal.
  • the construction method is to introduce a user risk level monitoring platform in the mobile terminal system.
  • the mobile terminal is an example of a mobile phone.
  • the platform introduced in the mobile phone system includes two modules of software and hardware.
  • the hardware module is mainly realized by adding a user's fluctuation detection component and the key analysis component;
  • the software module is mainly composed of an alarm component, a timer component including the first and second timer components, a rescue information management component, and an automatic dialing component.
  • the first short message function component, the second short message function component and the spatial positioning component are formed.
  • the wave detection component takes advantage of the portability and fit of the phone to monitor the user's motion status in real time.
  • the instrument automatically triggers the alarm component in the software module and issues an alarm.
  • the button resolution component is also added to the platform. If you press and hold a specified button or a combination of buttons, the hazard level monitoring platform will be enabled directly.
  • the alarm component is triggered by an alarm message sent from the hardware module to send an alarm through the handset speaker; the timer component and the alarm component are used in combination to determine the current hazard level of the user; the automatic dialing component and the first and second short messages
  • the parsing component calls the rescue information management component, and the spatial positioning component is expanded to realize the automatic interaction capability of the hazard level monitoring system, thereby ensuring effective communication between the user and the help object.
  • the present invention is different from the alarm module proposed in the prior art, and is not a single rescue measure depending on the alarm.
  • the user danger level monitoring platform introduced in the present invention makes full use of the spatial positioning technology and short The messaging function, as well as the ability to automatically interact with the user being assisted by the helper.
  • the user's hazard level is initially divided into 3 levels: the first level of the hazard level (LEVEL1), the second level of the hazard level (LEVEL2), and the third level of the hazard level (LEVEL3), from low to high.
  • the layer-by-layer increment of the hazard level is identified separately. Depending on the actual situation of use, you can also plan for more levels.
  • the siren component will call for help by buzzing or user-prepared help audio.
  • a timer component is added to the software module, for example, as the first timer component of the alarm timer, in the alarm The first timer component is enabled while the component is turned on. In this way, the user will be selected for a period of time to actively release the alarm, and the unexpected alarm in the non-hazardous state is eliminated, thereby avoiding unnecessary unnecessary alarm processing.
  • the risk level rises to LEVEL2.
  • the monitoring platform can call for help through the automatic dialing component for the preset number maintained by the rescue information management component, such as the number of friends and relatives, the guardian number, and the like.
  • the automatic dialing component is required to poll the entire preset helper number list, but also the short message component is used together, for example, the first short message function component is currently locked.
  • the helper number sends a preset help phrase to clarify the urgency of the current call. In this way, after the call is established, the two parties can fully understand the current situation and situation of the user through direct dialogue, so as to implement further assistance.
  • the helper finds that the user's response cannot be obtained.
  • the preset password can be sent to the helper mobile phone through the short message method to upgrade the danger level of the monitoring system.
  • the short message component in the software module for example, the second short message function component as the short message parsing component, will parse the received short message content. If it matches the preset password, the hazard level automatically rises to LEVEL3. At this point, the alarm component will be turned on again, and the current location obtained by the spatial positioning component will be sent back to the preset number list. such, The other party can use the effective location to implement the rescue based on the received location feedback.
  • the present invention is mainly realized by embedding a user danger level monitoring platform in a commonly used mobile terminal system.
  • the design and implementation basis of the user danger level monitoring platform of the invention is as follows: By monitoring the abnormal behavior of the user and analyzing the responsiveness of the user, the various complex emergencies that may occur to the user are refined into a plurality of different LEVELs, and corresponding police measures.
  • the combination of automatic dialing, short message function and spatial positioning technology increases the self-interaction capabilities of the entire monitoring system.
  • the system adopts the component design idea, which reduces the coupling degree with other modules in the mobile terminal software, and the development and maintenance are simple, which ensures the stable realization of the whole system.
  • the various needs that the user may face are fully considered, and the effective monitoring measures are provided by ensuring the effective transmission of the information.
  • the entire monitoring platform is usually enabled after receiving an enable message sent by the user via the button or sent by the fluctuation detection component. Enable the message that the platform is enabled for trigger messages. That is to say, the current fluctuation detection component and the key analysis component in the hardware module are the entry points of the system trigger.
  • the enable message sent to the software module is based on the alarm field value of the ripple detection component or the analysis result from the button resolution component.
  • various types of miniature physical monitoring instruments and sensors can be added to the current hardware module. For heart rate monitors for heart patients, once the heart rate index exceeds the normal level, the monitoring system will be activated and enter an early warning state.
  • the software module will provide the corresponding processing measures based on the current security level LEVEL1 ⁇ LEVEL3 of the system. While ensuring that users get timely help, they can choose various trigger situations to avoid mis-delivery of information as much as possible.
  • the invention is illustrated by way of example below.
  • Figure 2 shows the switching conditions and procedures between various hazard levels in the user's hazard level monitoring system.
  • the mobile terminal as a mobile phone as an example, the mobile phone starts to enter the standby interface, and the specific implementation is as follows.
  • Step 101 Turn on the mobile phone, enter the standby interface, and perform normal monitoring and processing on various network side messages and key messages.
  • Step 102 The received message is an enable message of the user danger level monitoring platform.
  • Step 103 Determine the source of the enable message. If the message is triggered by the user button, if the button is long pressed, the process proceeds to step 106; otherwise, the process proceeds to step 104.
  • Step 104 Enter LEVEL1, the alarm and timer components in the module will be turned on at the same time, and the message will be monitored.
  • Step 105 If the alarm is requested to be released before the timer component expires, the user may be regarded as out of danger, the timer component is turned off, the warning state is exited, and the current process is ended.
