WO2018010128A1 - 智能穿戴设备上无线通信方式自由切换的方法及系统 - Google Patents

智能穿戴设备上无线通信方式自由切换的方法及系统 Download PDF

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Publication number
WO2018010128A1
WO2018010128A1 PCT/CN2016/089949 CN2016089949W WO2018010128A1 WO 2018010128 A1 WO2018010128 A1 WO 2018010128A1 CN 2016089949 W CN2016089949 W CN 2016089949W WO 2018010128 A1 WO2018010128 A1 WO 2018010128A1
Authority
WO
WIPO (PCT)
Prior art keywords
wearable device
smart wearable
flight mode
sim card
hotspot
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2016/089949
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English (en)
French (fr)
Inventor
王忠山
郑勇
张立新
倪志伟
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Water World Co Ltd
Original Assignee
Shenzhen Water World Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen Water World Co Ltd filed Critical Shenzhen Water World Co Ltd
Priority to PCT/CN2016/089949 priority Critical patent/WO2018010128A1/zh
Publication of WO2018010128A1 publication Critical patent/WO2018010128A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to the field of wireless communication of terminal devices, and in particular, to a method and system for freely switching wireless communication modes on a smart wearable device.
  • Bluetooth Bluetooth, Bluetooth
  • WIFI Wireless Fidelity, Wireless Broadband
  • /2G/3G/4G is the main wireless communication technology for smart wearable devices connected to smartphone apps (Appli C ati 0n , applications).
  • apps Appli C ati 0n , applications.
  • an APP application is installed on the smart phone corresponding to the smart wearable device, and the status of the smart wearable device is clearly understood through the APP.
  • the current animal smart wearable device and the user terminal are wirelessly connected through BT/WIFI/2G/3G/4G, and are fixed as one of the connection modes, and no switching is performed, and the 2G/3G/4G communication of the SIM card is in standby.
  • Frequent communication with the mobile network taking the 2G GSM terminal as an example, in the idle mode, the mobile network broadcast information is periodically monitored for about 60 milliseconds, and the location update information is periodically sent in the shortest 6 minutes, resulting in large power consumption and consumption of smart wear.
  • the device is on standby for more than half of the battery power.
  • the peak power of 2G GSM terminal wireless radiation can reach 2W, and the animal intelligent wearable device is close to the animal body, which is not conducive to the health of the animal.
  • the main object of the present invention is to provide a method and system for freely switching wireless communication modes on a smart wearable device, intelligently turning off a remote communication connection, reducing power consumption, and saving power;
  • the present invention provides a method for freely switching wireless communication modes on a smart wearable device, including the following steps:
  • the short-range communication hotspot is a WIFI hotspot or a Bluetooth hotspot
  • the remote communication is SIM card communication.
  • the step of turning off the remote communication includes: [0011] the determination result is the same and matching, and the user terminal receives the matching signal fed back by the smart wearable device through the SIM card communication;
  • the user terminal prompts whether to enter the flight mode
  • a command to close the SIM card communication signal is issued to the smart wearable device, and the SIM card communication signal is turned off by the smart wearable device to enter the flight mode.
  • the method further includes:
  • the step of entering the flight mode further includes:
  • the method further includes: [0019] not searching for the WIFI hotspot, the user terminal sends a command to close the SIM card communication signal through Bluetooth or SIM card communication to The smart wearable device, and the SIM card communication signal is turned off by the smart wearable device to enter the flight mode.
  • the method further includes:
  • the user terminal sends a command to enable the SIM card communication signal to the smart wearable device, and activates the SIM card communication signal through the smart wear device to exit the flight mode, and the smart wear device exits the flight mode on the user terminal.
  • the method further includes:
  • the flight mode is processed.
  • the step of processing the flight mode includes:
  • the step of enabling SIM card communication includes:
  • the user terminal receives a request for whether the smart wearable device feeds back through the SIM card to enter the flight mode
  • the user terminal issues a command to enable or continue to exit the flight mode.
  • the present invention further provides a system for freely switching wireless communication modes on a smart wearable device, including: [0034] a search unit, searching for a short-range communication hotspot through the smart wearable device;
  • the first determining unit searches for the short-range communication hotspot, and determines whether it is the same as the preset short-range communication hotspot by the smart wearable device;
  • the first closing unit if the determination result is the same and matches ⁇ , closes the remote communication.
  • the short-range communication hotspot is a WIFI hotspot or a Bluetooth hotspot
  • the remote communication is SIM card communication.
  • the first closing unit includes:
  • a prompting subunit the user terminal prompting whether to enter the flight mode
  • the first closing unit further includes:
  • the confirming subunit further includes displaying, on the user terminal, the smart wearable device entering the flight mode.
  • system further includes:
  • the second closing unit does not search for the WIFI hotspot, and the user terminal sends out the communication through Bluetooth or SIM card communication.
  • the command of the SIM card communication signal is closed to the smart wearable device, and the SIM card communication signal is turned off by the smart wearable device to enter the flight mode.
  • system further includes:
  • the enabling unit the user terminal sends a command to enable the SIM card communication signal to the smart wearable device, and activates the SIM card communication signal through the smart wearable device to exit the flight mode, and the smart wear device exits the flight mode on the user terminal.
  • system further includes:
  • the smart wearable device After the matching unit is disconnected from the WIFI hotspot or the Bluetooth connection, after the preset time arrives, the smart wearable device searches for the WIFI hotspot or Bluetooth;
  • the second determining unit searches for a WIFI hotspot or a Bluetooth device, and determines whether the preset is preset by the smart wearable device.
  • WIFI hotspot or Bluetooth is the same
  • the processing unit processes the flight mode according to the determination result.
  • the processing unit includes:
  • the first processing subunit if the determination result is the same and matches ⁇ , the flight mode is continued;
  • the second processing subunit if the judgment result is different, exits the flight mode and enables SIM card communication.
  • processing unit further includes:
  • a flight mode receiving subunit the user terminal receiving a request of the smart wearable device to feed back through the SIM card whether to enter the flight mode;
  • the command subunit the user terminal issues a command to enable or continue to exit the flight mode.
  • DRAWINGS 1 is a schematic flowchart of a method for freely switching a wireless communication mode on a smart wearable device according to an embodiment of the present invention
  • step S3 is a schematic diagram of a specific process of step S3 in the embodiment of the present invention.
  • FIG. 3 is a schematic diagram of a flow of a fixed loop detection in an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a system for freely switching a wireless communication mode on a smart wearable device according to an embodiment of the present invention
  • FIG. 5 is a schematic structural diagram of a first closing unit in an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a system according to another embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a processing unit in another embodiment of the present invention.
  • FIG. 1 is a schematic flowchart of a method for freely switching a wireless communication mode on a smart wearable device according to an embodiment of the present invention.
  • a method for freely switching a wireless communication mode on a smart wearable device including the following steps:
  • Step S1 searching for a short-range communication hotspot by using the smart wearable device
  • Step S2 Searching for the short-range communication hotspot, determining whether it is the same as the preset short-range communication hotspot by the smart wearable device;
  • Step S3 If the judgment result is the same and matches ⁇ , the remote communication is closed.
  • Remote communication of smart wearable devices typically requires uninterrupted transmission of signals, or listening to broadcast information, resulting in high power consumption and strong radiation.
  • the smart wearable device is in close proximity and does not have to start remote communication. Therefore, it is determined by step S1 and step S2 whether the current smart wearable device is in a short distance.
  • the short-range communication hotspot searched by the smart wearable device is the same as the preset short-range communication hotspot, it is determined to be in a short-range manner.
  • Remote communication can be turned off, reducing power consumption and reducing emissions.
  • the short-range communication hotspot is capable of communication at a short distance, and is automatically cut off when the distance is out of range, including a WIFI hotspot, a Bluetooth hotspot or other short-distance communication hotspots, and the remote communication is a long distance and a close distance.
  • Can communicate including long-distance communication methods such as SIM card communication.
  • long-distance communication methods such as SIM card communication.
