WO2017118184A1 - 位置监控方法及智能穿戴装置、移动终端装置、监控装置 - Google Patents

位置监控方法及智能穿戴装置、移动终端装置、监控装置 Download PDF

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Publication number
WO2017118184A1
WO2017118184A1 PCT/CN2016/103889 CN2016103889W WO2017118184A1 WO 2017118184 A1 WO2017118184 A1 WO 2017118184A1 CN 2016103889 W CN2016103889 W CN 2016103889W WO 2017118184 A1 WO2017118184 A1 WO 2017118184A1
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Prior art keywords
module
monitoring
sub
wearable device
smart wearable
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PCT/CN2016/103889
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English (en)
French (fr)
Inventor
孙旺泉
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上海斐讯数据通信技术有限公司
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Publication of WO2017118184A1 publication Critical patent/WO2017118184A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • H04W4/029Location-based management or tracking services
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01SRADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
    • G01S19/00Satellite radio beacon positioning systems; Determining position, velocity or attitude using signals transmitted by such systems
    • G01S19/01Satellite radio beacon positioning systems transmitting time-stamped messages, e.g. GPS [Global Positioning System], GLONASS [Global Orbiting Navigation Satellite System] or GALILEO
    • G01S19/13Receivers
    • G01S19/14Receivers specially adapted for specific applications
    • G01S19/17Emergency applications
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01SRADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
    • G01S19/00Satellite radio beacon positioning systems; Determining position, velocity or attitude using signals transmitted by such systems
    • G01S19/38Determining a navigation solution using signals transmitted by a satellite radio beacon positioning system
    • G01S19/39Determining a navigation solution using signals transmitted by a satellite radio beacon positioning system the satellite radio beacon positioning system transmitting time-stamped messages, e.g. GPS [Global Positioning System], GLONASS [Global Orbiting Navigation Satellite System] or GALILEO
    • G01S19/42Determining position
    • G01S19/45Determining position by combining measurements of signals from the satellite radio beacon positioning system with a supplementary measurement
    • G01S19/46Determining position by combining measurements of signals from the satellite radio beacon positioning system with a supplementary measurement the supplementary measurement being of a radio-wave signal type
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information

Definitions

  • the present invention relates to the field of location monitoring, and in particular to a location monitoring method for applying low frequency wireless signals and corresponding position monitoring devices, mobile terminals and smart wearable devices.
  • the electronic bracelet As a wearable device, the electronic bracelet has been on the market for nearly two years. At present, most of the electronic wristbands mostly use the daily life data such as step counting and statistics of sleep time, so as to provide users with daily exercise volume as a reference for normal sports, which greatly reminds people to exercise more to improve. physical fitness. At present, some wristbands can detect human heart rate or blood pressure and other indicators, which can make people more accurately understand their physical condition.
  • the location of the location of the target is adopted, such as GPS, BDS, GLONASS and other satellite positioning solutions, or mobile communication network positioning solutions based on mobile communication networks, or using WIFI, WIMAX Signal wireless network location scheme. All of the above solutions are susceptible to building interference, satellite positioning often fails indoors, wireless network positioning often fails outdoors, and mobile communication network positioning is heavily offset in densely populated areas.
  • a location monitoring method includes the following steps: the S100 smart wearable device and the preset monitoring location center perform handshake communication with a preset low frequency wireless signal preset with normal communication power; when the handshake communication is successful, step S200 is performed to send the location distance normal information; When the handshake communication fails, step S300 is performed to send the location distance abnormality information.
  • the invention performs handshake communication through low frequency wireless signals, and can provide a position monitoring method that is not susceptible to building interference.
  • the position monitoring method of the present invention further includes the step S020 of setting the frequency of the low frequency wireless signal.
  • the present invention provides an arrangement that further avoids interference.
  • the position monitoring method of the present invention further includes the steps of: S031 setting a normal range of the position range between the smart wearable device and the preset monitoring position center; S032 according to the frequency set in step S020, and the position range set in step S031 The normal distance is set to the normal communication power.
  • the invention enables the smart wearable device to perform handshake communication with the preset monitoring position center with preset normal communication power, and can directly give a judgment of the position distance normal/abnormal according to the handshake communication success/failure. Therefore, it is not necessary to obtain accurate positioning in advance, and then calculate whether the monitoring distance is normal or not, which greatly improves the response speed of the monitoring feedback and the resource consumption of the monitoring system.
  • the location monitoring method of the present invention further includes the following steps: S321: when the preset normal communication power is less than the maximum communication power, increase the current communication power and perform handshake communication; when the handshake communication is successful in the step S321, the step is performed.
  • S322 Acquire a current distance between the smart wearable device and the preset monitoring position center according to the frequency of the low frequency wireless signal set in step S020 and the current communication power adjusted in step S321.
  • the present invention can quickly respond to the current distance, help the guardian to quickly judge the severity of the situation, and facilitate the appropriate search and help-seeking solution at the first time.
  • the location monitoring method of the present invention further includes the steps of: S311 acquiring a preset monitoring mode of the smart wearable device; S312, according to the preset monitoring mode acquired in step S311, causing the smart wearable device to enter a silent, help alert or hunt alert Operating mode.
  • the present invention provides a variety of modes of operation.
  • the location monitoring method of the present invention further includes the steps of: S051 setting the monitoring object of the smart wearable device to be a child, an elderly person, or a prisoner; S052, according to the monitoring object set in step S051, setting the preset monitoring mode to a child. Guardianship, elderly care or prisoner tracking model formula.
  • the present invention can provide a child custody, elderly care or prisoner tracking mode according to the monitored object for a child, an elderly person, or a prisoner.
  • the location range is out of the normal range, enter the silent, help alert, or hunt alert mode. Therefore, in the case of a child being abducted, the present invention provides a silent working mode to ensure the safety of the child to the greatest extent; and for the case of the elderly being lost, the present invention provides a help alert working mode, which can automatically broadcast the family contact information and improve the convenience of the elderly.
  • a mode of hunting and warning on the one hand to remind innocent people to pay attention to safety, on the other hand to improve the convenience of hunting.
  • the position monitoring method of the present invention further includes the step of: S313 performing a flash, sound, and/or vibration alarm reminder.
  • the present invention can quickly prompt an abnormality when the position range is out of the normal range. It is easy to carry out search work immediately. At the same time, it is also convenient for lost children and elderly people with recognition ability to save themselves immediately.
  • the location monitoring method of the present invention further includes the step of: S400, the smart wearable device performs position location, and sends the location location information.
  • the present invention can also provide a positioning function when the position range is far away, thereby facilitating the expansion of the search range.
  • the location monitoring method of the present invention further includes the step of: S410: the smart wearable device performs satellite positioning.
  • the present invention can turn on precise positioning when needed, and facilitate the search work.
  • the location monitoring method of the present invention further includes the step of: S411:
  • the smart wearable device uses GPS, BDS, and/or GLONASS for positioning.
  • the present invention can turn on diversified satellite positioning when needed, and facilitate the search work.
  • the location monitoring method of the present invention further includes the step of: S420, wherein the smart wearable device performs mobile communication network positioning.
  • the present invention can also provide a wide range of positioning functions when the position range is far away, thereby facilitating confirmation of the search range.
  • the location monitoring method of the present invention further includes the steps of: S211, after transmitting the location distance normal information, causing the smart wearable device to sleep; S212 waking up the smart wearable device according to the preset sleep time, and performing handshake communication.
  • the present invention can maximize standby energy saving and has long-lasting standby characteristics.
  • the location monitoring method of the present invention further includes the step of: S021 setting the Sub-GHz wireless signal to the preset low frequency wireless signal.
  • the present invention selects the Sub-GHz wireless signal in the low-frequency wireless signal communication, and on the one hand, the positioning range of the present invention is confirmed to be less susceptible to building interference, and on the other hand, the interference of the wireless signal is facilitated.
  • the location monitoring method of the present invention further includes the steps of: S022 setting the applicable country region of the Sub-GHz wireless signal; and S023 setting the frequency of the Sub-GHz wireless signal according to the applicable country region set in step S021.
  • the present invention filters the frequency of available wireless signals according to the country where it is located, and is convenient to avoid interference of wireless signals.
  • the location monitoring method of the present invention further includes the following steps: S111: the smart wearable device sends a handshake request command; S112, the preset monitoring location center receives the handshake request command.
  • the present invention provides a simple handshake communication method that facilitates rapid response of the system.
  • the location monitoring method of the present invention further includes the steps of: S113, the preset monitoring location center sends a handshake feedback command; and S114, the smart wearable device receives the handshake feedback command.
  • the present invention provides an enhanced handshake communication method that facilitates accurate response of the system.
  • the location monitoring method of the present invention further includes the steps of: S115: the smart wearable device sends a sleep command; and S116, the preset monitoring location center receives the sleep command.
  • the present invention provides an enhanced handshake communication method, which on the one hand facilitates accurate response of the system and facilitates long-term use of the system.
  • the location monitoring method of the present invention further includes the steps of: S121, the preset monitoring location center sends a handshake request command; S122, the smart wearable device receives the handshake request make.
  • the location monitoring method of the present invention further includes the steps of: S123: the smart wearable device sends a handshake feedback command; and S124, the preset monitoring location center receives the handshake feedback command.
  • the location monitoring method of the present invention further includes the following steps: S125: the preset monitoring location center sends a sleep command; and S126, the smart wear device receives the sleep command.
  • the present invention provides a variety of diverse handshake communication methods that facilitate the applicability of the present invention.
  • the location monitoring method of the present invention further includes the step of: S010 setting the monitoring device, the mobile terminal device, or another smart wearable device as the preset monitoring location center.
  • the present invention can set the monitoring device, the mobile terminal device, or another smart wearable device as the center of the preset monitoring position, thereby improving the applicability of the present invention.
  • a fixed position monitoring device is set as a preset monitoring location center
  • the present invention is applicable to prisons, elderly homes, kindergartens and the like for monitoring the range of personnel activities.
  • a mobile terminal device is set as the center of the preset monitoring location
  • the present invention is suitable for guardians to prevent the elderly and children from being lost in a fixed place at home.
  • another smart wearable device is set as the center of the preset monitoring location
  • the present invention is applicable when participating in an activity in a public place.
  • the activity range monitoring of the present invention is centered on the center of the preset monitoring position, and the distance range forming a predetermined radius is circular, so that it has wide applicability.
  • the location monitoring method of the present invention further includes the step of: S040 setting the monitoring device, the mobile terminal device, or another smart wearable device as a monitoring information management center.
  • the present invention can set the monitoring device, the mobile terminal device, or another smart wearable device as the monitoring information management center.
  • the invention can set the preset monitoring location center as the monitoring information management center, or can set different monitoring information management centers.
  • the location distance normal/abnormal information and the location location information sent by the smart wearable device may be directly sent to the preset monitoring location center, or may be sent to the monitoring information management center. For example, when a child is abducted or the elderly is lost, the information is sent directly to the on-site guardian's mobile terminal device or smart wearable device, and the other family's mobile terminal device is notified, and the public missing population monitoring information management directly established to the police or social assistance agency is directly The center sends the message.
  • the information is straight It is sent to the monitoring location center of the prison, and all the prisoner's mobile terminal devices are notified, and the information is sent to the local police monitoring information management center. Therefore, the applicability of the present invention is enhanced.
  • the location monitoring method of the present invention further includes the step of: S500, the smart wearable device acquires current health data.
  • the position monitoring method of the present invention further includes the step of: S510 acquiring the amount of exercise, and/or sleep time, quality data.
  • the location monitoring method of the present invention further includes the step of: S520 issuing a help alert when the health data deviates from a preset normal range.
  • the present invention can also monitor the health information of the parties and provide a variety of health data monitoring methods depending on the situation.
  • the position monitoring method of the present invention is assisted in determining the state of the party, and the applicability of the present invention is enhanced.
  • the present invention also provides a smart wearable device with position monitoring, comprising a monitoring control module, a low frequency wireless signal communication module electrically connected to the monitoring control module, and a mobile communication module electrically connected to the monitoring control module; wherein: The low-frequency wireless signal communication module performs handshake communication with a preset low-frequency wireless signal preset with normal communication power under the control of the monitoring control module; the mobile communication module is controlled by the monitoring control module And transmitting a position distance normal information when the low frequency wireless signal communication module handshake communication succeeds; and sending the position distance abnormality information when the low frequency wireless signal communication module handshake communication fails.
  • the invention performs handshake communication by low frequency wireless signals, and can provide a position monitoring device that is not easily interfered by buildings.
  • the smart wearable device of the present invention further includes a setting module electrically connected to the monitoring control module, the setting module comprising a frequency setting sub-module configured to set a frequency of the low-frequency wireless signal of the low-frequency wireless signal communication module.
  • the setting module further includes a power setting sub-module, the power setting sub-module comprising: a distance setting unit, configured to set a position between the smart wearable device and the preset monitoring position center Range normal distance; distance/power conversion unit, electrically connected with the frequency setting sub-module and distance setting unit, setting sub-module setting according to frequency
  • the frequency, and the distance range set by the distance setting unit are normal distances, and the normal communication power is obtained by conversion.
  • the invention enables the smart wearable device to perform handshake communication with the preset monitoring position center with preset normal communication power, and can directly give a judgment of the position distance normal/abnormal according to the handshake communication success/failure. Therefore, it is not necessary to obtain accurate positioning in advance, and then calculate whether the monitoring distance is normal or not, which greatly improves the response speed of the monitoring feedback and the resource consumption of the monitoring system.
  • the low frequency wireless signal communication module increases the current communication.
  • the distance/power conversion unit when the low-frequency wireless signal communication module increases the current communication power handshake communication successfully, according to the frequency setting sub-module setting frequency and the increased current communication power The conversion obtains the current distance from the position between the center of the preset monitoring position.
  • the present invention can quickly respond to the current distance, help the guardian to quickly judge the severity of the situation, and facilitate the appropriate search and help-seeking solution at the first time.
  • the monitoring control module further includes a working mode switching sub-module;
  • the setting module further includes a monitoring mode setting sub-module, and setting a preset monitoring mode of the smart wearing device;
  • the preset monitoring mode set by the submodule is set according to the monitoring mode, and the working mode switching submodule controls the smart wearing device to enter a silent, help alert or hunt alarm working mode.
  • the monitoring mode setting sub-module further includes: a monitoring object setting unit, the monitoring object of the smart wearing device is set as a child, an elderly person, or a prisoner; the monitoring object/mode conversion unit, and The monitoring object setting unit is electrically connected, and the preset monitoring mode is set to a child monitoring, an elderly care or a prisoner tracking mode according to the monitoring object set by the monitoring object setting unit.
  • the present invention can provide a child custody, elderly care or prisoner tracking mode according to the monitored object for a child, an elderly person, or a prisoner.
  • the position range is outside the normal range, the corresponding entry is static.
  • Silent, help alert or hunt alert mode of operation Therefore, in the case of a child being abducted, the present invention provides a silent working mode to ensure the safety of the child to the greatest extent; and for the case of the elderly being lost, the present invention provides a help alert working mode, which can automatically broadcast the family contact information and improve the convenience of the elderly.
  • the present invention provide a mode of hunting and warning, on the one hand to remind innocent people to pay attention to safety, on the other hand to improve the convenience of hunting.
  • the smart wearable device of the present invention further includes an alarm module electrically connected to the monitoring control module, the alarm module including a flashing alarm sub-module, an audible alarm sub-module, and/or a vibration alarm sub-module; the flashing alarm sub-module
  • the audible alarm sub-module and/or the vibration alarm sub-module perform a flash, sound, and/or vibration alarm reminder when the low-frequency wireless signal communication module fails to communicate under the control of the monitoring control module.
  • the present invention can quickly prompt an abnormality when the position range is out of the normal range. It is convenient for the lost children and the elderly who have the ability to recognize to save themselves immediately.
  • the smart wearable device of the present invention further includes a positioning module electrically connected to the monitoring control module; the positioning module, under the control of the monitoring control module, performs a position when the low frequency wireless signal communication module fails to communicate with each other Positioning; the mobile communication module sends positioning location information under the control of the monitoring control module.