  • step 106 If the timer component arrival message is received, that is, the alarm is still not requested to be released before the timer component expires, indicating that the user has not received timely response and assistance within the specified time period, and the danger level will rise to LEVEL2. Proceed to step 106 to enable self-interactive communication without passively waiting for assistance.
  • Step 106 At this point, the hazard level of the entire monitoring platform rises to LEVEL2. Since the direct communication enables the two parties to clearly communicate the situation and needs, the platform will poll for help by automatically dialing the list of help numbers maintained by the rescue information management component. At the same time, in order to facilitate the helper to clear the urgency of the call faster and better, before the automatic dialing, the preset help text message will be sent to the currently locked help number. In order to avoid the loss of power due to repeated polling, a count of the number of polls (count) is added. If the count value does not reach the critical number, the timer component is turned on, and after waiting for the appropriate time, a new round of automatic dialing is started. If the count is full, the system will not continue polling, but will raise the hazard level of the system to LEVEL3 and go to step 108. This can avoid hidden dangers caused by objective situations such as missed calls, and improve the accuracy of information transmission.
  • Step 107 After the call is established, if the helper finds that the other party cannot respond, combined with the received The information prompt can also improve the hazard level of the monitoring system to LEVEL3 by means of short message, that is to say, the mobile phone under the LEVEL 2 danger level will analyze the short message content received from the person being assisted. If it matches the preset hazard escalation password, the system hazard index will be raised to the highest level LEVEL3. Go to step 108.
  • Step 108 At this point, the hazard level of the entire monitoring platform rises to LEVEL3.
  • the alarm device component will be enabled again, and the current location information of the user will be captured by the spatial positioning component, and the information group will be sent to the preset list number. In this way, the person being assisted can use the most reasonable and effective rescue measures according to the current environment.
  • Step 201 Turn on the alarm component and the timer component.
  • Step 202 Listen to the timer component arrival message.
  • Step 203 Determine whether the timer component arrival message is monitored. If yes, execute step 204; otherwise, perform step 205.
  • Step 204 The hazard level is raised from LEVEL 1 to LEVEL2, and the current LEVEL 1 processing flow is received.
  • Step 205 Determine whether the alarm component is turned off. If yes, go to step 206; otherwise, go to step 202.
  • Step 206 Turn off the timer.
  • Step 207 Exit the hazard level monitoring platform.
  • Step 302 Send a preset help phrase.
  • Step 303 Dial the ITEM i corresponding number.
  • Step 304 Determine whether the call is established. If yes, go to step 305. Otherwise, go to step 307.
  • Step 305 Determine whether the call is unresponsive. If yes, go to step 310. Otherwise, go to step 306.
  • Step 306 Exit the hazard level monitoring platform.
  • Step 307 Point to the next help number, i++.
  • Step 309 Determine whether count reaches a critical value. If yes, go to step 310; otherwise, go to step 311.
  • Step 311 Turn on the timer component. When the timer component expires, go to step 312.
  • Step 401 Analyze the short message received at the dangerous level LEVEL2 and above.
  • Step 402 Determine whether the password in the short message content is consistent with the preset password. If yes, go to step 403; otherwise, go to step 401.
  • Step 403 Turn on the alarm component to call for help.
  • Step 404 The spatial positioning component acquires the location where the current user is located.
  • Step 405 Notifying the obtained location to the preset list member by means of a short message.
  • the rescue information management component mentioned above provides the user with a public interface for managing the helper number, the help phrase, and the help audio.
  • Figure 6 shows a schematic diagram of the rescue information management component, describing the management framework of this rescue information management component.
  • the helper number is used to store the user's edit and settings for the help number;
  • the help phrase is used at the level LEVEL2, for the pre- Set the number list to poll the dialing, and send the help short message by the short message function component, so that the helper can clarify the urgency of the incoming call;
  • the help audio is the alarm sound that is called when the alarm component is triggered for LEVEL1 and LEVEL3. .
  • help information are provided in the foreground to provide user editing and query in the form of a menu list, while the background can be managed in a linked list.
  • the present invention fully takes into account various potential crises that may be experienced by the elderly and the sick, and introduces a multi-level hazard monitoring system to detect and locate the danger as early as possible, ensuring the timeliness of obtaining assistance and Effectiveness.