  • the WIFI hotspot ID and the Bluetooth ID information of the user are preset, and when the short-range has a matching matching WIFI hotspot or Bluetooth matching connection, the smart wearable device is in the short-range, and the smart-closed device is closed.
  • the 2G/3G/4G wireless communication connection of the SIM card is reduced, the power consumption is reduced, the power is saved, and the radiation is reduced, which is beneficial to the health of the person wearing the smart wearable device; in the remote state, the smart wearable device cannot connect to the WIFI hotspot and the Bluetooth device.
  • 2G/3G/4G wireless communication connection of SIM card 2G/3G/4G wireless communication connection of SIM card. It is worth noting that the power consumption of the WIFI communication is greater than the power consumption of the 2G/3G/4G communication. In order to reduce the power consumption, in this embodiment, only the matching of the WIFI hotspot ID information is performed, and the communication connection is not performed.
  • the smart wearable device may be an animal smart wearable device worn on an animal for monitoring the animal by the user. It is worth noting that the smart wearable device may actually be worn by the child or the elderly. Smart wearable devices, such as watch watches, guard bracelets, etc.
  • an animal smart wearing device is taken as an example in the embodiment of the present invention.
  • the animal smart wearable device can include: an application processing module, a wireless antenna, a wireless radio module, a power management module, a storage module, an audio module, a GPS/WIFI/BT module, and a GPS/WIFI/BT antenna.
  • the application processing module is connected to control the radio frequency module and the GPS/WIFI/BT module, the wireless antenna and the radio frequency module complete the reception and transmission of the radio frequency signal, and the 2G/3G/4G multiple wireless communication system supporting the SIM card; the audio module is used for Alarm audio signal processing; power management module consists of dedicated power management chip, responsible for shutdown processing, power supply, battery charging and power management; storage module supports high-speed memory system; application processing module is responsible for recording and computing the animal carrier coordinate system Attitude information is transmitted to the user terminal; GPS/WIFI/BT module and GPS/WIFI/BT antenna are responsible for handling GPS/WIFI/BT related functions
  • the smart wearable device searches for the surrounding WIFI hotspot and Bluetooth, and compares with the preset WIFI hotspot and the Bluetooth ID information. If the comparison is the same, the connection is matched, and then the SIM card is closed. Communication instructions, thus closing the SIM card's 2G/3G/4G wireless communication connection, saving power and reducing power consumption
  • the application processing module When the application processing module receives an instruction to close the SIM card communication, the application processing module sends a 2G/ to the SIM card.
  • the G/3G/4G wireless communication connection is closed.
  • the application processing module receives the instruction to enable SIM card communication, the application processing module
  • the G/4G wireless communication connection is enabled.
  • the animal smart wearable device is provided with two modes, a home mode and an outdoor mode.
  • a WIFI hotspot is generally set in the home, so the ID address of the preset WIFI hotspot can be passed through the APP of the user terminal (ie, the smart device of the animal owner, including the mobile phone, the tablet, etc.).
  • the cloud server or Bluetooth is sent to the smart wearable device, and the WIFI module of the smart wearable device searches for the WIFI hotspot of the home and matches it.
  • the following user terminals use a mobile phone as an example.
  • the Bluetooth ID information matching may also be used as a bar for judging whether or not the proximity is determined. Pieces. It is worth noting that the power consumption of the WIFI communication is greater than the power consumption of the 2G/3G/4G communication. In order to reduce the power consumption, in this embodiment, only the matching of the WIFI hotspot ID information is performed, and the communication connection is not performed.
  • Bluetooth ID information can be used for identification and pairing.
  • the user can send the Bluetooth ID address of the mobile phone to the animal smart wearable device through the cloud server or Bluetooth through the App on the mobile phone, and the BT module of the animal smart wearable device searches for the B T ⁇ of the mobile phone to perform matching.
  • step S3 if the determination result is the same and is matched, the step of turning off the remote communication specifically includes:
  • Step S31 the determination result is the same and matching, and the user terminal receives the matching signal fed back by the smart wearable device through the SIM card communication;
  • the smart wearable device Regardless of the home mode or the outdoor mode, the smart wearable device defaults to 2G/3G/4G wireless communication of the SIM card, and the smart wearable device passes the 2G/3G/4G wireless after matching with the WIFI hotspot or Bluetooth.
  • the communication sends the matching signal to the mobile phone end of the user via the cloud server, and the mobile phone end of the user receives the feedback signal, indicating that the animal wearing device is at home (in the home mode) or the smart wearing device is in the close distance (in the outdoor mode).
  • the mobile phone end prompts whether to enter the flight mode according to the following step S32.
  • This flight mode is defined as remote communication off, ie the smart wearable device enters flight mode as long as the remote communication is turned off.
  • the 2G/3G/4G wireless communication of the smart wearable device SIM card is turned off, and the smart wearable device enters the flight mode.
  • Step S32 the user terminal prompts whether to enter the flight mode
  • the mobile terminal prompts whether to enter the flight mode, and the user can select whether to enter the flight mode according to actual conditions or actual needs.
  • Step S33 confirming entering the flight mode, issuing a command to close the SIM card communication signal to the smart wearable device, and turning off the SIM card communication signal through the smart wearable device to enter the flight mode.
  • step of the user terminal prompting whether to enter the flight mode may further include:
  • the mobile terminal prompts whether to enter the flight mode, when the user chooses not to enter the flight mode or the user does not make any selection (ie, no response), the mobile terminal does not issue a command to turn off the SIM card communication signal, and the smart wearable device Will not enter flight mode.
  • the step S1 may further include:
  • the user terminal sends a command to close the SIM card communication signal to the smart wearable device through Bluetooth or SIM card communication, and closes the SIM card communication signal through the smart wearable device to enter the flight mode.
  • the smart wearable device In the home mode, there is also no WIFI in the home, and the smart wearable device also cannot search for the preset WIFI hotspot, and the mobile phone can connect the smart wearable device through 2G/3G/4G or Bluetooth.
  • the command to close the SIM card communication signal can be sent to the smart wearable device through the mobile terminal, and the application processing module of the smart wearable device receives the command to close the SIM card communication, and the application processing module sends
  • the 2G/3G/4G wireless communication can be actively turned off by the above method, and the flight mode is entered to reduce power consumption, save power, and reduce radiation.
  • the user terminal issues a command to enable the SIM card communication signal to the smart wearable device, and activates the SIM card communication signal through the smart wearable device to exit the flight mode.
  • the animal smart wearable device can be connected to the mobile phone through the BT, and the mobile phone terminal can issue an instruction to enable the 2G/3G/4G wireless communication to the animal smart wearable device through the BT.
  • the 3G/4G wireless communication connection is enabled.
  • the smart wearable device exits the flight mode on the user terminal.
  • a fixed device is built in the animal smart wearable device, and the predetermined inter-turn length of the fixed device is greater than the minimum inter-turn interval of the 2G GSM periodic position update controller (T3212), that is, Set to greater than 6 minutes.
  • T3212 the minimum inter-turn interval of the 2G GSM periodic position update controller
  • the flight mode is processed.
  • the judgment result is different, that is, there is no preset WIFI hotspot or Bluetooth ID, indicating that the smart wearable device is remote. At this point, the smart wearable device automatically exits flight mode and enables SIM card communication.
  • the request for exiting the flight mode is sent to the app through the 2G/3G/4G wireless communication module; and the user terminal receives the request for the smart wearable device to enter the flight mode through the SIM card communication feedback.
  • the user can issue a command to enable or continue to exit the flight mode through the user terminal.
  • the user terminal receives a signal to exit the flight mode (this signal can be touched by the user by the user)
  • the terminal sends out a command to exit the flight mode to the smart wearable device, the smart wearable device keeps exiting the flight mode, and the user terminal displays the smart wearable device to exit the flight mode;
  • the process of the fixed loop detection can also be performed independently, and does not need to be performed after the steps of the above steps S1 to S3, that is, the animal smart wearable device can enter the flight mode through any mode, and the fixed loop detection can be implemented. .