  • the positioning module further includes a satellite positioning sub-module, and the satellite positioning sub-module performs satellite control when the low-frequency wireless signal communication module fails to communicate under the control of the monitoring control module. Positioning.
  • the satellite positioning sub-module further includes a GPS unit, a BDS unit, and/or a GLONASS unit, and the GPS unit, the BDS unit, and/or the GLONASS unit are controlled by the monitoring control module.
  • the low frequency wireless signal communication module handshake communication fails, positioning is performed using GPS, BDS, and/or GLONASS.
  • the positioning module further includes a mobile communication network positioning submodule, and the mobile communication network positioning submodule fails to perform handshake communication when the low frequency wireless signal communication module is controlled under the control of the monitoring control module. At the time, the mobile communication network is positioned.
  • the present invention can also provide a wide range of positioning functions when the position range is far away, thereby facilitating expansion and confirmation of the search range. Enables precise positioning of diverse satellites when needed The search work is going on.
  • the monitoring control module further includes a sleep control sub-module, and the sleep control sub-module transmits the position distance when the low-frequency wireless signal communication module performs the handshake communication successfully.
  • the smart wearable device is controlled to sleep; and the smart wearable device is woken up according to the preset sleep time.
  • the present invention can maximize standby energy saving and has long-lasting standby characteristics.
  • the low frequency wireless signal communication module further includes a Sub-GHz communication submodule, and the Sub-GHz communication submodule performs the low frequency wireless signal communication using a Sub-GHz wireless signal.
  • the frequency setting sub-module further includes: a country local setting unit, an applicable country region in which the Sub-GHz wireless signal is set; a country region/frequency screening unit, and the country region setting The unit is electrically connected, and the frequency of setting the Sub-GHz wireless signal is screened according to the applicable country region set by the national regional setting unit.
  • the present invention selects a Sub-GHz wireless signal in low-frequency wireless signal communication, and selects the frequency of available wireless signals according to the country in which it is located, on the one hand, it contributes to the identification range of the present invention to be confirmed from building interference, and the other It is convenient to avoid interference from wireless signals.
  • the Sub-GHz communication sub-module further includes a sending unit, and the sending unit sends a handshake request command.
  • the Sub-GHz communication sub-module further includes a receiving unit, and the receiving unit receives a handshake feedback command.
  • the transmitting unit further sends a send sleep command.
  • the present invention provides a variety of various handshake communication devices that facilitate the applicability of the present invention.
  • the Sub-GHz communication sub-module further includes a receiving unit, and the receiving unit receives a handshake request command.
  • the Sub-GHz communication sub-module further includes a sending unit, and the sending unit sends a send handshake feedback command.
  • the receiving unit further receives the sleep command.
  • the present invention provides a variety of various handshake communication devices that facilitate the applicability of the present invention.
  • the setting module further includes a monitoring location center setting submodule electrically connected to the monitoring control module, and setting the monitoring device, the mobile terminal device, or another smart wearing device as the Presetting the monitoring location center; the monitoring control module controls the low frequency wireless signal communication module to perform handshake communication with the monitoring location center set by the monitoring location center setting submodule.
  • the setting module further includes a monitoring information management center setting sub-module, and is electrically connected to the monitoring control module, and the monitoring device, the mobile terminal device, or another smart wearing device is set to monitor An information management center; the monitoring control module controls the mobile communication module, and sends a position distance normal/abnormal information to a monitoring information management center set by the monitoring information management center setting submodule.
  • the smart wearable device of the present invention further includes a health data acquisition module, and is electrically connected to the monitoring control module, and obtains health data of the current user under the control of the monitoring control module.
  • the health data acquisition module further includes a motion amount acquisition submodule and/or a sleep data acquisition submodule; the motion amount acquisition submodule acquires motion amount data; and the sleep data acquisition submodule acquires sleep Time, quality data.
  • the monitoring control module controls the mobile communication module, and/or the alarm module issues a help alarm.
  • the present invention can also monitor the health information of the parties and provide a variety of health data monitoring devices depending on the situation.
  • the position monitoring device of the present invention is assisted in determining the state of the party, and the applicability of the present invention is enhanced.
  • the present invention also provides a mobile terminal for use with the smart wearable device of the present invention
  • the device includes a low frequency wireless signal communication module, and the low frequency wireless signal communication module and the smart wearable device perform handshake communication with a preset low frequency wireless signal.
  • the invention performs handshake communication by low frequency wireless signals, and can provide a position monitoring device that is not easily interfered by buildings.
  • the low frequency wireless signal communication module further includes a Sub-GHz communication submodule, and the Sub-GHz communication submodule performs the low frequency wireless signal communication using a Sub-GHz wireless signal.
  • the present invention selects the Sub-GHz wireless signal in the low-frequency wireless signal communication, on the one hand, the positioning range of the present invention is confirmed to be free from building interference, and on the other hand, the interference of the wireless signal is facilitated.
  • the Sub-GHz communication sub-module further includes a receiving unit that receives the handshake request command. Further, in the mobile terminal device of the present invention, the Sub-GHz communication sub-module further includes a transmitting unit that transmits a handshake handshake feedback command. Further, in the mobile terminal device of the present invention, the receiving unit further receives the sleep command.
  • the Sub-GHz communication sub-module further includes a transmitting unit that transmits a handshake request command. Further, in the mobile terminal device of the present invention, the Sub-GHz communication sub-module further includes a receiving unit, and the receiving unit receives a handshake feedback command. Further, in the mobile terminal device of the present invention, the transmitting unit further transmits a transmission sleep command.
  • the present invention provides a variety of various handshake communication devices that facilitate the applicability of the present invention.
  • the mobile terminal device of the present invention further includes a mobile communication module and a display module, wherein: the mobile communication module receives the location distance normal/abnormal information, the location location information, the health data information, and the And/or a health help alert; the display module is electrically connected to the mobile communication module, and displays position distance normal/abnormal information, location location information, health data information, and/or according to data received by the mobile communication module. Health help alert.
  • the mobile terminal device provided by the present invention has wide applicability.
  • the mobile terminal device of the present invention further includes an alarm module electrically connected to the mobile communication module, including a flashing alarm sub-module, an audible alarm sub-module, and/or a vibration alarm sub-module; when the mobile communication module The flash alarm sub-module, the audible alarm sub-module, and/or the vibration alarm sub-module, when receiving the position distance abnormality information and/or the health assistance alarm, perform a flash, sound, and/or vibration alarm reminder.
  • an alarm module electrically connected to the mobile communication module, including a flashing alarm sub-module, an audible alarm sub-module, and/or a vibration alarm sub-module; when the mobile communication module
  • the flash alarm sub-module, the audible alarm sub-module, and/or the vibration alarm sub-module when receiving the position distance abnormality information and/or the health assistance alarm, perform a flash, sound, and/or vibration alarm reminder.
  • the present invention can quickly prompt an abnormality when the position range is out of the normal range. It is easy to carry out search work immediately.
  • the present invention also provides a monitoring device for use with the smart wearable device of the present invention, comprising a low frequency wireless signal communication module, and the low frequency wireless signal communication module and the smart wearable device perform handshake communication with a preset low frequency wireless signal.
  • the invention performs handshake communication by low frequency wireless signals, and can provide a position monitoring device that is not easily interfered by buildings.
  • the low frequency wireless signal communication module further includes a Sub-GHz communication submodule, and the Sub-GHz communication submodule performs the low frequency wireless signal communication using a Sub-GHz wireless signal.
  • the present invention selects the Sub-GHz wireless signal in the low-frequency wireless signal communication, on the one hand, the positioning range of the present invention is confirmed to be free from building interference, and on the other hand, the interference of the wireless signal is facilitated.
  • the Sub-GHz communication sub-module further includes a receiving unit, and the receiving unit receives the handshake request command. Further, in the monitoring apparatus of the present invention, the Sub-GHz communication sub-module further includes a transmitting unit, and the transmitting unit sends a sending handshake feedback command. Further, in the monitoring apparatus of the present invention, the receiving unit further receives the sleep command.
  • the Sub-GHz communication sub-module further includes a transmitting unit, and the transmitting unit sends a handshake request command. Further, in the monitoring apparatus of the present invention, the Sub-GHz communication sub-module further includes a receiving unit, and the receiving unit receives the handshake feedback command. Further, in the monitoring apparatus of the present invention, the transmitting unit further transmits a send sleep command.
  • the present invention provides a variety of various handshake communication devices to facilitate the improvement of the present invention. Use sex.
  • the monitoring apparatus of the present invention further includes a network communication module and a display module, wherein: the network communication module receives the position distance normal/abnormal information, the location location information, the health data information, and the And a health help alert; the display module is electrically connected to the network communication module, and displays position distance normal/abnormal information, location location information, health data information, and/or health according to data received by the network communication module. Help alert.
  • the monitoring device provided by the present invention has wide applicability.
  • the monitoring apparatus of the present invention further includes an alarm module electrically connected to the network communication module, including a flashing alarm sub-module, an audible alarm sub-module, and/or a vibration alarm sub-module; when the network communication module receives The flashing alarm sub-module, the audible alarm sub-module, and/or the vibration alarm sub-module alert the flash, sound, and/or shock alarms to the location distance anomaly information and/or the health assistance alert.
  • an alarm module electrically connected to the network communication module, including a flashing alarm sub-module, an audible alarm sub-module, and/or a vibration alarm sub-module; when the network communication module receives The flashing alarm sub-module, the audible alarm sub-module, and/or the vibration alarm sub-module alert the flash, sound, and/or shock alarms to the location distance anomaly information and/or the health assistance alert.
  • the present invention can quickly prompt an abnormality when the position range is out of the normal range. It is easy to carry out search work immediately.
  • the invention relates to a position monitoring method for applying low frequency wireless signals and a corresponding smart wearing device, mobile terminal device and monitoring device.
  • a method of automatic location tracking based on Sub_Ghz technology is proposed. And using this method to propose a device for the mother and daughter bracelet.
  • the bracelet not only has health data statistics functions such as step counting, sleep time, but also anti-lost and automatic position tracking. This bracelet can be worn by children or adults who are easily lost. When their range of motion leaves a certain range, the position automatic tracking function is turned on, and the position of the bracelet is sent to the already set host in real time. It has the advantages of being less susceptible to building interference, quick response, safe and convenient, accurate search, long-lasting standby, and wide application.
  • FIG. 1 is a step diagram of a position monitoring method according to an embodiment of the present invention.
  • FIG. 2 is a schematic view of a position monitoring method of the present invention
  • FIG. 3 is a flow chart showing a method of setting a position monitoring method according to another embodiment of the present invention.
  • Figure 4 is a flow chart showing a position monitoring method according to still another embodiment of the present invention.
  • Figure 5 is a flow chart showing a position monitoring method according to still another embodiment of the present invention.
  • Figure 6 is a step diagram of a positioning method according to still another embodiment of the present invention.
  • Figure 7 is a block diagram showing a method of setting a position monitoring method according to still another embodiment of the present invention.
  • Figure 8 is a step diagram of a positioning method according to still another embodiment of the present invention.
  • Figure 9 is a step diagram of a positioning method according to still another embodiment of the present invention.
  • FIG. 10 is a schematic diagram of a handshake communication method of a positioning method according to still another embodiment of the present invention.
  • FIG. 11 is a block diagram showing another handshake communication method of a positioning method according to still another embodiment of the present invention.
  • Figure 12 is a step diagram of a positioning method according to still another embodiment of the present invention.
  • FIG. 13 is a schematic structural diagram of a smart wearable device according to an embodiment of the present invention.
  • FIG. 14 is a schematic diagram showing the structure of a setting module of a smart wearable device according to an embodiment of the present invention.
  • FIG. 15 is a schematic diagram showing the structure of a mobile terminal device according to an embodiment of the present invention.
  • Figure 16 is a block diagram showing the structure of a monitoring apparatus according to an embodiment of the present invention.
  • Monitoring control module 160 sleep control sub-module 162, working mode switching sub-module 163;
  • Low frequency wireless signal communication module 110 Sub-GHz communication sub-module 119, transmitting unit 111, receiving unit 114;
  • Positioning module 140 satellite positioning sub-module 141, GPS unit 147, BDS unit 148, GLONASS unit 149, mobile communication network positioning sub-module 142;
  • Health data acquisition module 150 motion quantity acquisition sub-module 151, G-sensor unit 155, sleep time / quality sub-module 152;
  • Low frequency wireless signal communication module 210 Sub-GHz communication sub-module 219, transmitting unit 213, receiving unit 212;
  • Alarm module 270 flash sub-module 271, sound sub-module 272, vibration sub-module 273;
  • Low frequency wireless signal communication module 310 Sub-GHz communication sub-module 319, transmitting unit 313, receiving unit 312;
  • Mobile communication module 320 display module 330;
  • the alarm module 370 The alarm module 370, the flash sub-module 371, the sound sub-module 372, and the vibration sub-module 373.
  • a location monitoring method based on the smart wearable device 100 includes the steps of: S100 smart wearable device 100 and preset monitoring location center to preset preset low frequency wireless of normal communication power.
  • the signal performs handshake communication; when the handshake communication is successful, step S200 is performed to send the location distance normal information; when the handshake communication fails, step S300 is performed to send the location distance abnormality information.
  • FIG 2 there is shown a schematic diagram of a position monitoring method of the present invention.
  • a schematic is used for this example.
  • both the young child and the mother wear smart wearable devices, each wearing a smart bracelet.
  • A is the position of the "mother” bracelet
  • B is the safe range for the "child” bracelet.
  • the location monitoring method of this embodiment further includes the step S020 of setting the frequency of the low frequency wireless signal.
  • handshake communication by low frequency wireless signals is mainly due to low frequency wireless signals being relatively unaffected by buildings due to relatively high frequency wireless signals.
  • the high-frequency wireless signal referred to in the present invention mainly refers to a wireless signal of 2.4 GHz or higher (including 2.4 GHz), and the low-frequency wireless signal of the present invention refers to a wireless signal of 2.4 GHz or less (excluding 2.4 GHz).
  • Handshake communication through low-frequency wireless signals can provide a position monitoring method that is less susceptible to building interference.
  • it can reach about three or four hundred meters, so that the range of activities of children can be minimized.
  • FIG. 3 there is shown a process diagram of a method of setting a position monitoring method according to another embodiment of the present invention.
  • the same position monitoring step portions as those of the above embodiment are not repeated.
  • step S020 further comprises the step of: S021 setting the Sub-GHz wireless signal to the preset low frequency wireless signal.
  • the frequency band of 1 GHz or less is called “Sub-GHz", and is suitable for applications with long transmission distance, low power consumption, low data rate, and small amount of transmitted data.
  • the wavelength is inversely proportional to the frequency, and waveforms with longer wavelengths are more likely to travel over long distances. Therefore, Sub-Ghz RF technology is more advantageous in terms of long-distance communication or wall penetration capability and low power consumption.
  • this long-wavelength long-distance propagation technique can well ensure the safe range of motion of the mother-child wristband.
  • Sub-GHz varies in different countries or regions.
  • the embodiment further includes the steps of: S022 setting the applicable country region of the Sub-GHz wireless signal; S023 setting the frequency of the Sub-GHz wireless signal according to the applicable country region set in step S021.
  • the frequency of the Sub-GHz wireless signal is set to 902-928 MHz; in China, the Sub-GHz wireless signal of 470-517 and 779-787 MHz is used, and the Sub-GHz wireless signal of 470-517 MHz is mainly by the state.
  • the present invention provides an example of screening frequencies of available wireless signals based on the country in which they are located.
  • the position monitoring method of the embodiment further includes the steps of: S031 setting a normal range of the position range between the smart wearable device 100 and the preset monitoring position center; S032 setting according to the frequency set in step S020, and step S031
  • the position range is normal distance, and the normal communication power is set.
  • the invention enables the smart wearable device 100 to perform handshake communication with the preset monitoring position center with preset normal communication power, and can directly give a judgment of the position distance normal/abnormal according to the handshake communication success/failure. Therefore, it is not necessary to obtain accurate positioning in advance, and then calculate whether the monitoring distance is normal or not, which greatly improves the response speed of the monitoring feedback and the resource consumption of the monitoring system.
  • Fig. 4 is a flow chart showing a position monitoring method according to still another embodiment of the present invention. In the present embodiment, the same steps of the setting method steps as those of the above embodiment are not repeated.