Abstract

本发明公开了一种实现监测管理的移动终端,该移动终端包括:用户危险等级监测平台,用于与监测到的用户当前情况相适配,启用相对应的危险等级,并采取相对应的救助措施。本发明还公开了一种实现监测管理的监测实现方法,该方法包括:与监测到的用户当前情况相适配,启用相对应的危险等级,并采取相对应的救助措施。采用本发明的移动终端及方法,能对用户的求助进行实时监测,并针对用户面临的不同需求及时采取相对应的救助措施,赢取了救助时间。

Description

一种实现监测管理的移动终端及其监测实现方法 技术领域
本发明涉及电子和通讯领域, 尤其涉及一种实现监测管理的移动终端 及其监测实现方法。 背景技术
目前, 各式各样的移动终端已经成为了人们日常生活中普遍使用的通 讯工具之一, 以移动终端是手机为例, 手机的设计针对不同的适用人群, 风格迥异。 伴随老龄化社会的到来, 适用老年人使用的手机设计也是层出 不穷。 通过精简手机菜单功能, 以及加大按键丝印和铃音音量等的手机更 适宜老年人使用。 但也不难发现, 目前适宜老年人使用的手机, 其设计主 要以操作的简易性、 功能的实用性、 以及使用的友好性等方面作为设计重 点, 而在安全监测和紧急情况下的警报处理等方面考虑并不是很多。
如何为老年人提供真正贴心的关爱, 如何为子女们紧张繁忙的工作去 除后顾之忧, 提供完善的监测以便于开展对老人的救助措施是十分必要和 迫切的。 申请号为 200710075357的中国专利申请所提出的老人手机中, 曾 简单引入过报警模块, 用于手机在撞击时发出报警, 向周围人进行求助。 但是这种方式主要是单纯依赖警报声来引发注意, 对于用户而言, 仍然处 于被动等待的状态。 而且, 即使辅以自动拨打预设号码的功能, 但由于在 自动交互能力上的设计欠缺, 用户在处于特殊情况下, 如独处时, 若突发 地丧失沟通能力, 仍将无法及时获得救助。 据统计报道, 目前即使在紧急 救护设施最为先进的地区, 当事人获得救助最快也需要在报警后等待 5分 钟。 因此, 如何对用户的求助进行实时监测, 及时釆取救助措施, 赢取救 助时间, 都是目前急待解决和实现的。 发明内容
有鉴于此, 本发明的主要目的在于提供一种实现监测管理的移动终端 及其监测实现方法, 能对用户的求助进行实时监测, 并针对用户面临的不 同需求及时釆取相对应的救助措施, 赢取了救助时间。
为达到上述目的, 本发明的技术方案是这样实现的:
一种实现监测管理的移动终端, 该移动终端包括: 用户危险等级监测 平台, 用于与监测到的用户当前情况相适配, 启用相对应的危险等级, 并 釆取相对应的救助措施。
其中, 所述用户危险等级监测平台, 包括: 启用单元和平台监测运行 单元; 其中,
启用单元, 用于根据接收到的所述用户危险等级监测平台的启用消息 触发平台的启用; 与监测到的所述用户当前情况相适配, 启用相对应的危 险等级;
平台监测运行单元, 用于根据启用的危险等级, 釆取相对应的救助措 施。
其中, 所述用户危险等级监测平台, 进一步包括: 波动检测组件, 用 于检测用户运动状态, 当用户运动状态发生超出设置的波动域值的突发波 动时, 发送所述启用消息给所述启用单元;
所述启用单元, 进一步用于启用所述用户危险等级监测平台; 监测到 所述启用消息是由波动检测组件发送时, 启用危险等级的第一级;
所述平台监测运行单元, 进一步包括: 警报器组件, 用于在处于危险 等级的第一级的情况下, 通过蜂鸣或用户设置的求助音频发出报警信号。
其中, 所述平台监测运行单元, 进一步包括: 第一定时器组件, 用于 在所述警报器组件启用的同时开启, 在设置的时间内允许用户选择主动解 除警报, 当设置的时间到达时警报仍未解除, 通知所述启用单元并由启用 单元启用危险等级的第二级。
其中, 所述用户危险等级监测平台, 进一步包括: 按键解析组件, 用 于解析用户的按键操作, 当解析出用户的按键操作与设置的按键或按键组 合匹配时, 发送所述启用消息给所述启用单元;
所述启用单元, 进一步用于启用所述用户危险等级监测平台; 监测到 所述启用消息是由按键解析组件发送时, 启用危险等级的第二级。
其中, 在处于危险等级的第二级的情况下, 所述平台监测运行单元, 进一步包括: 自动拨号组件, 用于通过对用户设置的求助号码进行呼叫求 助, 自动建立与被求助方之间的通话交互。
其中, 所述平台监测运行单元, 进一步包括: 第一短消息功能组件, 用于在所述自动拨号组件启用的同时开启、 或在以轮询的方式对所述求助 号码进行呼叫求助且无法建立通话的情况下开启, 发送设置的求助短语, 建立与被求助人之间的短消息交互。
其中, 所述平台监测运行单元, 进一步包括: 轮询次数分析器和第二 定时器组件; 其中,
轮询次数分析器, 用于对轮询次数进行统计, 在轮询次数未达到设置 的临界次数的情况下, 通知所述第二定时器组件开启;
第二定时器组件, 用于在轮询次数未达到设置的临界次数的情况下开 启, 当设置的时间到达时, 通知自动拨号组件开始新一轮自动拨号。
其中, 所述平台监测运行单元, 进一步包括: 第二短消息功能组件, 用于在所述通话交互建立后, 所述被求助方未获得所述用户响应的情况下, 对来自被求助方的包含验证口令的短消息进行解析, 当解析出的口令与设 置的危险提升口令匹配时, 通知所述启用单元启用危险等级的第三级; 或者, 所述平台监测运行单元, 进一步通过轮询次数分析器对轮询次 数进行统计, 在轮询次数已达到设置的临界次数的情况下, 通知所述启用 单元启用危险等级的第三级。