  • an embodiment of the present invention further provides a system for freely switching wireless communication modes on a smart wearable device, where the system includes:
  • the search unit 10 searches for a short-range communication hotspot through the smart wearable device
  • the first determining unit 20 searches for the short-range communication hotspot, and determines whether it is the same as the preset short-range communication hotspot by the smart wearable device;
  • step S1 and step S2 it is determined by step S1 and step S2 whether the current smart wearable device is in a short distance.
  • the short-range communication hotspot searched by the smart wearable device is the same as the preset short-range communication hotspot, it is determined to be in a short-range manner.
  • Remote communication can be turned off, reducing power consumption and reducing emissions.
  • the short-range communication hotspot is capable of communication at a short distance, and is automatically cut off when the distance is out of range, including a WIFI hotspot, a Bluetooth hotspot or other short-distance communication hotspots, and the remote communication is a long distance and a close distance.
  • Can communicate including long-distance communication methods such as SIM card communication.
  • long-distance communication methods such as SIM card communication.
  • the WIFI hotspot ID and the Bluetooth ID information of the user are preset in the smart wearable device, and the WIFI hotspot or the Bluetooth matching match is matched in the short-range, and the smart wear setting is indicated.
  • the WIFI hotspot or the Bluetooth matching match is matched in the short-range, and the smart wear setting is indicated.
  • it intelligently turns off the 2G/3G/4G wireless communication connection of the SIM card, reduces power consumption, saves power, and reduces radiation, which is beneficial to the health of those wearing smart wearable devices.
  • the device cannot connect to the WIFI hotspot and the Bluetooth port, and the 2G/3G/4G wireless communication connection of the SIM card is enabled.
  • the smart wearable device may be an animal smart wearable device that is worn by the user on the animal for monitoring the animal. It is noted that the smart wearable device may also be a smart wearable device worn by the child or the elderly. For example, watch watches, guard bracelets, etc.
  • an animal smart wearing device is taken as an example in the embodiment of the present invention.
  • the animal smart wearable device can include: an application processing module, a wireless antenna, a wireless radio module, a power management module, a storage module, an audio module, a GPS/WIFI/BT module, and a GPS/WIFI/BT antenna.
  • the application processing module is connected to control the radio frequency module and the GPS/WIFI/BT module, the wireless antenna and the radio frequency module complete the reception and transmission of the radio frequency signal, and the 2G/3G/4G multiple wireless communication system supporting the SIM card; the audio module is used for Alarm audio signal processing; power management module consists of dedicated power management chip, responsible for shutdown processing, power supply, battery charging and power management; storage module supports high-speed memory system; application processing module is responsible for recording and computing the animal carrier coordinate system Attitude information is transmitted to the user terminal; GPS/WIFI/BT module and GPS/WIFI/BT antenna are responsible for handling GPS/WIFI/BT related functions
  • the smart wearable device searches for the surrounding WIFI hotspot and Bluetooth, and compares with the preset WIFI hotspot and the Bluetooth ID information. If the comparison is the same, the connection is matched, and then the SIM card is closed. Communication instructions, thus closing the SIM card's 2G/3G/4G wireless communication connection, saving power and reducing power consumption
  • the application processing module When the application processing module receives an instruction to close the SIM card communication, the application processing module sends a 2G/ to the SIM card.
  • the G/3G/4G wireless communication connection is closed.
  • the application processing module receives an instruction to enable SIM card communication, the application processing module
  • the G/4G wireless communication connection is enabled.
  • a WIFI hotspot is generally set in the home, so the ID address of the preset WIFI hotspot can be passed through the APP of the user terminal (ie, the smart device of the animal owner, including the mobile phone, the tablet, etc.).
  • the cloud server or Bluetooth is sent to the smart wearable device, and the WIFI module of the smart wearable device searches for the WIFI hotspot of the home and matches it.
  • the following user terminals use a mobile phone as an example.
  • the Bluetooth ID information matching may also be used as a condition for judging whether or not the proximity is made. It is worth noting that the power consumption of the WIFI communication is greater than the power consumption of the 2G/3G/4G communication. In order to reduce the power consumption, in this embodiment, only the matching of the WIFI hotspot ID information is performed, and the communication connection is not performed.
  • Bluetooth ID information can be used for identification and pairing.
  • the user can send the Bluetooth ID address of the mobile phone to the animal smart wearable device through the cloud server or Bluetooth through the App on the mobile phone, and the BT module of the animal smart wearable device searches for the B T ⁇ of the mobile phone to perform matching.
  • the foregoing first closing unit 30 includes:
  • the smart wearable device Regardless of the home mode or the outdoor mode, the smart wearable device defaults to 2G/3G/4G wireless communication of the SIM card, and the smart wearable device passes the 2G/3G/4G wireless after matching with the WIFI hotspot or Bluetooth.
  • the communication sends the matching signal to the mobile phone end of the user via the cloud server, and the mobile phone end of the user receives the feedback signal, indicating that the animal wearing device is at home (in the home mode) or the smart wearing device is in the close distance (in the outdoor mode).
  • the mobile phone end prompts whether to enter the flight mode as described below.
  • This flight mode is defined as remote communication off, ie the smart wearable device enters flight mode as long as the remote communication is turned off.
  • the smart wearable device SIM card's 2G/3 G/4G wireless communication is turned off, and the smart wearable device enters the flight mode.
  • the confirmation subunit 302 confirms entering the flight mode, sends a command to close the SIM card communication signal to the smart wearable device, and turns off the SIM card communication signal through the smart wearable device to enter the flight mode.
  • the first closing unit 30 further includes:
  • the command of the IM card communication signal, the smart wearable device does not enter the flight mode.
  • the mobile terminal prompts whether to enter the flight mode.
  • the mobile terminal does not issue a command to turn off the SIM card communication signal, and the smart wearable device Will not enter flight mode.
  • the above system further includes:
  • the second closing unit does not search for the WIFI hotspot, and the user terminal sends a command to close the SIM card communication signal to the smart wearable device through Bluetooth or SIM card communication, and closes the SIM card communication signal through the smart wearable device to enter the flight mode. .
  • the smart wearable device In the home mode, there is also no WIFI in the home, and the smart wearable device also cannot search for the preset WIFI hotspot, and the mobile phone can connect the smart wearable device through 2G/3G/4G or Bluetooth.
  • the command to close the SIM card communication signal can be sent to the smart wearable device through the mobile terminal, and the application processing module of the smart wearable device receives the command to close the SIM card communication, and the application processing module sends
  • the 2G/3G/4G wireless communication can be actively turned off by the above method, and the flight mode is entered to reduce power consumption, save power, and reduce radiation.
  • the above system further includes: [0149] The enabling unit, the user terminal issues a command to enable the SIM card communication signal to the smart wearable device, and activates the SIM card communication signal through the smart wearable device to exit the flight mode.
  • the animal smart wearable device can be connected to the mobile phone through the BT, and the mobile phone terminal can issue an instruction to enable the 2G/3G/4G wireless communication to the animal smart wearable device through the BT.
  • the 3G/4G wireless communication connection is enabled.
  • the smart wearable device exits the flight mode on the user terminal.
  • the above system may also include:
  • the matching unit 40 After the matching unit 40, after disconnecting the WIFI hotspot or the Bluetooth matching connection, after the preset time arrives, searching for the WIFI hotspot or Bluetooth through the smart wearable device; it can be understood that after entering the flight mode, Whether or not the WIFI hotspot or Bluetooth matching connection is disconnected, the WIFI hotspot or Bluetooth is searched through the smart wearable device.
  • a fixed device is built in the animal smart wearing device, and the predetermined inter-turn length of the fixed device is greater than the minimum inter-turn interval of the 2G GSM periodic position update device (T3212), that is, greater than 6 minutes.
  • T3212 the minimum inter-turn interval of the 2G GSM periodic position update device
  • the second determining unit 50 searches for a WIFI hotspot or a Bluetooth device, and determines whether it is the same as the preset WIFI hotspot or Bluetooth through the smart wearable device;
  • the processing unit 60 processes the flight mode according to the determination result.