  • a location monitoring method based on the smart wearable device 100 includes the following steps: S100: The smart wearable device 100 performs handshake communication with a preset low-frequency wireless signal preset with normal communication power by a preset monitoring location center; When the handshake communication is successful, step S200 is performed to send the location distance normal information; when the handshake communication fails, steps S300 and S321 are performed; S300 sends the location distance abnormality information; S321 when the preset normal communication power is less than the maximum communication power, High current communication power and handshake communication; when the handshake communication is successful in step S321, step S322 is performed according to the frequency of the low frequency wireless signal set in step S020 and the current communication power adjusted in step S321 to obtain the smart wear. The current distance between the device 100 and the center of the preset monitoring location.
  • the maximum communication distance of the Sub-GHz wireless signal can exceed 1 km. Therefore, the present invention is When the position range is beyond the normal range, you can quickly respond to the current distance, help the guardian to quickly determine the severity of the situation, and facilitate the appropriate search and help plan in the first time.
  • Fig. 5 is a flow chart showing a position monitoring method according to still another embodiment of the present invention.
  • Figure 6 is a step diagram of a positioning method in accordance with still another embodiment of the present invention.
  • the location monitoring method of the embodiment includes the following steps: S100: The smart wearable device 100 performs handshake communication with the preset low-frequency wireless signal of the preset communication power center by using the preset low-frequency wireless signal; when the handshake communication is successful, the step S200 is performed to send the position distance normally. If the handshake communication fails, step S300 is performed to send the location distance abnormality information; in S400, the smart wearable device 100 performs location location and sends the location location information.
  • the step S400 further includes the step of: S410, the smart wearable device 100 performs satellite positioning.
  • the location monitoring method of the embodiment further includes the following steps: S411:
  • the smart wearable device 100 uses a GPS (Global Positioning System), a BDS (BeiDou Navigation Satellite System, and/or a Beidou satellite navigation system), and/or GLONASS (GLOBAL NAVIGATION SATELLITE SYSTEM, global satellite navigation system) is positioned.
  • GPS Global Positioning System
  • BDS BeiDou Navigation Satellite System
  • Beidou satellite navigation system Beidou satellite navigation system
  • GLONASS GLOBAL NAVIGATION SATELLITE SYSTEM, global satellite navigation system
  • the present invention can open one or more satellite positioning modes for precise positioning when needed, and facilitate the search work.
  • the location monitoring method of the embodiment further includes the following steps: S420: The smart wearable device 100 performs mobile communication network positioning.
  • satellite positioning and mobile communication network positioning can be used alternatively or together.
  • the location monitoring method of this embodiment further includes the following steps: S425: When the positioning succeeds, the current positioning location information is sent.
  • the location monitoring method of this embodiment further includes the step of: S430 displaying current positioning location information on the “mother” bracelet and/or the “sub” bracelet.
  • Fig. 7 is a flow chart showing the setting method of the position monitoring method according to still another embodiment of the present invention.
  • Figure 8 is a step diagram of a positioning method in accordance with still another embodiment of the present invention.
  • the steps of the step of the position monitoring method and the steps of the setting method are the same as those of the above several embodiments.
  • the location monitoring method of this embodiment further includes the step of: S010, setting the monitoring device 300, the mobile terminal device 200, or another smart wearable device 100 as the preset monitoring location center.
  • the present invention can set the monitoring device 300, the mobile terminal device 200, or another smart wearable device 100 as the center of the preset monitoring position, thereby improving the applicability of the present invention.
  • a fixed position monitoring device 300 is set as a preset monitoring position center
  • the present invention is applicable to a prison, a nursing home, a kindergarten, and the like for monitoring the range of personnel activities.
  • a mobile terminal device 200 is set as the center of the preset monitoring location, the present invention is suitable for guardians to prevent the elderly and children from being lost in a fixed place at home.
  • the present invention is applicable when participating in an activity in a public place.
  • the activity range monitoring of the present invention is centered on the center of the preset monitoring position, and the distance range forming a predetermined radius is circular, so that it has wide applicability.
  • the location monitoring method of this embodiment further includes the step of: S040, setting the monitoring device 300, the mobile terminal device 200, or another smart wearable device 100 as a monitoring information management center.
  • the present invention can set the preset monitoring location center as the monitoring information management center, for example, the "mother" wristband worn by the mother is set as the monitoring information management center; or another monitoring information management center differently, such as the father's mobile. Communication terminal.
  • the location distance normal/abnormal information and the location location information sent by the smart wearable device 100 may be directly sent to the preset monitoring location center, or may be sent to the monitoring information management center.
  • the monitoring information management center sends the information.
  • the prisoner escapes the information is sent directly to the prison’s monitoring location center, while The mobile terminal device 200 of all the prison guards is notified, and the information is transmitted to the monitoring information management center of the local police. Therefore, the applicability of the present invention is enhanced.
  • the location monitoring method of the embodiment further includes the steps of: S051 setting the monitoring object of the smart wearable device 100 as a child, an elderly person, or a prisoner; S052 setting the preset monitoring according to the monitoring object set in step S051.
  • the mode is child custody, elderly care or prisoner tracking mode.
  • the present invention can provide a child custody, elderly care or prisoner tracking mode according to the monitored object for a child, an elderly person, or a prisoner.
  • the location monitoring method of the embodiment further includes the steps of: S311 acquiring the preset monitoring mode of the smart wearable device 100; S312, according to the preset monitoring mode acquired in step S311, causing the smart wearable device 100 to enter silence and seek help. Alert or hunt alert mode of operation.
  • the smart wearable device 100 accordingly enters a silent, help alert, or hunt alert mode of operation.
  • the smart wearable device 100 provides a silent working mode to ensure the safety of the child to the greatest extent and to avoid alarming the criminal.
  • the present invention provides a help alert mode of operation for situations in which the elderly are lost.
  • the home address and family contact information can be automatically broadcasted to improve the convenience of the elderly and the convenience of the good people.
  • the location monitoring method of this embodiment further includes the step of: S313 performing a flash, sound, and/or vibration alarm reminder.
  • the present invention can quickly prompt an abnormality when the position range is out of the normal range. It is easy to carry out search work immediately. At the same time, it is also convenient for lost children and elderly people with recognition ability to save themselves immediately. Among them, in the silent working mode, only the vibration alarm reminder or no alarm reminder is performed.
  • Figure 9 is a step diagram of a positioning method in accordance with still another embodiment of the present invention.
  • the same part of the position monitoring method steps and the alarm method steps as those of the above embodiments Part, the setting method steps are not repeated.
  • the location monitoring method of the embodiment further includes the steps of: S211, after transmitting the location distance normal information, causing the smart wearable device 100 to sleep; S212 waking up the smart wearable device 100 according to the preset sleep time, and performing handshake communication. .
  • the present invention can maximize standby energy saving and has long-lasting standby characteristics.
  • FIG. 10 is a block diagram of a handshake communication method of a positioning method according to still another embodiment of the present invention
  • FIG. 11 is a block diagram of another handshake communication method of the positioning method according to still another embodiment of the present invention.
  • the same parts of the position monitoring method step portion, the alarm method step portion, the sleep method step portion, and the setting method step portion are the same as those of the above embodiments.
  • the location monitoring method of this embodiment uses the following handshake communication method, including the following steps: S111: The smart wearable device 100 sends a handshake request command; S112, the preset monitoring location center receives the handshake request command.
  • the method further includes the following steps: S113: The preset monitoring location center sends a handshake feedback command; and S114, the smart wearable device 100 receives the handshake feedback command.
  • the method further includes the steps of: S115, the smart wearable device 100 sends a sleep command; and S116, the preset monitoring location center receives the sleep command.
  • the location monitoring method in this embodiment uses another handshake communication method, including the following steps: S121: The preset monitoring location center sends a handshake request command; S122: The smart wearable device 100 receives the handshake request command.
  • the method further includes the steps of: S123: the smart wearable device 100 sends a handshake feedback command; S124, the preset monitoring location center receives the handshake feedback command.
  • the method further includes the following steps: S125: the preset monitoring location center sends a sleep command; and S126, the smart wearable device 100 receives the sleep command.
  • Figure 12 is a step diagram of a positioning method in accordance with still another embodiment of the present invention.
  • the same parts of the position monitoring method step portion, the alarm method step portion, the sleep method step portion, and the setting method step portion are the same as those of the above embodiments.
  • the location monitoring method of the embodiment further includes the following steps: S500: The smart wearable device 100 acquires current health data.
  • step S500 further comprises the step of: S510 acquiring the amount of exercise, and/or sleep time, quality data.
  • the location monitoring method of this embodiment further includes the step of: S520 issuing a help alert when the health data deviates from a preset normal range.
  • the present invention can also monitor the health information of the parties and provide a variety of health data monitoring methods depending on the situation.
  • the position monitoring method of the present invention is assisted in determining the state of the party, and the applicability of the present invention is enhanced.
  • FIG. 13 is a schematic diagram showing the structure of a smart wearable device 100 according to an embodiment of the present invention.
  • the smart wearable device 100 with position monitoring includes a monitoring control module 160, a low frequency wireless signal communication module 110 electrically connected to the monitoring control module 160, and an electrical connection with the monitoring control module 160.
  • Mobile communication module 120 includes a monitoring control module 160, a low frequency wireless signal communication module 110 electrically connected to the monitoring control module 160, and an electrical connection with the monitoring control module 160.
  • the monitoring control module 160 controls the low-frequency wireless signal communication module 110 to perform handshake communication with a preset low-frequency wireless signal that presets normal communication power with a preset monitoring position center.
  • the monitoring control module 160 controls the mobile communication module 120 to transmit the location distance normal information; when the low-frequency wireless signal communication module 110 fails to communicate with the handshake, the The monitoring control module 160 controls the mobile communication module 120 to transmit location distance abnormality information.
  • the low frequency wireless signal communication module 110 further includes a Sub-GHz communication submodule 119, and the Sub-GHz communication submodule 119 performs the low frequency wireless signal communication using a Sub-GHz wireless signal.
  • the Sub-GHz communication sub-module 119 further includes a sending unit 111 and a receiving unit 114.
  • the monitoring control module 160 further includes a sleep control sub-module 162.
  • the sleep control sub-module 162 controls the smart wearable device 100 to sleep after the monitoring control module 160 controls the mobile communication module 120 to send the position distance normal information. And waking up the smart wearable device 100 according to the preset sleep time.
  • the smart wearable device 100 of the present invention further includes the monitoring control module 160 An electrically connected positioning module 140.
  • the monitoring control module 160 controls the positioning module 140 to perform position positioning.
  • the monitoring control module 160 controls the mobile communication module 120 to send positioning location information.
  • the positioning module 140 further includes a satellite positioning sub-module 141.
  • the satellite positioning sub-module 141 further includes a GPS unit 147, a BDS unit 148, and/or a GLONASS unit 149.
  • the GPS unit 147, the BDS unit 148, and/or the GLONASS unit 149 are controlled by the monitoring control module 160 using GPS, BDS, and/or GLONASS. Positioning.
  • the smart wearable device 100 of the embodiment further includes an alarm module 170 electrically connected to the monitoring control module 160.
  • the alarm module 170 includes a flashing alarm sub-module 171, an audible alarm sub-module 172, and/or a vibration alarm sub-module 173.
  • the flashing alarm sub-module 171, the audible alarm sub-module 172, and/or the vibration alarm sub-module 173 are under the control of the monitoring control module 160, and when the low-frequency wireless signal communication module 110 fails to communicate with each other, flashing and sounding are performed. , and / or shock alarm reminders.
  • the smart wearable device 100 of the embodiment further includes a health data acquisition module 150 that is electrically connected to the monitoring control module 160, and obtains health data of the current user under the control of the monitoring control module 160.
  • a health data acquisition module 150 that is electrically connected to the monitoring control module 160, and obtains health data of the current user under the control of the monitoring control module 160.
  • the monitoring control module 160 controls the mobile communication module 120, and/or the alarm module 170 to issue a help alert.
  • the health data acquisition module 150 further includes an exercise amount acquisition sub-module 151 and/or a sleep data acquisition sub-module 152.
  • the exercise amount acquisition sub-module 151 further includes a G-Sensor unit 155.
  • the smart wearable device 100 of the embodiment further includes a setting module 190 electrically connected to the monitoring control module 160.
  • FIG. 14 it is a schematic structural diagram of a setting module 190 of the smart wearable device 100 of the present embodiment.
  • the setting module 190 includes a frequency setting sub-module 192 and a power setting sub-module 193 for setting the frequency and power of the low-frequency wireless signal of the low-frequency wireless signal communication module 110.
  • the frequency setting sub-module 192 further includes: a country local setting unit 181 and a country area/frequency screening unit 182.
  • the country local setting unit 181 sets the applicable country region of the Sub-GHz wireless signal.
  • the country area/frequency screening unit 182 filters and sets the frequency of the Sub-GHz wireless signal according to the applicable country area set by the country area setting unit 181.
  • the power setting sub-module 193 includes: a distance setting unit 183 and a distance/power conversion unit 184.
  • the distance setting unit 183 sets a normal range of the position range between the smart wearable device 100 and the preset monitoring position center.
  • the distance/power conversion unit 184 converts the normal communication power according to the frequency set by the frequency setting sub-module 192 and the normal range of the position range set by the distance setting unit 183.
  • the monitoring control module 160 controls the low frequency wireless signal communication module 110. , increase the current communication power and perform handshake communication again.
  • the distance/power conversion unit 184 converts the frequency set by the frequency setting sub-module 192 and the current communication power of the height-adjusted The preset monitors the current distance between the locations of the locations.
  • the setting module 190 further includes a monitoring location center setting sub-module 191, and the monitoring device 300, the mobile terminal device 200, or another smart wearing device 100 is set as the preset monitoring location center.
  • the setting module 190 further includes a monitoring information management center setting sub-module 194, and the preset monitoring location center may be set as a monitoring information management center, or another different monitoring information management center may be set.
  • the setting module 190 further includes a monitoring mode setting sub-module 195.
  • the monitoring mode setting sub-module 195 further includes: a monitoring object setting unit 185 and a monitoring object/mode conversion unit 186.
  • the monitoring object setting unit 185 sets the smart wearable device 100
  • the monitoring target is children, the elderly, or prisoners.
  • the monitoring object/mode switching unit 186 sets the preset monitoring mode to the child monitoring, the elderly care or the prisoner tracking mode according to the monitoring object set by the monitoring object setting unit 185.
  • the monitoring control module 160 of the embodiment further includes an operating mode switching sub-module 163.
  • the working mode switching sub-module 163 controls the smart wearable device 100 to enter a silent and help-seeking alarm according to the preset monitoring mode set by the monitoring mode setting sub-module 195. Or hunt for the alarm mode of operation.
  • FIG. 15 is a block diagram showing the configuration of a mobile terminal device 200 according to an embodiment of the present invention.
  • a mobile terminal device 200 according to the present embodiment is used in conjunction with the smart wearable device 100 of the foregoing embodiment.
  • the mobile terminal device 200 includes a low frequency wireless signal communication module 210.
  • the low frequency wireless signal communication module 210 and the smart wearable device 100 perform handshake communication with a preset low frequency wireless signal.
  • the low frequency wireless signal communication module 210 further includes a Sub-GHz communication submodule 219, and the Sub-GHz communication submodule 119 performs the low frequency wireless signal communication using a Sub-GHz wireless signal.
  • the Sub-GHz communication sub-module 119 further includes a sending unit 213 and a receiving unit 212.
  • the sending unit 111 of the smart wearable device 100 sends a handshake request command; the receiving unit 212 of the mobile terminal device 200 receives the handshake request command.
  • the sending unit 213 of the mobile terminal device 200 sends a handshake feedback command; the receiving unit 114 of the smart wearable device 100 receives the handshake feedback command.
  • the sending unit 111 of the smart wearable device 100 sends a sleep command; the receiving unit 212 of the mobile terminal device 200 receives the sleep command.
  • the sending unit 213 of the mobile terminal device 200 sends a handshake request command; the receiving unit 114 of the smart wearable device 100 receives the handshake request command.