其中, 在处于危险等级的第三级的情况下, 所述平台监测运行单元, 进一步包括: 空间定位组件, 用于在再次开启所述警报器组件的情况下启 动, 根据所述设置的求助号码, 将获取到的用户当前所处的位置群发到求 助号码对应的被求助方。
一种实现监测管理的监测实现方法, 该方法包括: 与监测到的用户当 前情况相适配, 启用相对应的危险等级, 并釆取相对应的救助措施。
其中, 启用所述危险等级之前还包括: 根据接收到的用户危险等级监 测平台的启用消息, 触发用户危险等级监测平台的启用。
其中, 在所述启用消息不是由用户按键自行触发的情况下,
启用危险等级的第一级, 釆取的救助措施具体包括: 警报器组件通过 蜂鸣或用户设置的求助音频发出报警信号。
其中, 在所述警报器组件启用的同时开启第一定时器组件, 在设置的 时间内允许用户选择主动解除警报, 当设置的时间到达时警报仍未解除的 情况下、 或在所述启用消息是由用户按键自行触发的情况下,
启用危险等级的第二级, 釆取的救助措施具体包括: 自动拨号组件通 过对用户设置的求助号码进行呼叫求助, 自动建立与被求助方之间的通话 交互。
其中, 建立的交互进一步包括: 第一短消息功能组件在所述自动拨号 组件启用的同时开启、 或在以轮询的方式对所述求助号码进行呼叫求助且 无法建立通话的情况下开启, 发送设置的求助短语, 建立与被求助人之间 的短消息交互。 数进行统计, 在轮询次数未达到设置的临界次数的情况下, 通知第二定时 器组件开启, 当设置的时间到达时, 通知自动拨号组件开始新一轮自动拨 号。
其中, 该方法进一步包括: 第二短消息功能组件在所述通话交互建立 后, 所述被求助方未获得所述用户响应的情况下, 对来自被求助方的包含 验证口令的短消息进行解析, 当解析出的口令与设置的危险提升口令匹配 时, 启用危险等级的第三级;
或者, 该方法进一步包括: 对轮询次数进行统计, 在轮询次数已达到 设置的临界次数的情况下, 启用危险等级的第三级。
其中, 在处于危险等级的第三级的情况下, 釆取的救助措施具体包括: 空间定位组件在再次开启所述警报器组件的情况下启动, 根据所述设置的 求助号码, 将获取到的用户当前所处的位置群发到求助号码对应的被求助 方。
本发明的用户危险等级监测平台与监测到的用户当前情况相适配, 启 用相对应的危险等级, 并釆取相对应的救助措施。
本发明区别于现有技术只能釆用单一的警报来求助, 釆用本发明, 能 对用户的求助进行实时监测, 并针对用户面临的不同需求及时釆取相对应 的救助措施, 赢取了救助时间。 本发明主要应用于针对老人以及病弱人员 的特殊需求, 来完善监测措施的实现。 本发明还可推广至特殊病弱人员的 看护使用。 附图说明
图 1为用户危险等级监测平台结构图;
图 2为用户危险等级监测平台等级切换流程图;
图 3为用户危险等级监测平台一等级处理流程图;
图 4为用户危险等级监测平台另一等级处理流程图;
图 5为用户危险等级监测平台又一等级处理流程图;
图 6为救助信息管理组件示意图。 具体实施方式
本发明的基本思想是: 与监测到的用户当前情况相适配, 启用相对应 的危险等级, 并釆取相对应的救助措施。
下面结合附图对技术方案的实施作进一步的详细描述。
一种实现监测管理的移动终端, 该移动终端包括: 用户危险等级监测 平台, 用于与监测到的用户当前情况相适配, 启用相对应的危险等级, 并 釆取相对应的救助措施。
这里, 用户危险等级监测平台包括: 启用单元和平台监测运行单元。 其中, 启用单元用于根据接收到的用户危险等级监测平台的启用消息触发 平台的启用; 与监测到的用户当前情况相适配, 启用相对应的危险等级。 平台监测运行单元, 用于根据启用的危险等级, 釆取相对应的救助措施。
这里需要指出的是: 用户危险等级监测平台只有在接收到由用户自行 通过按键发送、 或是由波动检测组件发送的启用消息后才会启用, 以下分 别阐述。
第一种场景: 由波动检测组件发送启用消息的场景。
此时, 用户危险等级监测平台进一步包括: 波动检测组件, 用于检测 用户运动状态, 当用户运动状态发生超出设置的波动域值的突发波动时, 发送启用消息给启用单元。 启用单元进一步用于启用平台; 监测到启用消 息是由波动检测组件发送的, 即: 启用消息不是由用户按键自行触发的, 启用危险等级的第一级。 平台监测运行单元, 进一步包括: 警报器组件, 用于在处于危险等级的第一级的情况下, 通过蜂鸣或用户设置的求助音频 发出报警信号。
这里, 为了避免误操作以及筛选危险等级的需要, 平台监测运行单元 进一步包括: 第一定时器组件, 用于在警报器组件启用的同时开启, 在设 置的时间内允许用户选择主动解除警报, 当设置的时间到达时警报仍未解 除, 通知启用单元启用危险等级的第二级。
第二种场景: 由用户自行通过按键发送启用消息的场景。
此时, 用户危险等级监测平台进一步包括: 按键解析组件, 用于解析 用户的按键操作, 当解析出用户的按键操作与设置的按键或按键组合匹配 时, 发送启用消息给启用单元。 启用单元进一步用于启用平台; 监测到启 用消息是由按键解析组件发送的, 即: 启用消息是由用户按键自行触发的, 启用危险等级的第二级。
基于以上两种场景, 在处于危险等级的第二级的情况下, 平台监测运 行单元进一步包括: 自动拨号组件, 用于通过对用户设置的求助号码进行 呼叫求助, 自动建立与被求助方之间的通话交互。
这里, 为了增强作为求助方的用户与被求助方之间的自动交互能力, 平台监测运行单元可以进一步包括: 辅助的组件即第一短消息功能组件, 第一短消息功能组件用于在自动拨号组件启用的同时开启、 或在以轮询的 方式对求助号码进行呼叫求助且无法建立通话的情况下开启, 发送设置的 求助短语, 建立与被求助人之间的短消息交互。