  • the processing unit 60 includes:
  • the first processing sub-unit 600 determines that the result is the same and matches, that is, matches the preset WIFI hotspot or Bluetooth ID, indicating that the smart wearable device is in the short-range, and continues to maintain the flight mode;
  • the second processing sub-unit 601 determines that the result is different, that is, there is no preset WIFI hotspot or Bluetooth ID, indicating that the smart wearable device is remote. At this point, the smart wearable device automatically exits flight mode and enables SIM card communication.
  • processing unit 60 further includes:
  • the flight mode receiving subunit 602 after the smart wearable device enables SIM card communication, passes the 2G/3G/4G
  • the wireless communication module sends a request to the app to exit the flight mode; the user terminal receives a request from the smart wearable device to enter the flight mode through the SIM card communication feedback;
  • the command sub-unit 603 can issue a command to enable or continue to exit the flight mode through the user terminal according to actual needs.
  • the user terminal receives the signal of exiting the flight mode (this signal can be sent by the user touching the user terminal), the command to exit the flight mode is issued to the smart wearable device, and the smart wearable device keeps exiting the flight mode, the user The terminal displays that the smart wearable device exits the flight mode;
  • the user terminal when the user terminal receives the signal that the flight mode is enabled or does not exit the flight mode (this signal can be sent by the user to touch the user terminal), an instruction to enable the flight mode is issued to the smart wearable device, and the smart wearable device receives the instruction,
  • the method and system for freely switching the wireless communication mode on the smart wearable device provided in the embodiment of the present invention, the WIFI hotspot or the Bluetooth matching connection in the short range, intelligently turning off the S IM of the remote communication
  • the card's 2G/3G/4G wireless communication connection reduces power consumption, saves power, and reduces radiation; remotely cannot connect to WIFI hotspots and Bluetooth ports, and activates 2G/3G/4G wireless communication connections of SIM cards.
  • the present invention includes apparatus related to performing one or more of the operations described herein.
  • These devices may be specially designed and manufactured for the required purposes, or may also include known devices in a general purpose computer.
  • These devices have computer programs stored therein that are selectively activated or reconfigured.
  • Such computer programs may be stored in a device (eg, computer) readable medium or in any type of medium suitable for storing electronic instructions and respectively coupled to a bus, including but not limited to any Types of disks (including floppy disks, hard disks, CDs, CD-ROMs, and magneto-optical disks), ROM (Read-Only Memory, Read Only Memory), RAM (Random Access Memory), EPROM (Erasable Programmable Read-Only)
  • the readable medium includes a form that can be read by a device (eg, a computer) Any medium that stores or transmits information.
  • each block of the block diagrams and/or block diagrams and/or flow diagrams can be implemented by computer program instructions and in the block diagrams and/or block diagrams and/or flow diagrams. The combination of boxes.