  • the sending unit 111 of the smart wearable device 100 sends a handshake feedback command; the mobile terminal The receiving unit 212 of the device 200 receives the handshake feedback command.
  • the sending unit 213 of the mobile terminal device 200 transmits a sleep command; the receiving unit 114 of the smart wearable device 100 receives the sleep command.
  • the mobile terminal device 200 of this embodiment further includes a mobile communication module 220 and a display module 230.
  • the mobile communication module 220 receives the location distance normal/abnormal information, the location location information, the health data information, and/or the health help alert sent by the smart wearable device 100.
  • the display module 230 displays the location distance normal/abnormal information, the location location information, the health data information, and/or the health help alert according to the data received by the mobile communication module 220.
  • the mobile terminal device 200 of the embodiment further includes an alarm module 270
  • the alarm module 270 includes a flashing alarm sub-module 271, an audible alarm sub-module 272, and/or a vibration alarm sub-module 273.
  • the mobile communication module 220 receives the position distance abnormality information and/or the health assistance alarm
  • the flashing alarm sub-module 271, the audible alarm sub-module 272, and/or the vibration alarm sub-module 273 perform flash, sound, and / or shock alarm reminder.
  • Figure 16 is a block diagram showing the structure of a monitoring device 300 according to an embodiment of the present invention.
  • a monitoring device 300 according to the present embodiment is used in conjunction with the smart wearing device 100 of the previous embodiment.
  • the monitoring device 300 includes a low frequency wireless signal communication module 310.
  • the low frequency wireless signal communication module 310 and the smart wearable device 100 perform handshake communication with a preset low frequency wireless signal.
  • the low frequency wireless signal communication module 310 further includes a Sub-GHz communication submodule 319, and the Sub-GHz communication submodule 319 performs the low frequency wireless signal communication using a Sub-GHz wireless signal.
  • the Sub-GHz communication sub-module 319 further includes a sending unit 313 and a receiving unit 312.
  • the sending unit 111 of the smart wearable device 100 sends a handshake request command; the receiving unit 312 of the monitoring device 300 receives the handshake request command.
  • the sending unit 313 of the monitoring device 300 sends a handshake feedback command; the receiving unit 114 of the smart wearable device 100 receives the handshake feedback command.
  • the smart wearable device 100 The transmitting unit 111 transmits a sleep command; the receiving unit 312 of the monitoring device 300 receives the sleep command.
  • the sending unit 313 of the monitoring apparatus 300 sends a handshake request command; the receiving unit 114 of the smart wearable device 100 receives the handshake request command.
  • the sending unit 111 of the smart wearable device 100 sends a handshake feedback command; the receiving unit 312 of the monitoring device 300 receives the handshake feedback command.
  • the sending unit 313 of the monitoring device 300 sends a sleep command; the receiving unit 114 of the smart wearable device 100 receives the sleep command.
  • the monitoring apparatus 300 of the embodiment further includes a mobile communication module 320 and a display module 330.
  • the mobile communication module 320 receives the location distance normal/abnormal information, the location location information, the health data information, and/or the health help alert sent by the smart wearable device 100.
  • the display module 330 displays the location distance normal/abnormal information, the location location information, the health data information, and/or the health help alert according to the data received by the mobile communication module 320.
  • the monitoring device 300 of the embodiment further includes an alarm module 370, which includes a flashing alarm sub-module 371, an audible alarm sub-module 372, and/or a vibration alarm sub-module 373.
  • an alarm module 370 which includes a flashing alarm sub-module 371, an audible alarm sub-module 372, and/or a vibration alarm sub-module 373.
  • the flashing alarm sub-module 371, the audible alarm sub-module 372, and/or the vibration alarm sub-module 373 perform flash, sound, and / or shock alarm reminder.
  • the smart wearable device 100 of the present invention can be used in conjunction with the monitoring device 300, the mobile terminal device 200, or another smart wearable device 100.
  • This application example proposes a method for automatic position tracking based on Sub_Ghz technology, and uses this method to provide a device for a child wristband.
  • the bracelet not only has health data statistics functions such as step counting, sleep time, but also anti-lost and automatic position tracking.
  • This bracelet can be worn by children or adults who are easily lost.
  • the position automatic tracking function is turned on, and the position of the bracelet is sent to the already set host in real time.
  • the program makes full use of the electronic wristband to accurately position the child in terms of protecting the child from loss or finding the child's position.
  • There is a handshake protocol between the mother and child bracelets so the pairing between the mother and the child bracelets should be realized at the beginning of the system, so as to ensure normal handshake communication between the subsequent mother and child.
  • the activity of the sub-loop user is not limited within a certain range, but when the range of the sub-ring is beyond the range of the female bracelet, the mother bracelet can clearly understand the activity of the sub-ring. Location and related circumstances.
  • the invention can conveniently prevent the child from being lost without restricting the scope of the child's activity. If the child is lost, the detailed activity and the activity position of the child can be accurately understood through the device, and the wristband also has exercise data. Statistics and other functions.
  • the present invention can also be applied to elderly people and the like who have certain obstacles.
  • the range of this activity is adjustable, and the adjustment of the range of motion can be achieved by adjusting the power received by Sub_Ghz.
  • the intelligent sub-Ghz technology-based sub-female electronic wristband proposed by the invention not only has the function of an ordinary electronic wristband, but also combines the mobile internet, utilizes wireless network transmission technology, satellite positioning technology and mobile cellular network to achieve precise positioning and position tracking, Make sure that the elderly or the elderly who have lost some ability are prevented from being lost or looking for.
  • the hardware design is different.
  • the hardware modules include Sub_Ghz transceiver module, motor, and G-Sensor.
  • the hardware modules include Sub_Ghz transceiver module, motor, and G-Sensor.
  • the hardware modules include Sub_Ghz transceiver module, motor, and G-Sensor.
  • the sub-handle there are mobile cellular transceiver modules, satellite positioning module, Sub_Ghz transceiver module and G-Sensor.
  • Sub_Ghz transceiver module it is used for handshake communication between the mother and the child to ensure that the "child" bracelet is within the "female" monitoring range; for the motor, when the sub-arm ring is out of the active range of the female hand ring, the female hand can be reminded
  • the ring user immediately searches for the environment; for the mobile cellular transceiver module, it is mainly used for the location information location and location information transmission of the sub-handle in a complex building environment; for the satellite positioning module, it is used as a sub-handle ring.
  • Position-accurate positioning; for G-Sensor it is the health data statistics such as the amount of exercise of the common bracelet.
  • Sub-Ghz wireless transceiver modules such as the Silicon Labs Si446x EZRadioPRO IC, it supports a frequency range from 119MHz to 1050MHz and supports a link budget of up to 146dB.
  • the EZRadioPRO chip supports dual antennas and integrates antenna diversity logic algorithms within the chip.