这里, 为了避免反复轮询多耗电, 平台监测运行单元进一步包括: 轮 询次数分析器和第二定时器组件。 其中, 轮询次数分析器, 用于对轮询次 数进行统计, 在轮询次数未达到设置的临界次数的情况下, 通知第二定时 器组件开启。 第二定时器组件, 用于在轮询次数未达到设置的临界次数的 情况下开启, 当设置的时间到达时, 通知自动拨号组件开始新一轮自动拨 号。
这里, 当平台监测运行单元处于危险等级的第二级时, 在以下两种情 况下会自动升级到危险等级的第三级。
第一种情况: 平台监测运行单元进一步包括: 第二短消息功能组件, 用于在通话交互建立后, 被求助方未获得用户本人响应的情况下, 对来自 被求助方的包含验证口令的短消息进行解析, 当解析出的口令与设置的危 险提升口令匹配时, 通知启用单元启用危险等级的第三级。 第二种情况: 平台监测运行单元进一步包括: 轮询次数分析器, 用于对轮询次数进行统 计, 在轮询次数已达到设置的临界次数的情况下, 通知启用单元启用危险 等级的第三级。
这里, 在处于危险等级的第三级的情况下, 平台监测运行单元进一步 包括: 空间定位组件, 用于在再次开启所述警报器组件的情况下启动, 根 据设置的求助号码, 将获取到的用户当前所处的位置群发到求助号码对应 的被求助方。
这里, 以上涉及到求助号码、 求助短语、 和求助音频都是由救助信息 管理组件进行维护。
一种实现监测管理的监测实现方法, 该方法包括: 与监测到的用户当 前情况相适配, 启用相对应的危险等级, 并釆取相对应的救助措施。
这里, 启用危险等级之前还包括: 根据接收到的用户危险等级监测平 台的启用消息, 触发用户危险等级监测平台的启用。
这里需要指出的是: 用户危险等级监测平台需对接收到的启用消息的 来源进行判断, 即: 判断启用消息是否由用户按键自行触发, 对于不同的 判断结果釆用不同的处理, 以下分别阐述。
第一种场景: 启用消息不是由用户按键自行触发的场景。 此时, 启用 危险等级的第一级, 釆取的救助措施具体包括: 警报器组件通过蜂鸣或用 户设置的求助音频发出报警信号。
这里, 在警报器组件启用的同时开启第一定时器组件, 在设置的时间 内允许用户选择主动解除警报, 当设置的时间到达时警报仍未解除的情况 下启用危险等级的第二级。
第二种场景: 启用消息是由用户按键自行触发的场景, 此时, 启用危 险等级的第二级。
基于以上两种场景, 当处于危险等级的第二级时, 釆取的救助措施具 体包括: 自动拨号组件通过对用户设置的求助号码进行呼叫求助, 自动建 立与被求助方之间的通话交互。
这里, 为了增强自动交互能力, 建立的交互进一步包括: 第一短消息 功能组件在自动拨号组件启用的同时开启、 或在以轮询的方式对求助号码 进行呼叫求助且无法建立通话的情况下开启, 发送设置的求助短语, 建立 与被求助人之间的短消息交互。
这里, 为了避免反复轮询多耗电, 在以轮询的方式对求助号码进行轮 询时, 进一步对轮询次数进行统计, 在轮询次数未达到设置的临界次数的 情况下, 通知第二定时器组件开启, 当设置的时间到达时, 通知自动拨号 组件开始新一轮自动拨号。
这里, 当处于危险等级的第二级时, 在以下两种情况下会自动升级到 危险等级的第三级。
第一种情况: 第二短消息功能组件在通话交互建立后, 被求助方未获 得用户本人响应的情况下, 对来自被求助方的包含验证口令的短消息进行 解析, 当解析出的口令与设置的危险提升口令匹配时, 启用危险等级的第 三级。 第二种情况: 对轮询次数进行统计, 在轮询次数已达到设置的临界 次数的情况下, 启用危险等级的第三级。
当处于危险等级的第三级时, 釆取的救助措施具体包括: 空间定位组 件在再次开启所述警报器组件的情况下启动, 根据所述设置的求助号码, 将获取到的用户当前所处的位置群发到求助号码对应的被求助方。
以下对本发明的主要内容进行阐述。
本发明的主要目的是在移动终端中实现安全有效的监测功能。 构建方 法是在移动终端系统中引入一个用户危险等级监测平台。 如图 1 所示, 以 移动终端为手机为例, 该手机系统中所引入的平台包括软、 硬件 2大模块。 硬件模块主要是通过添加一个用户的波动检测组件和按键解析组件来实 现; 软件模块主要是由警报器组件、 包括第一和第二定时器组件的定时器 组件、 救助信息管理组件、 自动拨号组件、 第一短消息功能组件、 第二短 消息功能组件和空间定位组件所构成。
如图 1 所示, 波动检测组件利用了手机的便携性和贴身性, 对用户的 运动状态进行实时监控。 每当用户的行动发生突发性波动并超过预设的域 值后, 该仪器会自动触发软件模块中的报警组件, 并发出警报。 同时, 为 了保证用户在自身感受到不适时, 也能尽早发送救助请求, 平台中还添加 了按键解析组件。 如长按指定按键或按键的组合时, 将直接启用该危险等 级监测平台。
警报器组件由发自硬件模块的警报信息触发, 通过手机扬声器发出警 报; 定时器组件和警报组件结合使用, 用于确定用户目前所处的危险等级; 自动拨号组件和第一、 第二短消息解析组件调用救助信息管理组件, 结合 空间定位组件扩充实现了该危险等级监测系统的自动交互能力, 保证了用 户和求助对象间的有效通信。 这里需要指出的是: 本发明与现有技术中所 提出的报警模块不同, 并不是单一的依赖于报警这一种救助措施, 本发明 中引入的用户危险等级监测平台充分利用空间定位技术和短消息功能, 以 及添加了作为求助方的用户与被求助方的自动交互能力。