  • these computer program instructions can be implemented by a general purpose computer, a professional computer, or a processor of other programmable data processing methods, such that the processor is executed by a computer or other programmable data processing method.
  • the block diagrams and/or block diagrams of the invention and/or the schemes specified in the blocks or blocks of the flow diagram are invented.

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Abstract

本发明提出一种智能穿戴设备上无线通信方式自由切换的方法及系统,包括:通过智能穿戴设备搜索近程通信热点;搜索到近程通信热点时,通过智能穿戴设备判断是否与预设近程通信热点相同;判断结果为相同并匹配时,则关闭远程通信。本发明中提供的智能穿戴设备上无线通信方式自由切换的方法及系统,智能关闭远程通信连接,降低功耗,节约电量;同时降低辐射。

Description

智能穿戴设备上无线通信方式自由切换的方法及系统 技术领域
[0001] 本发明涉及终端设备无线通信领域, 特别涉及一种智能穿戴设备上无线通信方 式自由切换的方法及系统。
背景技术
[0002] [0002]动物的智能穿戴设备可以让人们更好地了解家犬等动物的重要信息。 BT
(Bluetooth, 蓝牙) /WIFI(Wireless Fidelity , 无线宽带) /2G/3G/4G等是智能穿戴 设备与智能手机 APP(AppliCati0n, 应用程序)连接的主要无线通信技术。 一般在 智能手机上对应于智能穿戴设备安装有 APP应用程序, 通过 APP清楚地了解智能 穿戴设备的状态。
[0003] 当前动物智能穿戴设备与用户终端通过 BT/WIFI/2G/3G/4G无线连接, 且固定为 其中一种连接方式, 不会进行切换, SIM卡的 2G/3G/4G通信在待机吋频繁与移 动网络进行通信; 以 2G GSM终端为例, 在空闲模式下, 大约 60毫秒周期性地监 听移动网络广播信息, 最短 6分钟周期性发送位置更新信息, 导致功耗大, 消耗 了智能穿戴设备待机一半以上的电池电量。 2G GSM终端无线辐射峰值功率可达 到 2W, 动物智能穿戴设备贴近动物身体, 不利于动物身体健康。
技术问题
[0004] 本发明的主要目的为提供一种智能穿戴设备上无线通信方式自由切换的方法及 系统, 智能关闭远程通信连接, 降低功耗, 节约电量; 同吋降低辐射。
问题的解决方案
技术解决方案
[0005] [0004]本发明提出一种智能穿戴设备上无线通信方式自由切换的方法, 包括以 下步骤:
[0006] 通过智能穿戴设备搜索近程通信热点;
[0007] 搜索到近程通信热点吋, 通过智能穿戴设备判断是否与预设近程通信热点相同 [0008] 判断结果为相同并匹配吋, 则关闭远程通信。
[0009] 进一步地, 所述近程通信热点为 WIFI热点或蓝牙热点, 所述远程通信为 SIM卡 通信。
[0010] 进一步地, 所述判断结果为相同并匹配吋, 则关闭远程通信的步骤包括: [0011] 判断结果为相同并匹配吋, 用户终端接收智能穿戴设备通过 SIM卡通信反馈的 匹配信号;
[0012] 用户终端提示是否进入飞行模式;
[0013] 确认进入飞行模式吋, 发出关闭 SIM卡通信信号的命令至智能穿戴设备, 并通 过智能穿戴设备关闭 SIM卡通信信号, 进入飞行模式。
[0014] 进一步地, 所述用户终端提示是否进入飞行模式的步骤之后还包括:
[0015] 不进入飞行模式或者不确认进入飞行模式, 则不发出关闭 SIM卡通信信号的命 令, 智能穿戴设备不进入飞行模式。
[0016] 进一步地, 所述进入飞行模式的步骤还包括:
[0017] 用户终端上显示智能穿戴设备进入飞行模式。
[0018] 进一步地, 所述通过智能穿戴设备搜索近程通信热点的步骤之后还包括: [0019] 搜索不到 WIFI热点吋, 用户终端通过蓝牙或 SIM卡通信发出关闭 SIM卡通信信 号的命令至智能穿戴设备, 并通过智能穿戴设备关闭 SIM卡通信信号, 进入飞行 模式。
[0020] 进一步地, 所述进入飞行模式的步骤之后还包括:
[0021] 用户终端发出启用 SIM卡通信信号的命令至智能穿戴设备, 并通过智能穿戴设 备启用 SIM卡通信信号, 退出飞行模式, 用户终端上显示智能穿戴设备退出飞行 模式。
[0022] 进一步地, 所述进入飞行模式的步骤之后还包括:
[0023] 断幵 WIFI热点或者蓝牙的匹配连接之后, 在预设的吋间到达吋, 通过智能穿戴 设备搜索 WIFI热点或蓝牙;
[0024] 搜索到 WIFI热点或蓝牙吋, 通过智能穿戴设备判断是否与预设 WIFI热点或蓝 牙相同;
[0025] 根据判断结果, 对飞行模式进行处理。 [0026] 进一步地, 所述根据判断结果, 对飞行模式进行处理的步骤包括:
[0027] 判断结果为相同并匹配吋, 则继续保持飞行模式;
[0028] 判断结果为不同吋, 则退出飞行模式, 启用 SIM卡通信。
[0029] 进一步地, 所述判断结果为不同吋, 则退出飞行模式, 启用 SIM卡通信的步骤 之后包括:
[0030] 用户终端接收智能穿戴设备通过 SIM卡通信反馈的是否进入飞行模式的请求;
[0031] 用户终端发出启用或继续退出飞行模式的命令。
[0032]
[0033] 本发明还提供了一种智能穿戴设备上无线通信方式自由切换的系统, 包括: [0034] 搜索单元, 通过智能穿戴设备搜索近程通信热点;
[0035] 第一判断单元, 搜索到近程通信热点吋, 通过智能穿戴设备判断是否与预设近 程通信热点相同;
[0036] 第一关闭单元, 判断结果为相同并匹配吋, 则关闭远程通信。
[0037] 进一步地, 所述近程通信热点为 WIFI热点或蓝牙热点, 所述远程通信为 SIM卡 通信。
[0038] 进一步地, 所述第一关闭单元包括:
[0039] 接收子单元, 判断结果为相同并匹配吋, 用户终端接收智能穿戴设备通过 SIM 卡通信反馈的匹配信号;
[0040] 提示子单元, 用户终端提示是否进入飞行模式;
[0041] 确认子单元, 确认进入飞行模式吋, 发出关闭 SIM卡通信信号的命令至智能穿 戴设备, 并通过智能穿戴设备关闭 SIM卡通信信号, 进入飞行模式。
[0042] 进一步地, 所述第一关闭单元还包括:
[0043] 不确认子单元, 不进入飞行模式或者不确认进入飞行模式, 则不发出关闭 SIM 卡通信信号的命令, 智能穿戴设备不进入飞行模式。
[0044] 进一步地, 所述确认子单元还包括在用户终端上显示智能穿戴设备进入飞行模 式。
[0045] 进一步地, 所述系统还包括:
[0046] 第二关闭单元, 搜索不到 WIFI热点吋, 用户终端通过蓝牙或 SIM卡通信发出关 闭 SIM卡通信信号的命令至智能穿戴设备, 并通过智能穿戴设备关闭 SIM卡通信 信号, 进入飞行模式。
[0047] 进一步地, 所述系统还包括:
[0048] 启用单元, 用户终端发出启用 SIM卡通信信号的命令至智能穿戴设备, 并通过 智能穿戴设备启用 SIM卡通信信号, 退出飞行模式, 用户终端上显示智能穿戴设 备退出飞行模式。
[0049] 进一步地, 所述系统还包括:
[0050] 定吋单元, 断幵 WIFI热点或者蓝牙的匹配连接之后, 在预设的吋间到达吋, 通 过智能穿戴设备搜索 WIFI热点或蓝牙;
[0051] 第二判断单元, 搜索到 WIFI热点或蓝牙吋, 通过智能穿戴设备判断是否与预设
WIFI热点或蓝牙相同;
[0052] 处理单元, 根据判断结果, 对飞行模式进行处理。
[0053] 进一步地, 所述处理单元包括:
[0054] 第一处理子单元, 判断结果为相同并匹配吋, 则继续保持飞行模式;
[0055] 第二处理子单元, 判断结果为不同吋, 则退出飞行模式, 启用 SIM卡通信。
[0056] 进一步地, 所述处理单元还包括:
[0057] 飞行模式接收子单元, 用户终端接收智能穿戴设备通过 SIM卡通信反馈的是否 进入飞行模式的请求;
[0058] 命令子单元, 用户终端发出启用或继续退出飞行模式的命令。
发明的有益效果
有益效果