  • the handshake protocol can be successfully performed between the mother and the wristband. If the handshake is successful, the transceiver module in the mother-child wristband enters the sleep state, when the time is long. After the system is preset, the system is activated, the handshake is repeated, and so on.
  • the sub-ring first sends a specific request command through the Sub_Ghz module.
  • the master ring system confirms, and then sends a confirmation reply command through Sub_Ghz, when the sub-ring receives the command. After that, it is confirmed that the range of the activity of the sub-ring is within the range of the monitoring of the female hand ring.
  • the child ring issues a sleep command to the mother ring, and then the system enters a sleep state; when the mother hand ring receives an instruction to enter the sleep state, The female bracelet also goes to sleep.
  • the handshake is considered to have failed.
  • the sub-handle has been separated from the monitoring range of the mother hand ring, and the system automatically turns on the position tracking function.
  • the sub-ring does not make any sensory movements such as sounds to prevent the trafficker from being alarmed when the child is turned.
  • the location tracking function it is realized by the dual protection of mobile cellular network and satellite positioning.
  • satellite positioning is used to achieve precise positioning.
  • the system can pass the city.
  • Medium-dense cellular networks enable precise positioning.
  • the sub-ring can get the geographical location information in real time, and the system sends the geographical location to the host set in advance by the system through the network, so that the sub-loop can be known in real time. The location of the event.
  • the handshake is also considered to have failed.
  • the female hand ring will cause the motor of the system to vibrate, reminding the user of the female hand ring to personally monitor whether the sub-arm ring is within the activity monitoring range.
  • the G-Sensor can be used to calculate the amount of exercise, sleep time and quality.
  • the two bracelets use the Sub_Ghz technology to perform handshakes at specific times. After the handshake is completed, if the handshake is successful, the system will sleep again and wait for the next handshake time. If the handshake is unsuccessful, the mother and child bracelets simultaneously turn on the position automatic tracking mode. For the mother bracelet, the first thing to remind the user of the mother ring is to look for it in the immediate surroundings. For the sub-handle, the system automatically turns on the position automatic mode in the silent state, and simultaneously transmits the position information to the previously set host, so that the relatives can find it accurately.
  • the automatic tracking electronic wristband of the anti-lost position based on the Sub_Ghz technology of the embodiment has the following advantages compared with the prior art electronic wristband:
  • Sub-GHz transceivers such as the wireless module Silicon Labs Si446x EZRadioPRO IC, require only 50nA of current consumption in sleep mode with a maximum link budget of 146dB. This low power sleep power can greatly maintain battery life.
  • the invention sneaked into the dual positioning of the satellite positioning system and the wireless cellular network, and can ensure accurate position automatic tracking. With double guarantees, accurate positional automatic tracking can be achieved, whether in the open wilderness or in complex or indoor buildings.
  • the invention is convenient to use, and does not need to be equipped with anti-lost devices for each pair of shoes or each piece of clothes, which is convenient to use and convenient to replace.
  • a bracelet it is also possible to count health data such as the amount of exercise and sleep time of the user.

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Abstract

应用低频无线信号的位置监控设备,包括:以预设低频无线信号进行握手通信的低频无线信号通信模块;发送位置距离正常/异常信息的移动通信模块;进行闪光、声音、和/或震动警报提醒的报警模块。其中低频无线信号通信模块包括Sub-GHz通信子模块。还包括有根据频率设置子模块设置的频率,将距离设置单元设置的位置范围正常距离换算得到正常通信功率,或将调高的当前通信功率换算得到当前距离的距离/功率换算单元。还包括当所述低频无线信号通信模块握手通信失败时,使用GPS、BDS、GLONASS、和移动通信网络定位的定位模块。因此提供一种不易受建筑物干扰,且快速响应、安全便捷、精准搜寻、长效待命、广泛适用的位置监控设备。

Description

位置监控方法及智能穿戴装置、移动终端装置、监控装置 技术领域
本发明涉及位置监控领域,尤其是涉及一种应用低频无线信号的位置监控方法及相应的位置监控装置、移动终端和智能穿戴装置。
背景技术
电子手环作为可穿戴设备,近两年在市场上风生水起。目前,大多的电子手环大多都以计步、统计睡眠时间等人日常生活数据,从而给使用人提供日常的运动量作为平时运动的参考,这样在很大程度上提醒了人们多运动,以提高身体素质。目前,有部分手环可以检测人体心率或血压等指标,这样能让人更加精确地了解自身的身体状况。
时下,经常有报道孩子被拐或者老人走失,而亲属寻找这些走失者却要耗费巨大精力,即使如此,常常却寻而无果,造成家庭悲剧。老人走丢或小孩被拐,都是监护人疏漏造成,因此需要一种能解决这些问题的方案。
然而,在现有的各类位置监控方法中,均采用定位目标所在位置的方案,例如GPS、BDS、GLONASS等卫星定位方案,或基于移动通讯网络的移动通信网络定位方案,或利用WIFI、WIMAX信号的无线网络定位方案。以上方案皆易受建筑物干扰,卫星定位常在室内失效,无线网络定位常在室外失效,而移动通信网络定位在建筑物密集区域偏移严重。
因此,需要一种不易受建筑物干扰的位置监控方法。
发明内容
本发明提供的一个技术方案如下:
一种位置监控方法,包括步骤:S100智能穿戴装置与预设监控位置中心以预设正常通信功率的预设低频无线信号进行握手通信;当握手通信成功时,执行步骤S200发送位置距离正常信息;当握手通信失败时,执行步骤S300发送位置距离异常信息。
本发明通过低频无线信号进行握手通信,能提供一种不易受建筑物干扰的位置监控方法。
进一步,本发明的位置监控方法还包括步骤S020设置所述低频无线信号的频率。
因此,本发明提供进一步避免干扰的设置。
进一步,本发明的位置监控方法还包括步骤:S031设置所述智能穿戴装置与所述预设监控位置中心之间的位置范围正常距离;S032根据步骤S020设置的频率、及步骤S031设置的位置范围正常距离,设置所述正常通信功率。
本发明使智能穿戴装置与预设监控位置中心以预设正常通信功率的进行握手通信,能够根据握手通信成功/失败,直接给出位置距离正常/异常的判断。因此,无需先行得到精准的定位,而后计算得出监控距离正常与否,大大提高了监控反馈的响应速度和监控系统的资源消耗。
进一步,本发明的位置监控方法还包括步骤:S321当所述预设正常通信功率小于最大通信功率时,调高当前通信功率并进行握手通信;当所述步骤S321中握手通信成功时,执行步骤S322根据步骤S020设置的低频无线信号的频率及步骤S321调高的所述当前通信功率,获取所述智能穿戴装置与所述预设监控位置中心之间的位置当前距离。
因此,本发明在位置范围超出正常范围时,可以快速响应得到当前距离,帮助监护人迅速判断情况的严重程度,利于第一时间采取适当的搜寻、求助方案。
进一步,本发明的位置监控方法还包括步骤:S311获取所述智能穿戴装置的预设监控模式;S312根据步骤S311获取的预设监控模式,使所述智能穿戴装置进入静默、求助警报或追捕警报工作模式。
因此,本发明提供了多样化的工作模式。
进一步,本发明的位置监控方法还包括步骤:S051设置所述智能穿戴装置的监控对象为儿童、老人、或犯人;S052根据步骤S051设置的所述监控对象,设置所述预设监控模式为儿童监护、老人看护或犯人追踪模 式。
因此,本发明可以根据监控对象为儿童、老人、或犯人,提供儿童监护、老人看护或犯人追踪模式。在位置范围超出正常范围时,相应进入静默、求助警报或追捕警报工作模式。因此,对于儿童被拐的情况,本发明提供静默工作模式,最大程度保障儿童安全;对于老人走失的情况,本发明提供求助警报工作模式,可以自动播报家人联系方式,提高老人受助的便捷性;对于犯人逃逸得情况,提供追捕警报工作模式,一方面提醒无辜群众注意安全,一方面提高追捕工作的便捷性。
进一步,本发明的位置监控方法还包括步骤:S313进行闪光、声音、和/或震动警报提醒。
因此,本发明能够在位置范围超出正常范围时,快速提示异常。便于立即开展搜索工作。同时,也便于具有识别能力的走失儿童、老人立即自救。
进一步,本发明的位置监控方法还包括步骤:S400所述智能穿戴装置进行位置定位,并发送定位位置信息。
因此,本发明还可以在位置范围脱离较远时,另提供定位功能,便于扩大搜寻范围。
进一步,本发明的位置监控方法还包括步骤:S410所述智能穿戴装置进行卫星定位。
因此,本发明可以在需要时,开启精准定位,便于搜讯工作的进行。
进一步,本发明的位置监控方法还包括步骤:S411所述智能穿戴装置使用GPS、BDS、和/或GLONASS进行定位。
因此,本发明可以在需要时,开启多样化的卫星定位,便于搜讯工作的进行。
进一步,本发明的位置监控方法还包括步骤:S420所述智能穿戴装置进行移动通信网络定位。
因此,本发明还可以在位置范围脱离较远时,另广泛的定位功能,便于确认搜寻范围。
进一步,本发明的位置监控方法还包括步骤:S211发送位置距离正常信息后,使所述智能穿戴装置休眠;S212根据预设休眠时间,唤醒所述智能穿戴装置,并执行握手通信。
因此,本发明可以最大程度节约待机能源,具有长效待命的特点。
进一步,本发明的位置监控方法还包括步骤:S021将Sub-GHz无线信号设置为所述预设低频无线信号。
因此,本发明选择低频无线信号通信中的Sub-GHz无线信号,一方面有助于本发明的定位范围确认不易受建筑物干扰,另一方面便于避免无线信号的干扰。
进一步,本发明的位置监控方法还包括步骤:S022设置所述Sub-GHz无线信号的适用国家地区;S023根据步骤S021设置的适用国家地区,设置所述Sub-GHz无线信号的频率。
因此,本发明根据所在的国家地区,筛选可用的无线信号的频率,便于避免无线信号的干扰。
进一步,本发明的位置监控方法还包括步骤:S111所述智能穿戴装置发送握手请求命令;S112所述预设监控位置中心接收所述握手请求命令。
因此,本发明提供一种简便的握手通信方法,便于系统的快速响应。
进一步,本发明的位置监控方法还包括步骤:S113所述预设监控位置中心发送握手反馈命令;S114所述智能穿戴装置接收所述握手反馈命令。
因此,本发明提供一种增强的握手通信方法,便于系统的准确响应。
进一步,本发明的位置监控方法还包括步骤:S115所述智能穿戴装置发送休眠命令;S116所述预设监控位置中心接收所述休眠命令。
因此,本发明提供一种增强的握手通信方法,一方面便于系统的准确响应,同时便于提升系统的使用长效。
进一步,本发明的位置监控方法还包括步骤:S121所述预设监控位置中心发送握手请求命令;S122所述智能穿戴装置接收所述握手请求命 令。
进一步,本发明的位置监控方法还包括步骤:S123所述智能穿戴装置发送握手反馈命令;S124所述预设监控位置中心接收所述握手反馈命令。
进一步,本发明的位置监控方法还包括步骤:S125所述预设监控位置中心发送休眠命令;S126所述智能穿戴装置接收所述休眠命令。
因此,本发明提供多样化的多种握手通信方法,便于提高本发明的适用性。
进一步,本发明的位置监控方法还包括步骤:S010将监控装置、移动终端装置、或另一智能穿戴装置设置为所述预设监控位置中心。
因此,本发明可以将监控装置、移动终端装置、或另一智能穿戴装置设置为所述预设监控位置中心,因此提升了本发明的适用性。当将一固定位置的监控装置设置为预设监控位置中心时,本发明适用于监狱、老人院、幼儿园等机构进行人员活动范围监控。当将一移动终端装置设置为所述预设监控位置中心时,本发明适用于监护人在家中等固定场所防范老人、儿童走失。当将另一智能穿戴装置设置为所述预设监控位置中心时,本发明适用于在公共场所参加活动时。本发明的活动范围监控以预设监控位置中心为圆心,形成一预定半径的距离范围圆形,因此具有广泛的适用性。
进一步,本发明的位置监控方法还包括步骤:S040将监控装置、移动终端装置、或另一智能穿戴装置设置为监控信息管理中心。
因此,本发明可以将监控装置、移动终端装置、或另一智能穿戴装置设置为所述监控信息管理中心。本发明可以将预设监控位置中心设置为监控信息管理中心,也可以设置不同的另一监控信息管理中心。所述智能穿戴装置发送的位置距离正常/异常信息、定位位置信息可以直接发送给预设监控位置中心,也可以发送给监控信息管理中心。例如,儿童被拐或老人走失时,信息直接发送给现场监护人的移动终端装置或智能穿戴装置,同时通知其他家人的移动终端装置,同时直接向警方或社会援助机构设立的公共失踪人口监控信息管理中心发送信息。或者,犯人逃脱时,信息直 接发送给监狱的监控位置中心,同时通知所有狱警的移动终端装置,同时向当地警方的监控信息管理中心发送信息。因此提升了本发明的适用性。
进一步,本发明的位置监控方法还包括步骤:S500所述智能穿戴装置获取当前的健康数据。
进一步,本发明的位置监控方法还包括步骤:S510获取运动量、和/或睡眠时间、质量数据。
进一步,本发明的位置监控方法还包括步骤:S520当所述健康数据偏离预设的正常范围时,发出求助警报。
因此,本发明还可以监控当事人的健康信息,并视情况不同提供多样化的健康数据监控方法。辅助本发明的位置监控方法确定当事人的状态,提升了本发明的适用性。
本发明还提供一种带位置监控的智能穿戴装置,包括监控控制模块、与所述监控控制模块电连接的低频无线信号通信模块、以及与所述监控控制模块电连接的移动通信模块;其中:所述低频无线信号通信模块在所述监控控制模块控制下,与预设监控位置中心以预设正常通信功率的预设低频无线信号进行握手通信;所述移动通信模块在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信成功时,发送位置距离正常信息;当所述低频无线信号通信模块握手通信失败时,发送位置距离异常信息。
本发明通过低频无线信号进行握手通信,能提供一种不易受建筑物干扰的位置监控装置。
进一步,本发明的智能穿戴装置还包括与所述监控控制模块电连接的设置模块,该设置模块包括频率设置子模块,设置所述低频无线信号通信模块的低频无线信号的频率。
进一步,本发明的智能穿戴装置中,所述设置模块还包括功率设置子模块,该功率设置子模块包括:距离设置单元,设置所述智能穿戴装置与所述预设监控位置中心之间的位置范围正常距离;距离/功率换算单元,与所述频率设置子模块、距离设置单元电连接,根据频率设置子模块设置 的频率、及距离设置单元设置的位置范围正常距离,换算得到所述正常通信功率。