在该平台中, 将用户危险等级初步划分为 3 级: 危险等级的第一级 ( LEVEL1 )、 危险等级的第二级 ( LEVEL2 ) 和危险等级的第三级 ( LEVEL3 ), 由低到高, 分别标识了危险等级的逐层递增。 根据使用的实 际情况, 还可以细划为更多等级。
以下对平台在各个等级下釆用的救助措施进行具体阐述。
一、 在发生超出波动域值的突发波动后, 用户进入 LEVEL1 , 整个危 险等级监测平台进入监测运行状态。 此时, 警报器组件会通过蜂鸣, 或是 用户预置的求助音频发出呼救。 考虑到用户在手机的使用过程中可能发生 由于操作失误或是手机意外跌落等行为造成警报开启, 因此在软件模块中 添加了定时器组件, 比如作为警报定时器的第一定时器组件, 在警报组件 开启的同时启用第一定时器组件。 这样, 将为用户保留一段时间选择主动 解除警报, 对非危险状态的意外警报加以排除, 从而避免了后续不必要的 警报处理。
二、 若在第一定时器的预设时段内, 第一定时器没有得到及时处理, 险等级升至 LEVEL2。 同时, 由于引入 LEVEL1 的主要目的是为了对危险 环境进行筛选和确定, 因此, 对于用户在自感不适时通过按键自发开启监 测平台的情况, 将直接进入到 LEVEL2。 该阶段下, 监测平台可通过自动 拨号组件对救助信息管理组件维护的预置号码, 比如亲友号码、 监护人号 码等进行呼叫求助。 为避免出现被求助人电话漏接的情况, 该阶段中不仅 需要自动拨号组件轮询整个预置的求助人号码列表, 还将配合使用短消息 组件, 比如第一短消息功能组件向当前锁定的求助号码发送预置的求助短 语, 以明确当前来电的紧急性。 这样, 在通话建立后, 双方可通过直接对 话, 充分了解到用户的当前状况和处境, 以便实施进一步的救助。
三、 如果通话建立后, 被求助方却发现无法获得用户本人的响应, 在 根据实际情况分析判断后, 可通过短消息方式, 向求助手机发送预置口令, 升级监测系统的危险等级。 目前由于已处于危险等级 LEVEL2 以及以上的 情况, 软件模块中的短消息组件, 比如作为短消息解析组件的第二短消息 功能组件将对接收到的短消息内容进行解析。 如果和预置口令吻合, 危险 等级自动升至 LEVEL3。 此时, 警报器组件将会再次开启, 同时将通过空 间定位组件获取到的当前所处位置, 群发反馈至预置的号码列表。 这样, 对方就可以基于接收到的位置反馈, 釆用有效途径实施救助。
综上所述, 本发明主要是通过在常用的移动终端系统中嵌入用户危险 等级监测平台得以实现。 本发明用户危险等级监测平台的设计实现依据为: 通过监测用户的异常行为和对用户的响应度分析, 将用户可能出现的各种 复杂紧急情况细化为多个不同的 LEVEL, 并釆用相应的警^艮措施。 自动拨 号、 短消息功能和空间定位技术的结合, 增加了整个监测系统的自交互能 力。 同时, 系统釆用了组件化的设计思路, 降低了与移动终端软件中的其 他模块的耦合度, 开发维护简单, 保证了整个系统的稳定实现。 釆用本发 明, 充分考虑了用户可能面临的多种需求, 通过保证信息的有效传递, 为 其提供了完善有力的监测措施。
这里需要指出的是: 整个监测平台通常在接收到由用户自行通过按键 发送或是由波动检测组件发送的启用消息后启用。 启用消息即平台启用的 触发消息。 也就是说, 目前硬件模块中的波动检测组件和按键解析组件是 系统触发的入口。 目前, 发送到软件模块的启用消息, 是基于波动检测组 件的警报域值或是来自按键解析组件的分析结果。 而作为推广至病弱人员 所使用的监测移动终端, 还可以在目前硬件模块中添加各类微型的体征监 测仪器和传感器。 如面向心脏病患者的心律监测仪, 一旦心律指数超出了 正常指标, 该监测系统将被启用, 进入预警状态。
软件模块将基于系统当前所处的安全等级 LEVEL1 ~ LEVEL3 , 利用不 同的组件组合, 提供相应的处理措施。 在保证用户得到及时求助的同时, 对各种触发情况辅以 选, 尽可能地避免信息的误传递。
以下对本发明进行举例阐述。
实例一:
图 2所示为用户危险等级监测系统中各种危险等级间的切换条件和流 程。 以移动终端为手机为例, 由手机开机进入待机界面开始, 具体实现如 下:
步骤 101 : 开启手机, 进入到待机界面, 对各类网络侧消息和按键消息 进行正常的监听和处理。
步骤 102: 接收到的消息为用户危险等级监测平台的启用消息。
步骤 103: 对该启用消息的来源加以判断, 如果消息为用户按键自行触 发, 如长按 *键, 转入步骤 106处理; 否则进入步骤 104。
步骤 104: 进入 LEVEL1 , 此时将同时开启模块中的警 器和定时器组 件, 并监听消息。
步骤 105、 如果在定时器组件到时之前, 警报被要求解除, 可视为用户 脱离危险, 关闭定时器组件后退出预警状态, 结束当前流程。
如果接收到定时器组件到时消息, 即: 在定时器组件到时之前, 警报 仍然未被要求解除, 则说明在指定时段内用户并没有得到及时的响应和救 助, 危险等级将升至 LEVEL2 , 转入执行步骤 106, 以启用自交互通信, 而 不再被动地等待救助。