[0059] [0005]本发明中提供的智能穿戴设备上无线通信方式自由切换的方法及系统, 具有以下有益效果:
[0060] 本发明中提供的智能穿戴设备上无线通信方式自由切换的方法及系统, 在近程 有 WIFI热点或者蓝牙匹配连接吋, 智能关闭掉远程通信的 SIM卡 2G/3G/4G无线 通信连接, 降低功耗, 节约电量, 同吋降低辐射。
对附图的简要说明
附图说明 [0061] [0006]图 1是本发明实施例中智能穿戴设备上无线通信方式自由切换的方法流 程示意图;
[0062] 图 2是本发明实施例中步骤 S3的具体流程示意图;
[0063] 图 3是本发明实施例中定吋循环检测流程示意图;
[0064] 图 4是本发明实施例中智能穿戴设备上无线通信方式自由切换的系统结构示意 图;
[0065] 图 5是本发明实施例中第一关闭单元结构示意图;
[0066] 图 6是本发明另一实施例中系统结构示意图;
[0067] 图 7是本发明另一实施例中处理单元结构示意图。
[0068] 本发明目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步说明。
本发明的实施方式
[0069] [0008]下面详细描述本发明的实施例, 所述实施例的示例在附图中示出, 其中 自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元 件。 下面通过参考附图描述的实施例是示例性的, 仅用于解释本发明, 而不能 解释为对本发明的限制。
[0070] 本技术领域技术人员可以理解, 除非特意声明, 这里使用的单数形式"一"、 " 一个"、 "所述"、 "上述 "和"该"也可包括复数形式。 应该进一步理解的是, 本发 明的说明书中使用的措辞"包括"是指存在所述特征、 整数、 步骤、 操作、 元件和 /或组件, 但是并不排除存在或添加一个或多个其他特征、 整数、 步骤、 操作、 元件、 组件和 /或它们的组。 应该理解, 当我们称元件被"连接"或"耦接"到另一 元件吋, 它可以直接连接或耦接到其他元件, 或者也可以存在中间元件。 此外 , 这里使用的"连接"或"耦接"可以包括无线连接或无线耦接。 这里使用的措辞" 和 /或"包括一个或更多个相关联的列出项的全部或任一单元和全部组合。
[0071] 本技术领域技术人员可以理解, 除非另外定义, 这里使用的所有术语 (包括技 术术语和科学术语) , 具有与本发明所属领域中的普通技术人员的一般理解相 同的意义。 还应该理解的是, 诸如通用字典中定义的那些术语, 应该被理解为 具有与现有技术的上下文中的意义一致的意义, 并且除非像这里一样被特定定 义, 否则不会用理想化或过于正式的含义来解释。
[0072] 参照图 1, 为本发明实施例中智能穿戴设备上无线通信方式自由切换的方法流 程示意图。
[0073] 本发明实施例中提出一种智能穿戴设备上无线通信方式自由切换的方法, 包括 以下步骤:
[0074] 步骤 Sl, 通过智能穿戴设备搜索近程通信热点;
[0075] 步骤 S2, 搜索到近程通信热点吋, 通过智能穿戴设备判断是否与预设近程通信 热点相同;
[0076] 步骤 S3, 判断结果为相同并匹配吋, 则关闭远程通信。
[0077] 智能穿戴设备的远程通信通常需要不间断发射信号, 或者监听广播信息, 导致 功耗大, 且辐射强。 在实际过程中, 智能穿戴设备处于近距离吋, 不必幵启远 程通信。 因此, 通过步骤 S1以及步骤 S2检测判断当前智能穿戴设备是否处于近 程, 当智能穿戴设备搜索到的近程通信热点与预设近程通信热点相同吋, 则判 断为处于近程, 此吋便可关闭远程通信, 降低功耗, 并减少辐射。
[0078] 在本实施例中, 上述近程通信热点为近距离才能进行通信, 距离超出范围则自 动切断, 包括 WIFI热点、 蓝牙热点或者其它近距离通信热点, 上述远程通信为 远距离和近距离均可通信, 包括 SIM卡通信等远距离通信方式。 为了便于说明, 以下近程通信热点以 WIFI热点和蓝牙热点进行阐述, 远程通信以 SIM卡通信进行 阐述。
[0079] 在智能穿戴设备中预设用户的 WIFI热点 ID以及蓝牙 ID信息, 在近程有和预设 匹配的 WIFI热点或者蓝牙进行匹配连接吋, 则表示智能穿戴设备在近程, 则智 能关闭掉 SIM卡的 2G/3G/4G无线通信连接, 降低功耗, 节约电量, 同吋降低辐 射, 有利于佩戴智能穿戴设备者的身体健康; 在远程吋, 智能穿戴设备不能连 接 WIFI热点以及蓝牙吋, 幵启 SIM卡的 2G/3G/4G无线通信连接。 值得注意的是 , WIFI通信的功耗大于 2G/3G/4G通信功耗, 为了降低功耗, 本实施例中只是进 行 WIFI热点 ID信息的匹配, 而不进行通信连接。
[0080] 具体地, 上述智能穿戴设备可以为用户监护动物而佩戴在动物身上的动物智能 穿戴设备, 值得注意的是, 该智能穿戴设备其实也可以为佩戴于小孩、 老人身 上的智能穿戴设备, 比如监护手表、 监护手环等。
[0081] 为了便于说明, 本发明实施例中以动物智能穿戴设备为例进行阐述。 该动物智 能穿戴设备可以包括: 应用处理模块、 无线天线、 无线射频模块、 电源管理模 块、 存储模块、 音频模块、 GPS/WIFI/BT模块以及 GPS/WIFI/BT天线。 应用处理 模块连接控制无线射频模块以及 GPS/WIFI/BT模块, 无线天线和无线射频模块完 成无线射频信号的接收和发射, 支持 SIM卡的 2G/3G/4G多种无线通信制式; 音 频模块用于报警音频信号的处理; 电源管理模块由专用电源管理芯片组成, 负 责幵关机处理、 供电、 电池充电以及电源管理; 存储模块支持高速存储器系统 ; 应用处理模块负责记录与运算出动物载体坐标系下的姿态信息并传输至用户 终端; GPS/WIFI/BT模块以及 GPS/WIFI/BT天线负责处理 GPS/WIFI/BT相关功能
[0082] 具体地, 智能穿戴设备搜到周边的 WIFI热点以及蓝牙, 并与预设的 WIFI热点 以及蓝牙 ID信息进行比对, 比对为相同吋, 则匹配连接, 此吋则发出关闭 SIM卡 通信的指令, 从而关闭 SIM卡的 2G/3G/4G无线通信连接, 节省用电, 降低功耗
, 并降低辐射。
[0083] 当应用处理模块接收到关闭 SIM卡通信的指令吋, 应用处理模块向 SIM卡的 2G/
3G/4G无线通讯 MODEM (调制解调器) 发出 AT+CFUN=0的 AT指令, SIM卡的 2
G/3G/4G无线通信连接则关闭。
[0084] 进一步地, 当应用处理模块接收到启用 SIM卡通信的指令吋, 应用处理模块向
SIM卡的 2G/3G/4G无线通讯 MODEM发出 AT+CFUN=1的 AT指令, SIM卡的 2G/3
G/4G无线通信连接则启用。
[0085] 在又一实施例中, 为动物智能穿戴设备设置有两种模式, 居家模式以及户外模 式。
[0086] 具体地, 在居家模式下, 家庭中一般设置有 WIFI热点, 因此可通过用户终端 ( 即动物主人的智能设备, 包括手机、 平板等) 的 APP将预设的 WIFI热点的 ID地 址通过云服务器或者蓝牙发给智能穿戴设备, 智能穿戴设备的 WIFI模块搜索到 家庭的 WIFI热点并进行匹配。 为了便于阐述, 以下用户终端以手机为例。
[0087] 进一步地, 在居家模式下, 也可以使用蓝牙 ID信息匹配作为判断是否近程的条 件。 值得注意的是, WIFI通信的功耗大于 2G/3G/4G通信功耗, 为了降低功耗, 本实施例中只是进行 WIFI热点 ID信息的匹配, 而不进行通信连接。
[0088] 在户外模式下, 没有预设的家庭 WIFI热点, 但不可否认的是, 用户可以使用手 机等设备幵启 WIFI热点, 并设置为预设 WIFI热点, 然而由于对手机等设备的耗 电、 耗流量等因素, 一般不采取这种措施; 因此在户外模式下, 可采用蓝牙的 I D信息进行识别配对。 用户可通过手机上的 App将手机的蓝牙 ID地址通过云服务 器或者蓝牙发给动物智能穿戴设备, 动物智能穿戴设备的 BT模块搜索到手机的 B T吋, 进行匹配。
[0089] 当上述匹配动作完成吋, 则还可以进行以下动作。
[0090] 进一步地, 参照图 2, 上述步骤 S3中, 判断结果为相同并匹配吋, 则关闭远程 通信的步骤具体包括:
[0091] 步骤 S31, 判断结果为相同并匹配吋, 用户终端接收智能穿戴设备通过 SIM卡 通信反馈的匹配信号;