本发明使智能穿戴装置与预设监控位置中心以预设正常通信功率的进行握手通信,能够根据握手通信成功/失败,直接给出位置距离正常/异常的判断。因此,无需先行得到精准的定位,而后计算得出监控距离正常与否,大大提高了监控反馈的响应速度和监控系统的资源消耗。
进一步,本发明的智能穿戴装置中,所述低频无线信号通信模块在所述监控控制模块控制下,当握手通信失败时,且所述预设正常通信功率小于最大通信功率时,调高当前通信功率并再次进行握手通信;所述距离/功率换算单元,当所述低频无线信号通信模块调高当前通信功率握手通信成功时,根据频率设置子模块设置的频率及所述调高的当前通信功率,换算得到与所述预设监控位置中心之间的位置当前距离。
因此,本发明在位置范围超出正常范围时,可以快速响应得到当前距离,帮助监护人迅速判断情况的严重程度,利于第一时间采取适当的搜寻、求助方案。
进一步,本发明的智能穿戴装置中,所述监控控制模块还包括工作模式切换子模块;所述设置模块还包括监控模式设置子模块,设置所述智能穿戴装置的预设监控模式;当所述低频无线信号通信模块握手通信失败时,根据所述监控模式设置子模块设置的预设监控模式,所述工作模式切换子模块控制所述智能穿戴装置进入静默、求助警报或追捕警报工作模式。
进一步,本发明的智能穿戴装置中,所述监控模式设置子模块还包括:监控对象设置单元,设置所述智能穿戴装置的监控对象为儿童、老人、或犯人;监控对象/模式转换单元,与所述监控对象设置单元电连接,根据所述监控对象设置单元设置的所述监控对象,设置所述预设监控模式为儿童监护、老人看护或犯人追踪模式。
因此,本发明可以根据监控对象为儿童、老人、或犯人,提供儿童监护、老人看护或犯人追踪模式。在位置范围超出正常范围时,相应进入静 默、求助警报或追捕警报工作模式。因此,对于儿童被拐的情况,本发明提供静默工作模式,最大程度保障儿童安全;对于老人走失的情况,本发明提供求助警报工作模式,可以自动播报家人联系方式,提高老人受助的便捷性;对于犯人逃逸得情况,提供追捕警报工作模式,一方面提醒无辜群众注意安全,一方面提高追捕工作的便捷性。
进一步,本发明的智能穿戴装置还包括报警模块,与所述监控控制模块电连接,该报警模块包括闪光报警子模块、声音报警子模块、和/或震动报警子模块;所述闪光报警子模块、声音报警子模块、和/或震动报警子模块在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信失败时,进行闪光、声音、和/或震动警报提醒。
因此,本发明能够在位置范围超出正常范围时,快速提示异常。便于具有识别能力的走失儿童、老人立即自救。
进一步,本发明的智能穿戴装置还包括定位模块,与所述监控控制模块电连接;所述定位模块在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信失败时,进行位置定位;所述述移动通信模块在所述监控控制模块控制下,发送定位位置信息。
进一步,本发明的智能穿戴装置中,所述定位模块还包括卫星定位子模块,该卫星定位子模块在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信失败时,进行卫星定位。
进一步,本发明的智能穿戴装置中,所述卫星定位子模块还包括GPS单元、BDS单元、和/或GLONASS单元,所述GPS单元、BDS单元、和/或GLONASS单元在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信失败时,使用GPS、BDS、和/或GLONASS进行定位。
进一步,本发明的智能穿戴装置中,所述定位模块还包括移动通信网络定位子模块,该移动通信网络定位子模块在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信失败时,进行移动通信网络定位。
因此,本发明还可以在位置范围脱离较远时,另提供广泛的定位功能,便于扩大、确认搜寻范围。在需要时,开启多样化的卫星精准定位,便于 搜讯工作的进行。
进一步,本发明的智能穿戴装置中,所述监控控制模块还包括休眠控制子模块,所述休眠控制子模块,当所述低频无线信号通信模块握手通信成功时,所述移动通信模块发送位置距离正常信息后,控制所述智能穿戴装置休眠;并根据预设休眠时间,唤醒所述智能穿戴装置。
因此,本发明可以最大程度节约待机能源,具有长效待命的特点。
进一步,本发明的智能穿戴装置中,所述低频无线信号通信模块还包括Sub-GHz通信子模块,该Sub-GHz通信子模块使用Sub-GHz无线信号进行所述低频无线信号通讯。
进一步,本发明的智能穿戴装置中,所述频率设置子模块还包括:国家地区设置单元,设置所述Sub-GHz无线信号的适用国家地区;国家地区/频率筛选单元,与所述国家地区设置单元电连接,根据国家地区设置单元设置的适用国家地区,筛选设置所述Sub-GHz无线信号的频率。
因此,本发明选择低频无线信号通信中的Sub-GHz无线信号,根据所在的国家地区,筛选可用的无线信号的频率,一方面有助于本发明的定位范围确认不受建筑物干扰,另一方面便于避免无线信号的干扰。
进一步,本发明的智能穿戴装置中,所述Sub-GHz通信子模块还包括发送单元,该发送单元发送握手请求命令。
进一步,本发明的智能穿戴装置中,所述Sub-GHz通信子模块还包括接收单元,该接收单元接收握手反馈命令。
进一步,本发明的智能穿戴装置中,所述发送单元还发送发送休眠命令。
因此,本发明提供多样化的多种握手通信装置,便于提高本发明的适用性。
进一步,本发明的智能穿戴装置中,所述Sub-GHz通信子模块还包括接收单元,该接收单元接收握手请求命令。
进一步,本发明的智能穿戴装置中,所述Sub-GHz通信子模块还包括发送单元,该发送单元发送发送握手反馈命令。
进一步,本发明的智能穿戴装置中,所述接收单元还接收所述休眠命令。
因此,本发明提供多样化的多种握手通信装置,便于提高本发明的适用性。
进一步,本发明的智能穿戴装置中,所述设置模块还包括监控位置中心设置子模块,与所述监控控制模块电连接,将监控装置、移动终端装置、或另一智能穿戴装置设置为所述预设监控位置中心;所述监控控制模块控制所述低频无线信号通信模块,与所述监控位置中心设置子模块设置的监控位置中心进行握手通信。
进一步,本发明的智能穿戴装置中,所述设置模块还包括监控信息管理中心设置子模块,与所述监控控制模块电连接,将监控装置、移动终端装置、或另一智能穿戴装置设置为监控信息管理中心;所述监控控制模块控制所述移动通信模块,向所述监控信息管理中心设置子模块设置的监控信息管理中心发送位置距离正常/异常信息。
因此提升了本发明的适用性。
进一步,本发明的智能穿戴装置还包括健康数据获取模块,与所述监控控制模块电连接,在所述监控控制模块控制下获取当前用户的健康数据。
进一步,本发明的智能穿戴装置中,所述健康数据获取模块还包括运动量获取子模块和/或睡眠数据获取子模块;所述运动量获取子模块获取运动量数据;所述睡眠数据获取子模块获取睡眠时间、质量数据。
进一步,本发明的智能穿戴装置中,当所述健康数据获取模块获取的健康数据偏离预设的正常范围时,所述监控控制模块控制所述移动通信模块、和/或所述报警模块发出求助警报。
因此,本发明还可以监控当事人的健康信息,并视情况不同提供多样化的健康数据监控装置。辅助本发明的位置监控装置确定当事人的状态,提升了本发明的适用性。
本发明还提供了一种与本发明的智能穿戴装置配合使用的移动终端 装置,包括低频无线信号通信模块,所述低频无线信号通信模块与所述智能穿戴装置以预设低频无线信号进行握手通信。
本发明通过低频无线信号进行握手通信,能提供一种不易受建筑物干扰的位置监控装置。
进一步,本发明的移动终端装置中,所述低频无线信号通信模块还包括Sub-GHz通信子模块,该Sub-GHz通信子模块使用Sub-GHz无线信号进行所述低频无线信号通讯。
因此,本发明选择低频无线信号通信中的Sub-GHz无线信号,一方面有助于本发明的定位范围确认不受建筑物干扰,另一方面便于避免无线信号的干扰。
进一步,本发明的移动终端装置中,所述Sub-GHz通信子模块还包括接收单元,该接收单元接收握手请求命令。进一步,本发明的移动终端装置中,所述Sub-GHz通信子模块还包括发送单元,该发送单元发送发送握手反馈命令。进一步,本发明的移动终端装置中,所述接收单元还接收所述休眠命令。
进一步,本发明的移动终端装置中,所述Sub-GHz通信子模块还包括发送单元,该发送单元发送握手请求命令。进一步,本发明的移动终端装置中,所述Sub-GHz通信子模块还包括接收单元,该接收单元接收握手反馈命令。进一步,本发明的移动终端装置中,所述发送单元还发送发送休眠命令。
因此,本发明提供多样化的多种握手通信装置,便于提高本发明的适用性。
进一步,本发明的移动终端装置还包括移动通信模块和显示模块;其中:所述移动通信模块,接收所述所述智能穿戴装置发送的位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报;所述显示模块,与所述移动通信模块电连接,根据所述移动通信模块接收的数据,显示位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报。
因此,本发明提供的移动终端装置具有广泛的适用性。
进一步,本发明的移动终端装置还包括报警模块,该报警模块与所述移动通信模块电连接,包括闪光报警子模块、声音报警子模块、和/或震动报警子模块;当所述移动通信模块接收到位置距离异常信息和/或健康求助警报时,所述闪光报警子模块、声音报警子模块、和/或震动报警子模块,进行闪光、声音、和/或震动警报提醒。
因此,本发明能够在位置范围超出正常范围时,快速提示异常。便于立即开展搜索工作。
本发明还提供了一种与本发明的智能穿戴装置配合使用的监控装置,包括低频无线信号通信模块,所述低频无线信号通信模块与所述智能穿戴装置以预设低频无线信号进行握手通信。
本发明通过低频无线信号进行握手通信,能提供一种不易受建筑物干扰的位置监控装置。
进一步,本发明的监控装置中,所述低频无线信号通信模块还包括Sub-GHz通信子模块,该Sub-GHz通信子模块使用Sub-GHz无线信号进行所述低频无线信号通讯。
因此,本发明选择低频无线信号通信中的Sub-GHz无线信号,一方面有助于本发明的定位范围确认不受建筑物干扰,另一方面便于避免无线信号的干扰。
进一步,本发明的监控装置中,所述Sub-GHz通信子模块还包括接收单元,该接收单元接收握手请求命令。进一步,本发明的监控装置中,所述Sub-GHz通信子模块还包括发送单元,该发送单元发送发送握手反馈命令。进一步,本发明的监控装置中,所述接收单元还接收所述休眠命令。
进一步,本发明的监控装置中,所述Sub-GHz通信子模块还包括发送单元,该发送单元发送握手请求命令。进一步,本发明的监控装置中,所述Sub-GHz通信子模块还包括接收单元,该接收单元接收握手反馈命令。进一步,本发明的监控装置中,所述发送单元还发送发送休眠命令。
因此,本发明提供多样化的多种握手通信装置,便于提高本发明的适 用性。
进一步,本发明的监控装置还包括网络通信模块和显示模块;其中:所述网络通信模块,接收所述所述智能穿戴装置发送的位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报;所述显示模块,与所述网络通信模块电连接,根据所述网络通信模块接收的数据,显示位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报。
因此,本发明提供的监控装置具有广泛的适用性。
进一步,本发明的监控装置还包括报警模块,该报警模块与所述网络通信模块电连接,包括闪光报警子模块、声音报警子模块、和/或震动报警子模块;当所述网络通信模块接收到位置距离异常信息和/或健康求助警报时,所述闪光报警子模块、声音报警子模块、和/或震动报警子模块,进行闪光、声音、和/或震动警报提醒。
因此,本发明能够在位置范围超出正常范围时,快速提示异常。便于立即开展搜索工作。
本发明是一种应用低频无线信号的位置监控方法及相应的智能穿戴装置、移动终端装置、监控装置。提出一种基于Sub_Ghz技术的位置自动跟踪的方法。并且用该方法提出一种子母手环的装置。该手环不仅有计步,睡眠时间等健康数据统计功能,而且还可以实现防丢失、位置自动跟踪。此手环可以让小孩或容易走失的大人佩带,当他们的活动范围离开一定的范围时,即开启位置自动跟踪功能,并将该手环的位置实时发送到已经设置好的主机。具有不易受建筑物干扰,且快速响应、安全便捷、精准搜寻、长效待命、广泛适用等优点。
附图说明
下面将以明确易懂的方式,结合附图说明优选实施方式,对一种基于移动终端的物品安全提醒方法及移动终端的上述特性、技术特征、优点及其实现方式予以进一步说明。
图1是本发明一个实施例的位置监控方法的步骤图;
图2是本发明的位置监控方法的示意图;
图3是本发明的另一个实施例的位置监控方法的设置方法步骤图;
图4是本发明的又一个实施例的位置监控方法的步骤图;
图5是本发明的又一个实施例的位置监控方法的步骤图;
图6是本发明的又一个实施例的定位方法的步骤图;
图7是本发明的又一个实施例的位置监控方法的设置方法步骤图;
图8是本发明的又一个实施例的定位方法的步骤图;
图9是本发明的又一个实施例的定位方法的步骤图;
图10是本发明的又一个实施例的定位方法的一种握手通信方法步骤图;
图11是本发明的又一个实施例的定位方法的另一种握手通信方法步骤图;
图12是本发明的又一个实施例的定位方法的步骤图;
图13是本发明的一个实施例的智能穿戴装置的组成结构示意图;
图14是本发明的一个实施例的智能穿戴装置的设置模块的组成结构示意图;
图15是本发明的一个实施例的移动终端装置的组成结构示意图;
图16是本发明的一个实施例的监控装置的组成结构示意图。
附图标号说明:
智能穿戴装置100
监控控制模块160,休眠控制子模块162,工作模式切换子模块163;
低频无线信号通信模块110,Sub-GHz通信子模块119,发送单元111、接收单元114;
移动通信模块120;
设置模块190,监控位置中心设置子模块191,监控信息管理中心设置子模块194,监控模式设置子模块195,监控对象设置单元185、监控对象/模式转换单元186,频率设置子模块192,国家地区设置单元181、国家地区/频率筛选单元182,功率设置子模块193,距离设置单元183、距离/功率换算单元 184;
定位模块140,卫星定位子模块141,GPS单元147、BDS单元148、GLONASS单元149,移动通信网络定位子模块142;
报警模块170,闪光子模块171、声音子模块172、震动子模块173;
健康数据获取模块150,运动量获取子模块151,G-sensor单元155,睡眠时间/质量子模块152;
移动终端装置200
低频无线信号通信模块210,Sub-GHz通信子模块219,发送单元213、接收单元212;
移动通信模块220;显示模块230;
报警模块270,闪光子模块271、声音子模块272、震动子模块273;
监控装置300
低频无线信号通信模块310,Sub-GHz通信子模块319,发送单元313、接收单元312;
移动通信模块320;显示模块330;
报警模块370,闪光子模块371、声音子模块372、震动子模块373。
具体实施方式
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对照附图说明本发明的具体实施方式。显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图,并获得其他的实施方式。
为使图面简洁,各图中只示意性地表示出了与本发明相关的部分,它们并不代表其作为产品的实际结构。另外,以使图面简洁便于理解,在有些图中具有相同结构或功能的部件,仅示意性地绘示了其中的一个,或仅标出了其中的一个。在本文中,“一个”不仅表示“仅此一个”,也可以表示“多于一个”的情形。
图1是本发明一个实施例的位置监控方法的步骤图。参考图1,根据本发明一种实施例的基于智能穿戴装置100的位置监控方法,包括步骤:S100智能穿戴装置100与预设监控位置中心以预设正常通信功率的预设低频无线 信号进行握手通信;当握手通信成功时,执行步骤S200发送位置距离正常信息;当握手通信失败时,执行步骤S300发送位置距离异常信息。
参考图2,是本发明的位置监控方法的示意图。如图2所示,为此实例使用示意图。本实例中,幼子与母亲均佩戴智能穿戴设备,各自佩戴一个智能手环。A为“母”手环的位置,B以内为“子”手环使用的安全范围。
优选的,本实施例的位置监控方法还包括步骤S020设置所述低频无线信号的频率。
在本发明中,通过低频无线信号进行握手通信,主要是由于低频无线信号相对高频无线信号,不易受建筑物干扰。本发明所说的高频无线信号,主要指2.4GHz以上(含2.4GHz)的无线信号,本发明所说的低频无线信号,指2.4GHz以下(不含2.4GHz)的无线信号。
通过低频无线信号进行握手通信,能提供一种不易受建筑物干扰的位置监控方法。对于上述B活动的安全范围,可以达到三四百米左右,这样可以最大程度的不限制小孩的活动范围。
参考图3,是本发明的另一个实施例的位置监控方法的设置方法步骤图。在本发明另一个实施例的位置监控方法中,与上述实施例相同的位置监控步骤部分不再复述。
优选的,步骤S020还包括步骤:S021将Sub-GHz无线信号设置为所述预设低频无线信号。
无线通信中,小于等于1GHz频段称为“Sub-GHz”,比较适合于传输距离远、低功耗、低数据速率、传输数据量少的应用。对于无线传播,波长与频率成反比,而波长更长的波形更容易长距离传播。因此,在长距离通信或穿墙能力、低功耗等能力上,Sub-Ghz射频技术更具有优势。在本发明中,这种长波形可长距离传播的技术能很好的保证子母手环的安全活动范围。
Sub-GHz在不同国家或地区频段有所不同。优选的,本实施例还包括步骤:S022设置所述Sub-GHz无线信号的适用国家地区;S023根据步骤S021设置的适用国家地区,设置所述Sub-GHz无线信号的频率。
例如,北美地区将所述Sub-GHz无线信号的频率设置为902-928MHz;中国则使用470-517、779-787MHz的Sub-GHz无线信号,其中470-517MHz的Sub-GHz无线信号主要由国家电网使用;欧洲则使用863-870MHz的Sub-GHz无线信号;日本使用916.5-927.5MHz的Sub-GHz无线信号;917.5-923.5MHz的Sub-GHz无线信号适用于韩国;新加坡可使用866-869或920-925MHz的Sub-GHz无线信号。因此,本发明提供了根据所在的国家地区,筛选可用的无线信号的频率的实例。
优选的,本实施例的位置监控方法还包括步骤:S031设置所述智能穿戴装置100与所述预设监控位置中心之间的位置范围正常距离;S032根据步骤S020设置的频率、及步骤S031设置的位置范围正常距离,设置所述正常通信功率。
本发明使智能穿戴装置100与预设监控位置中心以预设正常通信功率的进行握手通信,能够根据握手通信成功/失败,直接给出位置距离正常/异常的判断。因此,无需先行得到精准的定位,而后计算得出监控距离正常与否,大大提高了监控反馈的响应速度和监控系统的资源消耗。
图4是本发明的又一个实施例的位置监控方法的步骤图。本实施例中,与上述实施例相同的设置方法步骤部分不再复述。
根据本发明又一种实施例的基于智能穿戴装置100的位置监控方法,包括步骤:S100智能穿戴装置100与预设监控位置中心以预设正常通信功率的预设低频无线信号进行握手通信;当握手通信成功时,执行步骤S200发送位置距离正常信息;当握手通信失败时,执行步骤S300、及S321;S300发送位置距离异常信息;S321当所述预设正常通信功率小于最大通信功率时,调高当前通信功率并进行握手通信;当所述步骤S321中握手通信成功时,执行步骤S322根据步骤S020设置的低频无线信号的频率及步骤S321调高的所述当前通信功率,获取所述智能穿戴装置100与所述预设监控位置中心之间的位置当前距离。
根据Sub-GHz无线信号的频率不同及Sub-GHz无线通信模块的功率不同,Sub-GHz无线信号的最大通信距离可以超过1公里。因此,本发明在 位置范围超出正常范围时,可以快速响应得到当前距离,帮助监护人迅速判断情况的严重程度,利于第一时间采取适当的搜寻、求助方案。