步骤 106: 此时, 整个监测平台的危险等级升至 LEVEL2。 由于直接通 话可以使双方对处境和需求进行清晰的交流, 因此, 该阶段平台将通过对 救助信息管理组件维护的求助号码列表进行轮询, 进行自动拨号求助。 同 时, 为了便于求助人更快更好地明确来电的紧急程度, 在自动拨号前, 还 会向当前锁定的求助号码发送预置的求助短信。 为了避免由于反复轮询损 耗电量, 同时添加了对轮询次数(count ) 的计数。 如果 count值没有达到 临界次数, 则开启定时器组件, 等待适当时间后, 开始新一轮自动拨号。 如果 count计数已满, 系统将不再继续轮询, 而是将系统的危险等级升至 LEVEL3 , 转入执行步骤 108。 这样既可以避免由于电话漏接等客观情况带 来的隐患, 也提高了信息传递的准确性。
步骤 107: 通话建立后, 被求助人若发现对方无法响应, 结合接收到的 信息提示, 也可通过短消息方式自行提高监测系统的危险等级至 LEVEL3 , 也就是说, 处于 LEVEL 2危险等级下的手机, 将对从被求助人处接收到的 短消息内容进行解析。 如果和预置的危险提升口令匹配, 会将系统危险指 数升至最高等级 LEVEL3。 转入执行步骤 108。
步骤 108: 此时, 整个监测平台的危险等级升至 LEVEL3。 警^艮器组件 将会再次启用, 并通过空间定位组件, 对用户当前的位置信息进行捕获, 并将该信息群发至预置的列表号码。 这样, 被求助人就可以根据当前的环 境, 釆用最为合理有效的救助措施。
实例二:
处于危险等级 LEVEL1的处理流程如图 3所示, 包括以下步骤: 步骤 201 : 开启警报器组件与定时器组件。
步骤 202: 监听定时器组件到时消息。
步骤 203: 判断是否监听到定时器组件到时消息, 如果是, 则执行步骤 204; 否则, 执行步骤 205。
步骤 204: 危险等级由 LEVEL 1升至 LEVEL2 , 接收当前 LEVEL 1的 处理流程。
步骤 205: 判断是否关闭警报器组件, 如果是, 则执行步骤 206; 否则, 执行步骤 202。
步骤 206: 关闭定时器。
步骤 207: 退出危险等级监测平台。
实例三:
处于危险等级 LEVEL2的处理流程如图 4所示, 包括以下步骤: 步骤 301 : 锁定预置求助列表中的 ITEM— i, i=l n。
步骤 302: 发送预置的求助短语。
步骤 303: 拨打 ITEM i对应号码。 步骤 304: 判断通话是否建立, 如果是, 则执行步骤 305 , 否则, 执行 步骤 307。
步骤 305: 判断通话是否无响应, 如果是, 则执行步骤 310, 否则, 执 行步骤 306。
步骤 306: 退出危险等级监测平台。
步骤 307: 指向下一个求助号码, i++。
步骤 308: 判断是否 i == n, 如果是, 则执行步骤 309; 否则, 执行步 骤 301。
步骤 309: 判断是否 count到达临界, 如果是, 则执行步骤 310; 否则, 执行步骤 311。
步骤 311 : 开启定时器组件, 当定时器组件到时, 执行步骤 312。
步骤 312: 当 i =l , 执行步骤 301。
实例四:
处于危险等级 LEVEL3的处理流程如图 5所示, 包括以下步骤: 步骤 401 : 解析处于危险等级 LEVEL2及以上等级情况下接收到的短 消息。
步骤 402: 判断短消息内容中的口令是否与预置的口令一致, 如果是, 则执行步骤 403; 否则, 执行步骤 401。
步骤 403: 开启警报器组件呼救。
步骤 404: 空间定位组件获取当前用户所处的位置。
步骤 405: 将获取的位置通过短消息方式通知至预置的列表成员。
以上涉及到的救助信息管理组件为用户提供了对求助人员号码, 求助 短语以及求助音频进行管理的公共接口。 如图 6所示为救助信息管理组件 示意图, 描述了这一救助信息管理组件的管理框架。 求助人员号码用于存 储用户对于求助号码的编辑和设置; 求助短语用于在等级 LEVEL2 , 对预 置号码列表轮询拨号, 同时由短消息功能组件发送求助短消息, 从而使被 求助人更明确来电的紧急程度; 求助音频则是用于 LEVEL1和 LEVEL3时 触发警报器组件时调用的警报提示音。 这 3 类求助信息都在前台以菜单列 表的形式提供用户编辑和查询, 后台则可以釆用链表方式进行管理。 在进 入求助信息管理主菜单后, 用户可以分别进入这 3类求助信息各自的目录, 对条目 i ( i= l...n)加以选择编辑和启用, 并对信息进行实时保存, 保证了 整个监测系统使用上的灵活性。
综上所述, 釆用本发明, 充分考虑到老年人和病弱人士可能遭遇的各 种潜在危机, 引入多等级的危险监测系统, 使其危险尽早探测和定位, 保 证了获得救助的及时性和有效性。
以上所述, 仅为本发明的较佳实施例而已, 并非用于限定本发明的保 护范围。

Claims

权利要求书
1、 一种实现监测管理的移动终端, 其特征在于, 该移动终端包括: 用 户危险等级监测平台, 用于与监测到的用户当前情况相适配, 启用相对应 的危险等级, 并釆取相对应的救助措施。
2、 根据权利要求 1所述的移动终端, 其特征在于, 所述用户危险等级 监测平台, 包括: 启用单元和平台监测运行单元; 其中,
启用单元, 用于根据接收到的所述用户危险等级监测平台的启用消息 触发用户危险等级监测平台的启用; 与监测到的所述用户当前情况相适配, 启用相对应的危险等级;
平台监测运行单元, 用于根据启用的危险等级, 釆取相对应的救助措 施。
3、 根据权利要求 2所述的移动终端, 其特征在于, 所述用户危险等级 监测平台, 进一步包括: 波动检测组件, 用于检测用户运动状态, 当用户 运动状态发生超出设置的波动域值的突发波动时, 发送所述启用消息给所 述启用单元;