[0092] 无论是居家模式还是户外模式, 智能穿戴设备默认 SIM卡的 2G/3G/4G无线通信 为幵启状态, 智能穿戴设备通过与 WIFI热点或蓝牙匹配之后, 均通过 2G/3G/4G 无线通信将匹配信号经云服务器发送至用户的手机端, 用户的手机端接收到反 馈信号吋, 显示动物穿戴设备已在家中 (居家模式下) 或者显示智能穿戴设备 处于近距离 (户外模式下) , 此吋手机端按照下述步骤 S32所述的提示是否进入 飞行模式。 该飞行模式定义为远程通信关闭, 即只要远程通信关闭, 智能穿戴 设备便进入飞行模式。 具体地, 在本实施例中, 可以理解为智能穿戴设备 SIM卡 的 2G/3G/4G无线通信关闭, 智能穿戴设备便进入飞行模式。
[0093] 步骤 S32, 用户终端提示是否进入飞行模式;
[0094] 手机端提示是否进入飞行模式吋, 此吋用户可以根据实际情况或者实际需要, 选择是否进入飞行模式。
[0095] 步骤 S33, 确认进入飞行模式吋, 发出关闭 SIM卡通信信号的命令至智能穿戴 设备, 并通过智能穿戴设备关闭 SIM卡通信信号, 进入飞行模式。
[0096] 当用户选择进入飞行模式吋, 手机端接收到确认进入飞行模式的信号, 发出关 闭 SIM卡通信信号的命令至智能穿戴设备; 智能穿戴设备的应用处理模块接收到 关闭 SIM卡通信的指令吋, 应用处理模块向 SIM卡的 2G/3G/4G无线通讯 MODEM 发出 AT+CFUN=0的 AT指令, SIM卡的 2G/3G/4G无线通信连接则关闭 SIM卡通信 信号, 智能穿戴设备进入飞行模式。 此吋, 手机端上显示智能穿戴设备进入飞 行模式。
[0097] 进一步地, 上述步骤 S32中, 用户终端提示是否进入飞行模式的步骤之后还可 以包括:
[0098] 不进入飞行模式或者不确认进入飞行模式, 则不发出关闭 SIM卡通信信号的命 令, 智能穿戴设备不进入飞行模式。
[0099] 手机端上提示是否进入飞行模式, 当用户选择不进入飞行模式或者用户没有做 出任何选择 (即无响应) 吋, 手机端则不发出关闭 SIM卡通信信号的命令, 智能 穿戴设备则不会进入飞行模式。
[0100] 进一步地, 上述步骤 S1中, 通过智能穿戴设备搜索近程通信热点的步骤之后还 可以包括:
[0101] 搜索不到 WIFI热点吋, 用户终端通过蓝牙或 SIM卡通信发出关闭 SIM卡通信信 号的命令至智能穿戴设备, 并通过智能穿戴设备关闭 SIM卡通信信号, 进入飞行 模式。
[0102] 在居家模式下, 家庭中也存在没有 WIFI的情况, 此吋智能穿戴设备也搜索不到 预设 WIFI热点, 手机可以通过 2G/3G/4G或者蓝牙连接智能穿戴设备。 在居家模 式下不必幵启 SIM卡通信, 因此可以通过手机端发出关闭 SIM卡通信信号的命令 至智能穿戴设备, 智能穿戴设备的应用处理模块接收到关闭 SIM卡通信的指令吋 , 应用处理模块向 SIM卡的 2G/3G/4G无线通讯 MODEM发出 AT+CFUN=0的 AT指 令, SIM卡的 2G/3G/4G无线通信连接则关闭 SIM卡通信信号, 智能穿戴设备进入 飞行模式。 此吋, 手机端上显示智能穿戴设备进入飞行模式。
[0103] 进一步地, 在户外模式下, 也可以通过上述方法主动关掉 2G/3G/4G无线通讯, 进入飞行模式, 以降低功耗, 节省电量, 降低辐射。
[0104] 进一步地, 在动物智能穿戴设备进入飞行模式之后还可以进行如下步骤:
[0105] 用户终端发出启用 SIM卡通信信号的命令至智能穿戴设备, 并通过智能穿戴设 备启用 SIM卡通信信号, 退出飞行模式。 [0106] 在 SIM卡的 2G/3G/4G通信关闭吋, 动物智能穿戴设备可以通过 BT与手机相连 接, 手机端可以通过 BT向动物智能穿戴设备发出启用 2G/3G/4G无线通信的指令 , 动物智能穿戴设备通过 BT接收到启用 2G/3G/4G无线通信的指令后, 应用处理 模块向 SIM卡的 2G/3G/4G无线通讯 MODEM发出 AT+CFUN=1的 AT指令, SIM卡 的 2G/3G/4G无线通信连接则被启用。 同吋, 用户终端上显示智能穿戴设备退出 飞行模式。
[0107] 进一步地, 参照图 3, 在动物智能穿戴设备进入飞行模式之后也可以进行如下 步骤:
[0108] 断幵 WIFI热点或者蓝牙的匹配连接之后, 在预设的吋间到达吋, 通过智能穿戴 设备搜索 WIFI热点或蓝牙; 可以理解的是, 也可以在进入飞行模式之后, 无论 是否断幵 WIFI热点或者蓝牙的匹配连接, 均在预设的吋间到达吋, 通过智能穿 戴设备搜索 WIFI热点或蓝牙。
[0109] 具体地, 在动物智能穿戴设备中内置一个定吋器, 定吋器预设的定吋吋间长度 大于 2G GSM周期性位置更新定吋器 (T3212) 的最小吋间间隔, 即可以设置为 大于 6分钟。 当定吋器吋间到吋, 搜索 WIFI热点或蓝牙, 并判断是否与设定的 WI FI热点或蓝牙 ID相同。
[0110] 搜索到 WIFI热点或蓝牙吋, 通过智能穿戴设备判断是否与预设 WIFI热点或蓝 牙相同;
[0111] 根据判断结果, 对飞行模式进行处理。
[0112] 判断结果为相同并匹配吋, 即匹配上预设的 WIFI热点或蓝牙 ID, 表示智能穿戴 设备在近程, 则继续保持飞行模式;
[0113] 判断结果为不同吋, 即没有预设的 WIFI热点或蓝牙 ID, 表示智能穿戴设备在远 程。 此吋, 智能穿戴设备自动退出飞行模式, 并启用 SIM卡通信。
[0114] 智能穿戴设备启用 SIM卡通信后, 则通过 2G/3G/4G无线通信模块向 app发是否 退出飞行模式的请求; 用户终端接收智能穿戴设备通过 SIM卡通信反馈的是否进 入飞行模式的请求; 根据实际需要, 用户可以通过用户终端发出启用或继续退 出飞行模式的命令。
[0115] 具体地, 当用户终端接收到退出飞行模式的信号 (此信号可由用户触摸用户终 端发出) 吋, 则发出退出飞行模式的命令至智能穿戴设备, 智能穿戴设备则保 持退出飞行模式, 用户终端显示智能穿戴设备退出飞行模式;
[0116] 当用户终端接收到启用飞行模式或者不退出飞行模式的信号 (此信号可由用户 触摸用户终端发出) 吋, 则发出启用飞行模式的指令至智能穿戴设备, 智能穿 戴设备接收到指令, 通过应用处理模块向 SIM卡的 2G/3G/4G无线通讯 MODEM发 出 AT+CFUN=0的 AT指令, SIM卡的 2G/3G/4G无线通信连接则关闭, 智能穿戴设 备进入飞行模式。
[0117] 在下一个定吋吋间到达后, 即再重复以上流程。 值得注意的是, 该定吋循环检 测的流程也可以独立执行, 不必在上述步骤 S1至 S3的步骤之后才执行, 即动物 智能穿戴设备通过任意模式进入飞行模式, 均可实施该定吋循环检测。
[0118] 为了进一步对本发明中的方法进行阐述, 参照图 4, 本发明实施例中还提供了 一种智能穿戴设备上无线通信方式自由切换的系统, 该系统包括:
[0119] 搜索单元 10, 通过智能穿戴设备搜索近程通信热点;
[0120] 第一判断单元 20, 搜索到近程通信热点吋, 通过智能穿戴设备判断是否与预设 近程通信热点相同;
[0121] 第一关闭单元 30, 判断结果为相同并匹配吋, 则关闭远程通信。
[0122] 智能穿戴设备的远程通信通常需要不间断发射信号, 或者监听广播信息, 导致 功耗大, 且辐射强。 在实际过程中, 智能穿戴设备处于近距离吋, 不必幵启远 程通信。 因此, 通过步骤 S1以及步骤 S2检测判断当前智能穿戴设备是否处于近 程, 当智能穿戴设备搜索到的近程通信热点与预设近程通信热点相同吋, 则判 断为处于近程, 此吋便可关闭远程通信, 降低功耗, 并减少辐射。
[0123] 在本实施例中, 上述近程通信热点为近距离才能进行通信, 距离超出范围则自 动切断, 包括 WIFI热点、 蓝牙热点或者其它近距离通信热点, 上述远程通信为 远距离和近距离均可通信, 包括 SIM卡通信等远距离通信方式。 为了便于说明, 以下近程通信热点以 WIFI热点和蓝牙热点进行阐述, 远程通信以 SIM卡通信进行 阐述。
[0124] 在本实施例中, 在智能穿戴设备中预设用户的 WIFI热点 ID以及蓝牙 ID信息, 在近程有和预设匹配的 WIFI热点或者蓝牙进行匹配连接吋, 则表示智能穿戴设 备在近程, 则智能关闭掉 SIM卡的 2G/3G/4G无线通信连接, 降低功耗, 节约电 量, 同吋降低辐射, 有利于佩戴智能穿戴设备者的身体健康; 在远程吋, 智能 穿戴设备不能连接 WIFI热点以及蓝牙吋, 幵启 SIM卡的 2G/3G/4G无线通信连接