图5是本发明的又一个实施例的位置监控方法的步骤图。图6是本发明的又一个实施例的定位方法的步骤图。
本实施例的位置监控方法包括步骤:S100智能穿戴装置100与预设监控位置中心以预设正常通信功率的预设低频无线信号进行握手通信;当握手通信成功时,执行步骤S200发送位置距离正常信息;当握手通信失败时,执行步骤S300发送位置距离异常信息;S400所述智能穿戴装置100进行位置定位,并发送定位位置信息。
在本实施例的位置监控方法中,与上述几个实施例相同的设置方法步骤部分不再复述。
可选的,步骤S400还包括步骤:S410所述智能穿戴装置100进行卫星定位。
优选的,本实施例的位置监控方法还包括步骤:S411所述智能穿戴装置100使用GPS(Global Positioning System,全球定位系统)、BDS(BeiDou Navigation Satellite System,中国北斗卫星导航系统)、和/或GLONASS(GLOBAL NAVIGATION SATELLITE SYSTEM,全球卫星导航系统)进行定位。
因此,本发明可以在需要时,开启一种或多种的卫星定位方式进行精准定位,便于搜讯工作的进行。
可选的,本实施例的位置监控方法还包括步骤:S420所述智能穿戴装置100进行移动通信网络定位。
可以明白,卫星定位与移动通信网络定位可以择一使用,也可以共同使用。
可选的,本实施例的位置监控方法还包括步骤:S425当定位成功时,发送当前定位位置信息。
可选的,本实施例的位置监控方法还包括步骤:S430在所述“母”手环和/或“子”手环上显示当前定位位置信息。
图7是本发明的又一个实施例的位置监控方法的设置方法步骤图。图8是本发明的又一个实施例的定位方法的步骤图。在本实施例的位置监控方法中,与上述几个实施例相同的位置监控方法步骤部分、设置方法步骤部分不再复述。
可选的,本实施例的位置监控方法还包括步骤:S010将监控装置300、移动终端装置200、或另一智能穿戴装置100设置为所述预设监控位置中心。
因此,本发明可以将监控装置300、移动终端装置200、或另一智能穿戴装置100设置为所述预设监控位置中心,因此提升了本发明的适用性。当将一固定位置的监控装置300设置为预设监控位置中心时,本发明适用于监狱、老人院、幼儿园等机构进行人员活动范围监控。当将一移动终端装置200设置为所述预设监控位置中心时,本发明适用于监护人在家中等固定场所防范老人、儿童走失。当将另一智能穿戴装置100设置为所述预设监控位置中心时,例如母亲佩戴的“母”手环设置为所述预设监控位置中心时,本发明适用于在公共场所参加活动时。本发明的活动范围监控以预设监控位置中心为圆心,形成一预定半径的距离范围圆形,因此具有广泛的适用性。
可选的,本实施例的位置监控方法还包括步骤:S040将监控装置300、移动终端装置200、或另一智能穿戴装置100设置为监控信息管理中心。
因此,本发明可以将预设监控位置中心设置为监控信息管理中心,例如母亲佩戴的“母”手环设置为监控信息管理中心;也可以设置不同的另一监控信息管理中心,例如父亲的移动通信终端。
所述智能穿戴装置100发送的位置距离正常/异常信息、定位位置信息可以直接发送给预设监控位置中心,也可以发送给监控信息管理中心。例如,儿童被拐或老人走失时,信息直接发送给现场监护人的移动终端装置200或智能穿戴装置100,同时通知其他家人的移动终端装置200,同时直接向警方或社会援助机构设立的公共失踪人口监控信息管理中心发送信息。或者,犯人逃脱时,信息直接发送给监狱的监控位置中心,同时 通知所有狱警的移动终端装置200,同时向当地警方的监控信息管理中心发送信息。因此提升了本发明的适用性。
优选的,本实施例的位置监控方法还包括步骤:S051设置所述智能穿戴装置100的监控对象为儿童、老人、或犯人;S052根据步骤S051设置的所述监控对象,设置所述预设监控模式为儿童监护、老人看护或犯人追踪模式。
因此,本发明可以根据监控对象为儿童、老人、或犯人,提供儿童监护、老人看护或犯人追踪模式。
优选的,本实施例的位置监控方法还包括步骤:S311获取所述智能穿戴装置100的预设监控模式;S312根据步骤S311获取的预设监控模式,使所述智能穿戴装置100进入静默、求助警报或追捕警报工作模式。
因此,在位置范围超出正常范围时,智能穿戴装置100相应进入静默、求助警报或追捕警报工作模式。
因此,对于儿童被拐的情况,智能穿戴装置100提供静默工作模式,最大程度保障儿童安全,避免惊动罪犯。
对于老人走失的情况,本发明提供求助警报工作模式。可以自动播报家庭住址、家人联系方式,提高老人受助的可能及好心人救助的便捷性。
对于犯人逃逸得情况,提供追捕警报工作模式。可以播报犯人的危险性等信息,一方面对高度危险的罪犯提醒无辜群众注意安全避让,另一方面为警方提高追捕工作的便捷性。
可选的,本实施例的位置监控方法还包括步骤:S313进行闪光、声音、和/或震动警报提醒。
因此,本发明能够在位置范围超出正常范围时,快速提示异常。便于立即开展搜索工作。同时,也便于具有识别能力的走失儿童、老人立即自救。其中,当静默工作模式下,仅进行震动警报提醒或不进行任何警报提醒。
图9是本发明的又一个实施例的定位方法的步骤图。在本实施例的位置监控方法中,与上述几个实施例相同的位置监控方法步骤部分、警报方法步骤 部分、设置方法步骤部分不再复述。
优选的,本实施例的位置监控方法还包括步骤:S211发送位置距离正常信息后,使所述智能穿戴装置100休眠;S212根据预设休眠时间,唤醒所述智能穿戴装置100,并执行握手通信。
因此,本发明可以最大程度节约待机能源,具有长效待命的特点。
图10是本发明的又一个实施例的定位方法的一种握手通信方法步骤图;图11是本发明的又一个实施例的定位方法的另一种握手通信方法步骤图。与上述几个实施例相同的位置监控方法步骤部分、警报方法步骤部分、休眠方法步骤部分、设置方法步骤部分不再复述。
本实施例的位置监控方法使用以下握手通信方法,包括步骤:S111所述智能穿戴装置100发送握手请求命令;S112所述预设监控位置中心接收所述握手请求命令。
优选的,还包括步骤:S113所述预设监控位置中心发送握手反馈命令;S114所述智能穿戴装置100接收所述握手反馈命令。
优选的,还包括步骤:S115所述智能穿戴装置100发送休眠命令;S116所述预设监控位置中心接收所述休眠命令。
可选的,本实施例的位置监控方法使用另一种握手通信方法,包括步骤:S121所述预设监控位置中心发送握手请求命令;S122所述智能穿戴装置100接收所述握手请求命令。
优选的,还包括步骤:S123所述智能穿戴装置100发送握手反馈命令;S124所述预设监控位置中心接收所述握手反馈命令。
优选的,还包括步骤:S125所述预设监控位置中心发送休眠命令;S126所述智能穿戴装置100接收所述休眠命令。
图12是本发明的又一个实施例的定位方法的步骤图。与上述几个实施例相同的位置监控方法步骤部分、警报方法步骤部分、休眠方法步骤部分、设置方法步骤部分不再复述。
可选的,本实施例的位置监控方法还包括步骤:S500所述智能穿戴装置100获取当前的健康数据。
优选的,步骤S500还包括步骤:S510获取运动量、和/或睡眠时间、质量数据。
优选的,本实施例的位置监控方法还包括步骤:S520当所述健康数据偏离预设的正常范围时,发出求助警报。
因此,本发明还可以监控当事人的健康信息,并视情况不同提供多样化的健康数据监控方法。辅助本发明的位置监控方法确定当事人的状态,提升了本发明的适用性。
图13是本发明的一个实施例的智能穿戴装置100的组成结构示意图。
根据本实施例的一种带位置监控的智能穿戴装置100,包括监控控制模块160、与所述监控控制模块160电连接的低频无线信号通信模块110、以及与所述监控控制模块160电连接的移动通信模块120。
其中,所述监控控制模块160控制所述低频无线信号通信模块110,与预设监控位置中心以预设正常通信功率的预设低频无线信号进行握手通信。当所述低频无线信号通信模块110握手通信成功时,所述监控控制模块160控制所述移动通信模块120,发送位置距离正常信息;当所述低频无线信号通信模块110握手通信失败时,所述监控控制模块160控制所述移动通信模块120,发送位置距离异常信息。
优选的,所述低频无线信号通信模块110还包括Sub-GHz通信子模块119,该Sub-GHz通信子模块119使用Sub-GHz无线信号进行所述低频无线信号通讯。
优选的,所述Sub-GHz通信子模块119还包括发送单元111、接收单元114。
优选的,所述监控控制模块160还包括休眠控制子模块162。当所述低频无线信号通信模块110握手通信成功时,所述监控控制模块160控制所述移动通信模块120发送位置距离正常信息后,所述休眠控制子模块162控制所述智能穿戴装置100休眠;并根据预设休眠时间,唤醒所述智能穿戴装置100。
可选的,本发明的智能穿戴装置100还包括与所述监控控制模块160 电连接的定位模块140。
当所述低频无线信号通信模块110握手通信失败时,所述监控控制模块160控制所述定位模块140,进行位置定位。定位成功时,所述监控控制模块160控制所述移动通信模块120,发送定位位置信息。
优选的,所述定位模块140还包括卫星定位子模块141。该卫星定位子模块141、和/或移动通信网络定位子模块142。
优选的,所述卫星定位子模块141还包括GPS单元147、BDS单元148、和/或GLONASS单元149。当所述低频无线信号通信模块110握手通信失败时,在所述监控控制模块160控制下,所述GPS单元147、BDS单元148、和/或GLONASS单元149使用GPS、BDS、和/或GLONASS进行定位。
可选的,本实施例的智能穿戴装置100还包括报警模块170,与所述监控控制模块160电连接。
该报警模块170包括闪光报警子模块171、声音报警子模块172、和/或震动报警子模块173。所述闪光报警子模块171、声音报警子模块172、和/或震动报警子模块173在所述监控控制模块160控制下,当所述低频无线信号通信模块110握手通信失败时,进行闪光、声音、和/或震动警报提醒。
可选的,本实施例的智能穿戴装置100还包括与所述监控控制模块160电连接的健康数据获取模块150,在所述监控控制模块160控制下获取当前用户的健康数据。当所述健康数据获取模块150获取的健康数据偏离预设的正常范围时,所述监控控制模块160控制所述移动通信模块120、和/或所述报警模块170发出求助警报。
优选的,所述健康数据获取模块150还包括运动量获取子模块151和/或睡眠数据获取子模块152。
优选的,所述运动量获取子模块151还包括G-Sensor单元155。
可选的,本实施例的智能穿戴装置100还包括与所述监控控制模块160电连接的设置模块190。参考图14,是本实施例的智能穿戴装置100的设置模块190的组成结构示意图。
优选的,该设置模块190包括频率设置子模块192、功率设置子模块193,设置所述低频无线信号通信模块110的低频无线信号的频率、功率。
优选的,所述频率设置子模块192还包括:国家地区设置单元181、国家地区/频率筛选单元182。国家地区设置单元181设置所述Sub-GHz无线信号的适用国家地区。国家地区/频率筛选单元182,根据国家地区设置单元181设置的适用国家地区,筛选设置所述Sub-GHz无线信号的频率。
优选的,所述功率设置子模块193包括:距离设置单元183、距离/功率换算单元184。距离设置单元183设置所述智能穿戴装置100与所述预设监控位置中心之间的位置范围正常距离。距离/功率换算单元184,根据频率设置子模块192设置的频率、及距离设置单元183设置的位置范围正常距离,换算得到所述正常通信功率。
当Sub-GHz通信模块110握手通信失败时,且功率设置子模块193设置的正常通信功率小于Sub-GHz通信模块110最大通信功率时,所述监控控制模块160控制所述低频无线信号通信模块110,调高当前通信功率并再次进行握手通信。
当所述低频无线信号通信模块110调高当前通信功率握手通信成功时,所述距离/功率换算单元184,根据频率设置子模块192设置的频率及所述调高的当前通信功率,换算得到与所述预设监控位置中心之间的位置当前距离。
优选的,所述设置模块190还包括监控位置中心设置子模块191,将监控装置300、移动终端装置200、或另一智能穿戴装置100设置为所述预设监控位置中心。
优选的,所述设置模块190还包括监控信息管理中心设置子模块194,可以将预设监控位置中心设置为监控信息管理中心,也可以设置不同的另一监控信息管理中心。
优选的,所述设置模块190还包括监控模式设置子模块195。优选的,所述监控模式设置子模块195还包括:监控对象设置单元185、监控对象/模式转换单元186。监控对象设置单元185设置所述智能穿戴装置100的 监控对象为儿童、老人、或犯人。监控对象/模式转换单元186,根据所述监控对象设置单元185设置的所述监控对象,设置所述预设监控模式为儿童监护、老人看护或犯人追踪模式。
参见图13。优选的,本实施例的所述监控控制模块160还包括工作模式切换子模块163。当所述低频无线信号通信模块110握手通信失败时,所述工作模式切换子模块163根据所述监控模式设置子模块195设置的预设监控模式,控制所述智能穿戴装置100进入静默、求助警报或追捕警报工作模式。
图15是本发明的一个实施例的移动终端装置200的组成结构示意图。
根据本实施例的一种移动终端装置200,与前述实施例的智能穿戴装置100配合使用。
移动终端装置200包括低频无线信号通信模块210。所述低频无线信号通信模块210与所述智能穿戴装置100以预设低频无线信号进行握手通信。
优选的,所述低频无线信号通信模块210还包括Sub-GHz通信子模块219,该Sub-GHz通信子模块119使用Sub-GHz无线信号进行所述低频无线信号通讯。
优选的,所述Sub-GHz通信子模块119还包括发送单元213、接收单元212。
可选的,所述智能穿戴装置100的发送单元111发送握手请求命令;所述移动终端装置200的接收单元212接收所述握手请求命令。优选的,所述移动终端装置200的发送单元213发送握手反馈命令;所述智能穿戴装置100的接收单元114接收所述握手反馈命令。优选的,所述智能穿戴装置100的发送单元111发送休眠命令;所述移动终端装置200的接收单元212接收所述休眠命令。
可选的,所述移动终端装置200的发送单元213发送握手请求命令;所述智能穿戴装置100的接收单元114接收所述握手请求命令。优选的,所述智能穿戴装置100的发送单元111发送握手反馈命令;所述移动终端 装置200的接收单元212接收所述握手反馈命令。优选的,所述移动终端装置200的发送单元213发送休眠命令;所述智能穿戴装置100的接收单元114接收所述休眠命令。
可选的,本实施例的移动终端装置200还包括移动通信模块220和显示模块230。其中所述移动通信模块220,接收所述所述智能穿戴装置100发送的位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报。所述显示模块230,根据所述移动通信模块220接收的数据,显示位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报。
可选的,本实施例的移动终端装置200还包括报警模块270,该报警模块270包括闪光报警子模块271、声音报警子模块272、和/或震动报警子模块273。当所述移动通信模块220接收到位置距离异常信息和/或健康求助警报时,所述闪光报警子模块271、声音报警子模块272、和/或震动报警子模块273,进行闪光、声音、和/或震动警报提醒。
图16是本发明的一个实施例的监控装置300的组成结构示意图。
根据本实施例的一种监控装置300,与前述实施例的智能穿戴装置100配合使用。
监控装置300包括低频无线信号通信模块310。所述低频无线信号通信模块310与所述智能穿戴装置100以预设低频无线信号进行握手通信。
优选的,所述低频无线信号通信模块310还包括Sub-GHz通信子模块319,该Sub-GHz通信子模块319使用Sub-GHz无线信号进行所述低频无线信号通讯。
优选的,所述Sub-GHz通信子模块319还包括发送单元313、接收单元312。
可选的,所述智能穿戴装置100的发送单元111发送握手请求命令;所述监控装置300的接收单元312接收所述握手请求命令。优选的,所述监控装置300的发送单元313发送握手反馈命令;所述智能穿戴装置100的接收单元114接收所述握手反馈命令。优选的,所述智能穿戴装置100 的发送单元111发送休眠命令;所述监控装置300的接收单元312接收所述休眠命令。
可选的,所述监控装置300的发送单元313发送握手请求命令;所述智能穿戴装置100的接收单元114接收所述握手请求命令。优选的,所述智能穿戴装置100的发送单元111发送握手反馈命令;所述监控装置300的接收单元312接收所述握手反馈命令。优选的,所述监控装置300的发送单元313发送休眠命令;所述智能穿戴装置100的接收单元114接收所述休眠命令。
可选的,本实施例的监控装置300还包括移动通信模块320和显示模块330。其中所述移动通信模块320,接收所述所述智能穿戴装置100发送的位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报。所述显示模块330,根据所述移动通信模块320接收的数据,显示位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报。
可选的,本实施例的监控装置300还包括报警模块370,该报警模块370包括闪光报警子模块371、声音报警子模块372、和/或震动报警子模块373。当所述移动通信模块320接收到位置距离异常信息和/或健康求助警报时,所述闪光报警子模块371、声音报警子模块372、和/或震动报警子模块373,进行闪光、声音、和/或震动警报提醒。
可以理解,本发明的智能穿戴装置100可以与监控装置300、移动终端装置200、或另一智能穿戴装置100配合使用。
下面结合一个应用实例进一步描述本发明。
本应用实例提出一种基于Sub_Ghz技术的位置自动跟踪的方法,并且用该方法提供一种子母手环的装置。该手环不仅有计步,睡眠时间等健康数据统计功能,而且还可以实现防丢失、位置自动跟踪。
此手环可以让小孩或容易走失的大人佩带,当他们的活动范围离开一定的范围时,即开启位置自动跟踪功能,并将该手环的位置实时发送到已经设置好的主机。
下面通过子母两个手环和小孩防走丢的案例来具体说明。
该方案充分利用电子手环,在保护孩子防丢失,或者寻找孩子位置等方面做精确地位置定位。在子母手环之间有握手协议,所以在系统刚开始用的时候要实现一次子母手环之间的配对,这样以保证后续子母之间正常握手通信。
通过该手环,在一定范围内,子手环使用人的活动不受限制,但当子手环的活动范围距离母手环超出一定范围时,母手环即可清晰了解子手环的活动位置及相关情况。
本发明可便捷的在不限制小孩的活动范围的前提下防止小孩走丢,如若小孩走丢,通过本设备可精确了解到小孩的详细活动情况和活动位置,并且,该手环也具备运动数据统计等功能。本发明亦可应用于有一定障碍的老人等。
另外,此活动范围为可调,通过调节Sub_Ghz发送接受的功率大小可实现活动范围远近的调节。
本发明提出的智能的基于Sub_Ghz技术的子母电子手环,不仅具有普通电子手环功能,且结合移动互联网,利用无线网传输技术、卫星定位技术和移动蜂窝网络实现精确定位和位置追踪,以确保到小孩或丧失一定能力的老人防走丢或寻找。
对于子母手环,硬件设计上各有不同。对母手环,硬件模块有Sub_Ghz收发模块、马达、和G-Sensor。对于子手环,硬件上有移动蜂窝网收发模块,卫星定位模块、Sub_Ghz收发模块和G-Sensor。
对于Sub_Ghz收发模块,用于子母之间相互握手通信,确保“子”手环在“母“的监视范围内;对于马达,当子手环脱离母手环活动范围时,即可提醒母手环使用人立马在附近环境寻找;对于移动蜂窝网收发模块,主要用作在复杂建筑环境下对子手环的位置信息定位和位置信息的发送;对于卫星定位模块,用作对于子手环的位置精确定位;对于G-Sensor,是常用手环的运动量等健康数据统计。