所述启用单元, 进一步用于启用所述用户危险等级监测平台; 监测到 所述启用消息是由波动检测组件发送时, 启用危险等级的第一级;
所述平台监测运行单元, 进一步包括: 警报器组件, 用于在处于危险 等级的第一级的情况下, 通过蜂鸣或用户设置的求助音频发出报警信号。
4、 根据权利要求 3所述的移动终端, 其特征在于, 所述平台监测运行 单元, 进一步包括: 第一定时器组件, 用于在所述警报器组件启用的同时 开启, 在设置的时间内允许用户选择主动解除警报, 当设置的时间到达时 警才艮仍未解除, 通知所述启用单元并由启用单元启用危险等级的第二级。
5、 根据权利要求 2所述的移动终端, 其特征在于, 所述用户危险等级 监测平台, 进一步包括: 按键解析组件, 用于解析用户的按键操作, 当解 析出用户的按键操作与设置的按键或按键组合匹配时, 发送所述启用消息 给所述启用单元;
所述启用单元, 进一步用于启用所述用户危险等级监测平台; 监测到 所述启用消息是由按键解析组件发送时, 启用危险等级的第二级。
6、 根据权利要求 4或 5所述的移动终端, 其特征在于, 在处于危险等 级的第二级的情况下, 所述平台监测运行单元, 进一步包括: 自动拨号组 件, 用于通过对用户设置的求助号码进行呼叫求助, 自动建立与被求助方 之间的通话交互。
7、 根据权利要求 6所述的移动终端, 其特征在于, 所述平台监测运行 单元, 进一步包括: 第一短消息功能组件, 用于在所述自动拨号组件启用 的同时开启、 或在以轮询的方式对所述求助号码进行呼叫求助且无法建立 通话的情况下开启, 发送设置的求助短语, 建立与被求助人之间的短消息 交互。
8、 根据权利要求 7所述的移动终端, 其特征在于, 所述平台监测运行 单元, 进一步包括: 轮询次数分析器和第二定时器组件; 其中,
轮询次数分析器, 用于对轮询次数进行统计, 在轮询次数未达到设置 的临界次数的情况下, 通知所述第二定时器组件开启;
第二定时器组件, 用于在轮询次数未达到设置的临界次数的情况下开 启, 当设置的时间到达时, 通知自动拨号组件开始新一轮自动拨号。
9、 根据权利要求 8所述的移动终端, 其特征在于, 所述平台监测运行 单元, 进一步包括: 第二短消息功能组件, 用于在所述通话交互建立后, 所述被求助方未获得所述用户响应的情况下, 对来自被求助方的包含验证 口令的短消息进行解析, 当解析出的口令与设置的危险提升口令匹配时, 通知所述启用单元启用危险等级的第三级;
或者, 所述平台监测运行单元, 进一步通过轮询次数分析器对轮询次 数进行统计, 在轮询次数已达到设置的临界次数的情况下, 通知所述启用 单元启用危险等级的第三级。
10、 根据权利要求 9所述的移动终端, 其特征在于, 在处于危险等级 的第三级的情况下, 所述平台监测运行单元, 进一步包括: 空间定位组件, 用于在再次开启所述警报器组件的情况下启动, 根据所述设置的求助号码 , 将获取到的用户当前所处的位置群发到求助号码对应的被求助方。
11、 一种实现监测管理的监测实现方法, 其特征在于, 该方法包括: 与监测到的用户当前情况相适配, 启用相对应的危险等级, 并釆取相对应 的救助措施。
12、 根据权利要求 11所述的方法, 其特征在于, 启用所述危险等级之 前还包括: 根据接收到的用户危险等级监测平台的启用消息, 触发用户危 险等级监测平台的启用。
13、 根据权利要求 12所述的方法, 其特征在于, 在所述启用消息不是 由用户按键自行触发的情况下,
启用危险等级的第一级, 釆取的救助措施具体包括: 警报器组件通过 蜂鸣或用户设置的求助音频发出报警信号。
14、 根据权利要求 13所述的方法, 其特征在于, 在所述警报器组件启 用的同时开启第一定时器组件, 在设置的时间内允许用户选择主动解除警 报, 当设置的时间到达时警报仍未解除的情况下、 或在所述启用消息是由 用户按键自行触发的情况下,
启用危险等级的第二级, 釆取的救助措施具体包括: 自动拨号组件通 过对用户设置的求助号码进行呼叫求助, 自动建立与被求助方之间的通话 交互。
15、 根据权利要求 14所述的方法, 其特征在于, 建立的交互进一步包 括: 第一短消息功能组件在所述自动拨号组件启用的同时开启、 或在以轮 询的方式对所述求助号码进行呼叫求助且无法建立通话的情况下开启, 发 送设置的求助短语, 建立与被求助人之间的短消息交互。
16、 根据权利要求 15所述的方法, 其特征在于, 在以轮询的方式对所 述求助号码进行轮询时, 进一步对轮询次数进行统计, 在轮询次数未达到 设置的临界次数的情况下, 通知第二定时器组件开启, 当设置的时间到达 时, 通知自动拨号组件开始新一轮自动拨号。
17、 根据权利要求 16所述的方法, 其特征在于, 该方法进一步包括: 第二短消息功能组件在所述通话交互建立后, 所述被求助方未获得所述用 户响应的情况下, 对来自被求助方的包含验证口令的短消息进行解析, 当 解析出的口令与设置的危险提升口令匹配时, 启用危险等级的第三级; 或者, 该方法进一步包括: 对轮询次数进行统计, 在轮询次数已达到 设置的临界次数的情况下, 启用危险等级的第三级。
18、 根据权利要求 17所述的方法, 其特征在于, 在处于危险等级的第 三级的情况下, 釆取的救助措施具体包括: 空间定位组件在再次开启所述 警报器组件的情况下启动, 根据所述设置的求助号码, 将获取到的用户当 前所处的位置群发到求助号码对应的被求助方。
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