对于Sub-Ghz无线收发模块,例如Silicon Labs Si446x EZRadioPRO IC,支持从119MHz-1050MHz的频率范围,最大支持146dB的链路预算。为了减轻多径衰落的影响,EZRadioPRO芯片支持双天线,并在芯片内集成天线分集逻辑算法。
当子手环在上述范围内活动时,子母手环之间可成功进行握手协议,如若握手成功,则子母手环中的收发模块竟进入休眠状态,当隔一定时间(此时间长度为系统预设)后,系统激活,重新进行握手,如此往复。
对于握手协议,子手环首先通过Sub_Ghz模块发出特定的请求命令符,当母手环接收到该命令后,母手环系统确认,然后通过Sub_Ghz发出确认答复命令,当子手环接受到该命令后,确认子手环的活动范围在母手环监测范围之内,此时,子手环向母手环发出休眠的指令,然后系统进入休眠状态;当母手环受到进入休眠的指令后,母手环同时也进入休眠状态。
对于在上述握手过程中,如若子手环在发出请求命令后一段时间内未收到母手环发出的确认命令,则认为握手失败。此时则认为子手环已脱离母手环监测范围,系统开启位置自动跟踪功能。此时,子手环不做任何声音等感官动作,以防止在小孩被拐的情况下惊动人贩子。
对于位置跟踪功能,由移动蜂窝网和卫星定位双重保障实现。一般在建筑环境比较简单的情况下,用卫星定位实现精确定位;但在城市中,因为建筑群比较复杂的,这样很容易导致定位模块连不上卫星导致定位失败,此时,系统可通过城市中密集的蜂窝网络实现精确定位。
系统开启位置自动跟踪功能后,子手环能实时的得到其所处的地理位置信息,系统将该地理位置通过网络发送到本系统提前设定好的主机,这样,能实时的知道子手环的活动位置。
在上述握手过程中,如果母手环在发出确认命令一段时间后未收到子手环发出的休眠命令,同样认为握手失败。此时,母手环会令系统的马达震动,提醒母手环使用人亲自监测子手环是否在活动监测范围内。
作为手环,通过G-Sensor可以实现运动量,睡眠时间和质量的统计。在防丢失方面,两个手环通过Sub_Ghz技术每隔特定的时间进行握手协 议,握手完毕后,如若握手成功,系统重新休眠,等待下一个握手时间的到来。如若握手不成功,则母子手环同时开启位置自动跟踪模式。对于母手环来说,此刻首先是提醒母手环的使用人,马上在附近周围环境进行寻找。对于子手环,在静默状态下系统开启位置自动模式,同时将位置信息实时传送到之前已设置好的主机上,这样,便于亲属精确寻找。
本实施例的基于Sub_Ghz技术的防丢失位置自动跟踪电子手环,相比现有技术电子手环,有以下优点:
1.低功耗实现防丢失。Sub-GHz收发器,例如无线模块Silicon Labs Si446x EZRadioPRO IC,在最大146dB的链路预算,休眠模式下仅需50nA电流消耗。这样低功耗的休眠功耗能很大保持电池的使用时间。
2.精确的位置自动跟踪功能。本发明中潜入了卫星定位系统和无线蜂窝网络双重定位,可保证达到精确的位置自动跟踪。通过双重保证,无论是在比较开阔的旷野还是在建筑群复杂或者室内,都可以实现精确的位置自动跟踪。
3.使用的便捷性。相比防丢失鞋或者衣服而言,本发明使用便捷,无需每双鞋或每件衣服都装有防丢失装置,使用便捷,更换方便。而且作为手环,还可以统计使用者的运动量,睡眠时间等健康数据。
应当说明的是,上述实施例均可根据需要自由组合。以上所述仅是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也应视为本发明的保护范围。

Claims (60)

  1. 一种位置监控方法,其特征在于,包括步骤:
    S100所述智能穿戴装置与预设监控位置中心以预设正常通信功率的预设低频无线信号进行握手通信;
    当所述步骤S100中握手通信成功时,执行步骤S200发送位置距离正常信息;
    当所述步骤S100中握手通信失败时,执行步骤S300发送位置距离异常信息。
  2. 如权利要求1所述的一种位置监控方法,其特征在于,还包括步骤:
    S020设置所述低频无线信号的频率。
  3. 如权利要求2所述的一种位置监控方法,其特征在于,还包括步骤:
    S031设置所述智能穿戴装置与所述预设监控位置中心之间的位置范围正常距离;
    S032根据步骤S020设置的频率、及步骤S031设置的位置范围正常距离,设置所述正常通信功率。
  4. 如权利要求3所述的一种位置监控方法,其进一步特征在于,所述步骤S300还包括步骤:
    S321当所述预设正常通信功率小于最大通信功率时,调高当前通信功率并进行握手通信;
    当所述步骤S321中握手通信成功时,执行步骤S322根据步骤S020设置的Sub-GHz无线信号的频率及步骤S321调高的所述当前通信功率,获取所述智能穿戴装置与所述预设监控位置中心之间的位置当前距离。
  5. 如权利要求1所述的一种位置监控方法,其进一步特征在于,所述步骤S300还包括步骤:
    S311获取所述智能穿戴装置的预设监控模式;
    S312根据步骤S311获取的预设监控模式,使所述智能穿戴装置进入静默、求助警报或追捕警报工作模式。
  6. 如权利要求5所述的一种位置监控方法,其特征在于,还包括步骤:
    S051设置所述智能穿戴装置的监控对象为儿童、老人、或犯人;
    S052根据步骤S051设置的所述监控对象,设置所述预设监控模式为儿童监护、老人看护或犯人追踪模式。
  7. 如权利要求1所述的一种位置监控方法,其进一步特征在于,所述步骤S300还包括步骤:
    S313所述预设监控位置中心进行闪光、声音、和/或震动警报提醒。
  8. 如权利要求1所述的一种位置监控方法,其特征在于,还包括步骤:
    S400所述智能穿戴装置进行位置定位,并发送定位位置信息。
  9. 如权利要求8所述的一种位置监控方法,其进一步特征在于,所述步骤S400还包括步骤:
    S410所述智能穿戴装置进行卫星定位。
  10. 如权利要求9所述的一种位置监控方法,其进一步特征在于,所述步骤S410还包括步骤:
    S411所述智能穿戴装置使用GPS、BDS、和/或GLONASS进行定位。
  11. 如权利要求8所述的一种位置监控方法,其进一步特征在于,所述步骤S400还包括步骤:
    S420所述智能穿戴装置进行移动通信网络定位。
  12. 如权利要求1所述的一种位置监控方法,其进一步特征在于,所述步骤S200还包括步骤:
    S211发送位置距离正常信息后,使所述智能穿戴装置休眠;
    S212根据预设休眠时间,唤醒所述智能穿戴装置,并执行步骤S100。
  13. 如权利要求2所述的一种位置监控方法,其进一步特征在于,所述步骤S020还包括步骤:
    S021将Sub-GHz无线信号设置为所述预设低频无线信号。
  14. 如权利要求13所述的一种位置监控方法,其进一步特征在于,所述步骤S020还包括步骤:
    S022设置所述Sub-GHz无线信号的适用国家地区;
    S023根据步骤S021设置的适用国家地区,设置所述Sub-GHz无线信 号的频率。
  15. 如权利要求1所述的一种位置监控方法,其进一步特征在于,所述步骤S100还包括步骤:
    S111所述智能穿戴装置发送握手请求命令;
    S112所述预设监控位置中心接收所述握手请求命令。
  16. 如权利要求15所述的一种位置监控方法,其进一步特征在于,所述步骤S100还包括步骤:
    S113所述预设监控位置中心发送握手反馈命令;
    S114所述智能穿戴装置接收所述握手反馈命令。
  17. 如权利要求16所述的一种位置监控方法,其进一步特征在于,所述步骤S100还包括步骤:
    S115所述智能穿戴装置发送休眠命令;
    S116所述预设监控位置中心接收所述休眠命令。
  18. 如权利要求1所述的一种位置监控方法,其进一步特征在于,所述步骤S100还包括步骤:
    S121所述预设监控位置中心发送握手请求命令;
    S122所述智能穿戴装置接收所述握手请求命令。
  19. 如权利要求18所述的一种位置监控方法,其进一步特征在于,所述步骤S100还包括步骤:
    S123所述智能穿戴装置发送握手反馈命令;
    S124所述预设监控位置中心接收所述握手反馈命令。
  20. 如权利要求19所述的一种位置监控方法,其进一步特征在于,所述步骤S100还包括步骤:
    S125所述预设监控位置中心发送休眠命令;
    S126所述智能穿戴装置接收所述休眠命令。
  21. 如权利要求1所述的一种位置监控方法,其特征在于,还包括步骤:
    S010将监控装置、移动终端装置、或另一智能穿戴装置设置为所述预设监控位置中心。
  22. 如权利要求1所述的一种位置监控方法,其特征在于,还包括步骤:
    S040将监控装置、移动终端装置、或另一智能穿戴装置设置为监控信息管理中心。
  23. 如权利要求1所述的一种位置监控方法,其特征在于,还包括步骤:
    S500所述智能穿戴装置获取当前的健康数据。
  24. 如权利要求23所述的一种位置监控方法,其进一步特征在于,所述步骤S500还包括步骤:
    S510获取运动量、和/或睡眠时间、质量数据。
  25. 如权利要求23所述的一种位置监控方法,其进一步特征在于,所述步骤S500还包括步骤:
    S520当所述健康数据偏离预设的正常范围时,发出求助警报。
  26. 一种带位置监控的智能穿戴装置,其特征在于,包括:监控控制模块、与所述监控控制模块电连接的低频无线信号通信模块、以及与所述监控控制模块电连接的移动通信模块;其中:
    所述低频无线信号通信模块在所述监控控制模块控制下,与预设监控位置中心以预设正常通信功率的预设低频无线信号进行握手通信;
    所述移动通信模块在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信成功时,发送位置距离正常信息;当所述低频无线信号通信模块握手通信失败时,发送位置距离异常信息。
  27. 如权利要求26所述的智能穿戴装置,其特征在于,所述智能穿戴装置还包括与所述监控控制模块电连接的设置模块,该设置模块包括频率设置子模块,设置所述低频无线信号通信模块的低频无线信号的频率。
  28. 如权利要求27所述的智能穿戴装置,其特征在于,所述设置模块还包括功率设置子模块,该功率设置子模块包括:
    距离设置单元,设置所述智能穿戴装置与所述预设监控位置中心之间的位置范围正常距离;
    距离/功率换算单元,与所述频率设置子模块、距离设置单元电连接,根据频率设置子模块设置的频率、及距离设置单元设置的位置范围正常 距离,换算得到所述正常通信功率。
  29. 如权利要求28所述的智能穿戴装置,其进一步特征在于:
    所述低频无线信号通信模块在所述监控控制模块控制下,当握手通信失败时,且所述预设正常通信功率小于最大通信功率时,调高当前通信功率并再次进行握手通信;
    所述距离/功率换算单元,当所述低频无线信号通信模块调高当前通信功率握手通信成功时,根据频率设置子模块设置的频率及所述调高的当前通信功率,换算得到与所述预设监控位置中心之间的位置当前距离。
  30. 如权利要求26所述的智能穿戴装置,其特征在于,
    所述监控控制模块还包括工作模式切换子模块;所述设置模块还包括监控模式设置子模块,设置所述智能穿戴装置的预设监控模式;
    当所述低频无线信号通信模块握手通信失败时,根据所述监控模式设置子模块设置的预设监控模式,所述工作模式切换子模块控制所述智能穿戴装置进入静默、求助警报或追捕警报工作模式。
  31. 如权利要求30所述的智能穿戴装置,其特征在于,所述监控模式设置子模块还包括:
    监控对象设置单元,设置所述智能穿戴装置的监控对象为儿童、老人、或犯人;
    监控对象/模式转换单元,与所述监控对象设置单元电连接,根据所述监控对象设置单元设置的所述监控对象,设置所述预设监控模式为儿童监护、老人看护或犯人追踪模式。
  32. 如权利要求26所述的智能穿戴装置,其特征在于,所述智能穿戴装置还包括报警模块,与所述监控控制模块电连接,该报警模块包括闪光报警子模块、声音报警子模块、和/或震动报警子模块;
    所述闪光报警子模块、声音报警子模块、和/或震动报警子模块在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信失败时,进行闪光、声音、和/或震动警报提醒。
  33. 如权利要求26所述的智能穿戴装置,其特征在于,所述智能穿戴装 置还包括定位模块,与所述监控控制模块电连接;
    所述定位模块在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信失败时,进行位置定位;
    所述述移动通信模块在所述监控控制模块控制下,发送定位位置信息。
  34. 如权利要求33所述的智能穿戴装置,其特征在于,所述定位模块还包括卫星定位子模块,
    该卫星定位子模块在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信失败时,进行卫星定位。
  35. 如权利要求34所述的智能穿戴装置,其特征在于,所述卫星定位子模块还包括GPS单元、BDS单元、和/或GLONASS单元,
    所述GPS单元、BDS单元、和/或GLONASS单元在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信失败时,使用GPS、BDS、和/或GLONASS进行定位。
  36. 如权利要求33所述的智能穿戴装置,其特征在于,所述定位模块还包括移动通信网络定位子模块,
    该移动通信网络定位子模块在所述监控控制模块控制下,当所述低频无线信号通信模块握手通信失败时,进行移动通信网络定位。
  37. 如权利要求26所述的智能穿戴装置,其特征在于,所述监控控制模块还包括休眠控制子模块,
    所述休眠控制子模块,当所述低频无线信号通信模块握手通信成功时,所述移动通信模块发送位置距离正常信息后,控制所述智能穿戴装置休眠;并根据预设休眠时间,唤醒所述智能穿戴装置。
  38. 如权利要求26所述的智能穿戴装置,其特征在于,所述低频无线信号通信模块还包括Sub-GHz通信子模块,该Sub-GHz通信子模块使用Sub-GHz无线信号进行所述低频无线信号通讯。
  39. 如权利要求38所述的智能穿戴装置,其特征在于,所述频率设置子模块还包括:
    国家地区设置单元,设置所述Sub-GHz无线信号的适用国家地区;
    国家地区/频率筛选单元,与所述国家地区设置单元电连接,根据国家地区设置单元设置的适用国家地区,筛选设置所述Sub-GHz无线信号的频率。
  40. 如权利要求38所述的智能穿戴装置,其特征在于,所述Sub-GHz通信子模块还包括发送单元,该发送单元发送握手请求命令。
  41. 如权利要求40所述的智能穿戴装置,其特征在于,所述Sub-GHz通信子模块还包括接收单元,该接收单元接收握手反馈命令。
  42. 如权利要求41所述的智能穿戴装置,其进一步特征在于,所述发送单元还发送发送休眠命令。
  43. 如权利要求38所述的智能穿戴装置,其特征在于,所述Sub-GHz通信子模块还包括接收单元,该接收单元接收握手请求命令。
  44. 如权利要求43所述的智能穿戴装置,其特征在于,所述Sub-GHz通信子模块还包括发送单元,该发送单元发送发送握手反馈命令。
  45. 如权利要求44所述的智能穿戴装置,其进一步特征在于,所述接收单元还接收所述休眠命令。
  46. 如权利要求26所述的智能穿戴装置,其特征在于,所述设置模块还包括监控位置中心设置子模块,与所述监控控制模块电连接,将监控装置、移动终端装置、或另一智能穿戴装置设置为所述预设监控位置中心;
    所述监控控制模块控制所述低频无线信号通信模块,与所述监控位置中心设置子模块设置的监控位置中心进行握手通信。
  47. 如权利要求26所述的智能穿戴装置,其特征在于,所述设置模块还包括监控信息管理中心设置子模块,与所述监控控制模块电连接,将监控装置、移动终端装置、或另一智能穿戴装置设置为监控信息管理中心;
    所述监控控制模块控制所述移动通信模块,向所述监控信息管理中心设置子模块设置的监控信息管理中心发送位置距离正常/异常信息。
  48. 如权利要求26所述的智能穿戴装置,其特征在于,所述智能穿戴装置还包括健康数据获取模块,与所述监控控制模块电连接,在所述监控 控制模块控制下获取当前用户的健康数据。
  49. 如权利要求48所述的智能穿戴装置,其特征在于,所述健康数据获取模块还包括运动量获取子模块和/或睡眠数据获取子模块;
    所述运动量获取子模块获取运动量数据;
    所述睡眠数据获取子模块获取睡眠时间、质量数据。
  50. 如权利要求48所述的智能穿戴装置,其进一步特征在于,当所述健康数据获取模块获取的健康数据偏离预设的正常范围时,所述监控控制模块控制所述移动通信模块、和/或所述报警模块发出求助警报。
  51. 一种与权利要求26-50任一所述的智能穿戴装置配合使用的移动终端装置,其特征在于,包括低频无线信号通信模块,所述低频无线信号通信模块与所述智能穿戴装置以预设低频无线信号进行握手通信。
  52. 如权利要求51所述的移动终端装置,其特征在于,所述低频无线信号通信模块还包括Sub-GHz通信子模块,该Sub-GHz通信子模块使用Sub-GHz无线信号进行所述低频无线信号通讯。
  53. 如权利要求52所述的移动终端装置,其特征在于,所述Sub-GHz通信子模块还包括发送单元、接收单元。
  54. 如权利要求51所述的移动终端装置,其特征在于,所述移动终端装置还包括移动通信模块和显示模块;其中:
    所述移动通信模块,接收所述所述智能穿戴装置发送的位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报;
    所述显示模块,与所述移动通信模块电连接,根据所述移动通信模块接收的数据,显示位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报。
  55. 如权利要求54所述的移动终端装置,其特征在于,所述移动终端装置还包括报警模块,该报警模块与所述移动通信模块电连接,包括闪光报警子模块、声音报警子模块、和/或震动报警子模块;
    当所述移动通信模块接收到位置距离异常信息和/或健康求助警报时,所述闪光报警子模块、声音报警子模块、和/或震动报警子模块,进 行闪光、声音、和/或震动警报提醒。
  56. 一种与权利要求26-50任一所述的智能穿戴装置配合使用的监控装置,其特征在于,包括低频无线信号通信模块,所述低频无线信号通信模块与所述智能穿戴装置以预设低频无线信号进行握手通信。
  57. 如权利要求56所述的监控装置,其特征在于,所述低频无线信号通信模块还包括Sub-GHz通信子模块,该Sub-GHz通信子模块使用Sub-GHz无线信号进行所述低频无线信号通讯。
  58. 如权利要求57所述的监控装置,其特征在于,所述Sub-GHz通信子模块还包括发送单元、接收单元。
  59. 如权利要求56所述的监控装置,其特征在于,所述监控装置还包括网络通信模块和显示模块;其中:
    所述网络通信模块,接收所述所述智能穿戴装置发送的位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报;
    所述显示模块,与所述网络通信模块电连接,根据所述网络通信模块接收的数据,显示位置距离正常/异常信息、定位位置信息、健康数据信息、和/或健康求助警报。
  60. 如权利要求59所述的监控装置,其特征在于,所述监控装置还包括报警模块,该报警模块与所述网络通信模块电连接,包括闪光报警子模块、声音报警子模块、和/或震动报警子模块;
    当所述网络通信模块接收到位置距离异常信息和/或健康求助警报时,所述闪光报警子模块、声音报警子模块、和/或震动报警子模块,进行闪光、声音、和/或震动警报提醒。
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