[0125] 具体地, 上述智能穿戴设备可以为用户监护动物而佩戴在动物身上的动物智能 穿戴设备, 值得注意的是, 该智能穿戴设备其实也可以为佩戴于小孩、 老人身 上的智能穿戴设备, 比如监护手表、 监护手环等。
[0126] 为了便于说明, 本发明实施例中以动物智能穿戴设备为例进行阐述。 该动物智 能穿戴设备可以包括: 应用处理模块、 无线天线、 无线射频模块、 电源管理模 块、 存储模块、 音频模块、 GPS/WIFI/BT模块以及 GPS/WIFI/BT天线。 应用处理 模块连接控制无线射频模块以及 GPS/WIFI/BT模块, 无线天线和无线射频模块完 成无线射频信号的接收和发射, 支持 SIM卡的 2G/3G/4G多种无线通信制式; 音 频模块用于报警音频信号的处理; 电源管理模块由专用电源管理芯片组成, 负 责幵关机处理、 供电、 电池充电以及电源管理; 存储模块支持高速存储器系统 ; 应用处理模块负责记录与运算出动物载体坐标系下的姿态信息并传输至用户 终端; GPS/WIFI/BT模块以及 GPS/WIFI/BT天线负责处理 GPS/WIFI/BT相关功能
[0127] 具体地, 智能穿戴设备搜到周边的 WIFI热点以及蓝牙, 并与预设的 WIFI热点 以及蓝牙 ID信息进行比对, 比对为相同吋, 则匹配连接, 此吋则发出关闭 SIM卡 通信的指令, 从而关闭 SIM卡的 2G/3G/4G无线通信连接, 节省用电, 降低功耗
, 并降低辐射。
[0128] 当应用处理模块接收到关闭 SIM卡通信的指令吋, 应用处理模块向 SIM卡的 2G/
3G/4G无线通讯 MODEM (调制解调器) 发出 AT+CFUN=0的 AT指令, SIM卡的 2
G/3G/4G无线通信连接则关闭。
[0129] 进一步地, 当应用处理模块接收到启用 SIM卡通信的指令吋, 应用处理模块向
SIM卡的 2G/3G/4G无线通讯 MODEM发出 AT+CFUN=1的 AT指令, SIM卡的 2G/3
G/4G无线通信连接则启用。
[0130] 在又一实施例中, 为动物智能穿戴设备设置有两种模式, 居家模式以及户外模 式。
[0131] 具体地, 在居家模式下, 家庭中一般设置有 WIFI热点, 因此可通过用户终端 ( 即动物主人的智能设备, 包括手机、 平板等) 的 APP将预设的 WIFI热点的 ID地 址通过云服务器或者蓝牙发给智能穿戴设备, 智能穿戴设备的 WIFI模块搜索到 家庭的 WIFI热点并进行匹配。 为了便于阐述, 以下用户终端以手机为例。
[0132] 进一步地, 在居家模式下, 也可以使用蓝牙 ID信息匹配作为判断是否近程的条 件。 值得注意的是, WIFI通信的功耗大于 2G/3G/4G通信功耗, 为了降低功耗, 本实施例中只是进行 WIFI热点 ID信息的匹配, 而不进行通信连接。
[0133] 在户外模式下, 没有预设的家庭 WIFI热点, 但不可否认的是, 用户可以使用手 机等设备幵启 WIFI热点, 并设置为预设 WIFI热点, 然而由于对手机等设备的耗 电、 耗流量等因素, 一般不采取这种措施; 因此在户外模式下, 可采用蓝牙的 I D信息进行识别配对。 用户可通过手机上的 App将手机的蓝牙 ID地址通过云服务 器或者蓝牙发给动物智能穿戴设备, 动物智能穿戴设备的 BT模块搜索到手机的 B T吋, 进行匹配。
[0134] 进一步地, 参照图 5, 上述第一关闭单元 30包括:
[0135] 接收子单元 300, 判断结果为相同并匹配吋, 用户终端接收智能穿戴设备通过 S IM卡通信反馈的匹配信号;
[0136] 无论是居家模式还是户外模式, 智能穿戴设备默认 SIM卡的 2G/3G/4G无线通信 为幵启状态, 智能穿戴设备通过与 WIFI热点或蓝牙匹配之后, 均通过 2G/3G/4G 无线通信将匹配信号经云服务器发送至用户的手机端, 用户的手机端接收到反 馈信号吋, 显示动物穿戴设备已在家中 (居家模式下) 或者显示智能穿戴设备 处于近距离 (户外模式下) , 此吋手机端按照下述所述的提示是否进入飞行模 式。 该飞行模式定义为远程通信关闭, 即只要远程通信关闭, 智能穿戴设备便 进入飞行模式。 具体地, 在本实施例中, 可以理解为智能穿戴设备 SIM卡的 2G/3 G/4G无线通信关闭, 智能穿戴设备便进入飞行模式。
[0137] 提示子单元 301, 用户终端提示是否进入飞行模式;
[0138] 手机端提示是否进入飞行模式吋, 此吋用户可以根据实际情况或者实际需要, 选择是否进入飞行模式。 [0139] 确认子单元 302, 确认进入飞行模式吋, 发出关闭 SIM卡通信信号的命令至智 能穿戴设备, 并通过智能穿戴设备关闭 SIM卡通信信号, 进入飞行模式。
[0140] 当用户选择进入飞行模式吋, 手机端接收到确认进入飞行模式的信号, 发出关 闭 SIM卡通信信号的命令至智能穿戴设备; 智能穿戴设备的应用处理模块接收到 关闭 SIM卡通信的指令吋, 应用处理模块向 SIM卡的 2G/3G/4G无线通讯 MODEM 发出 AT+CFUN=0的 AT指令, SIM卡的 2G/3G/4G无线通信连接则关闭 SIM卡通信 信号, 智能穿戴设备进入飞行模式。 此吋, 手机端上显示智能穿戴设备进入飞 行模式。
[0141] 进一步地, 上述第一关闭单元 30还包括:
[0142] 不确认子单元 303, 不进入飞行模式或者不确认进入飞行模式, 则不发出关闭 S
IM卡通信信号的命令, 智能穿戴设备不进入飞行模式。
[0143] 手机端上提示是否进入飞行模式, 当用户选择不进入飞行模式或者用户没有做 出任何选择 (即无响应) 吋, 手机端则不发出关闭 SIM卡通信信号的命令, 智能 穿戴设备则不会进入飞行模式。
[0144] 进一步地, 上述系统还包括:
[0145] 第二关闭单元, 搜索不到 WIFI热点吋, 用户终端通过蓝牙或 SIM卡通信发出关 闭 SIM卡通信信号的命令至智能穿戴设备, 并通过智能穿戴设备关闭 SIM卡通信 信号, 进入飞行模式。
[0146] 在居家模式下, 家庭中也存在没有 WIFI的情况, 此吋智能穿戴设备也搜索不到 预设 WIFI热点, 手机可以通过 2G/3G/4G或者蓝牙连接智能穿戴设备。 在居家模 式下不必幵启 SIM卡通信, 因此可以通过手机端发出关闭 SIM卡通信信号的命令 至智能穿戴设备, 智能穿戴设备的应用处理模块接收到关闭 SIM卡通信的指令吋 , 应用处理模块向 SIM卡的 2G/3G/4G无线通讯 MODEM发出 AT+CFUN=0的 AT指 令, SIM卡的 2G/3G/4G无线通信连接则关闭 SIM卡通信信号, 智能穿戴设备进入 飞行模式。 此吋, 手机端上显示智能穿戴设备进入飞行模式。
[0147] 进一步地, 在户外模式下, 也可以通过上述方法主动关掉 2G/3G/4G无线通讯, 进入飞行模式, 以降低功耗, 节省电量, 降低辐射。
[0148] 进一步地, 上述系统还包括: [0149] 启用单元, 用户终端发出启用 SIM卡通信信号的命令至智能穿戴设备, 并通过 智能穿戴设备启用 SIM卡通信信号, 退出飞行模式。
[0150] 在 SIM卡的 2G/3G/4G通信关闭吋, 动物智能穿戴设备可以通过 BT与手机相连 接, 手机端可以通过 BT向动物智能穿戴设备发出启用 2G/3G/4G无线通信的指令 , 动物智能穿戴设备通过 BT接收到启用 2G/3G/4G无线通信的指令后, 应用处理 模块向 SIM卡的 2G/3G/4G无线通讯 MODEM发出 AT+CFUN=1的 AT指令, SIM卡 的 2G/3G/4G无线通信连接则被启用。 同吋, 用户终端上显示智能穿戴设备退出 飞行模式。
[0151] 进一步地, 参照图 6, 上述系统也可以包括:
[0152] 定吋单元 40, 断幵 WIFI热点或者蓝牙的匹配连接之后, 在预设的吋间到达吋, 通过智能穿戴设备搜索 WIFI热点或蓝牙; 可以理解的是, 也可以在进入飞行模 式之后, 无论是否断幵 WIFI热点或者蓝牙的匹配连接, 均在预设的吋间到达吋 , 通过智能穿戴设备搜索 WIFI热点或蓝牙。
[0153] 具体地, 在动物智能穿戴设备中内置一个定吋器, 定吋器预设的定吋吋间长度 大于 2G GSM周期性位置更新定吋器 (T3212) 的最小吋间间隔, 即大于 6分钟 。 当定吋器吋间到吋, 搜索 WIFI热点或蓝牙, 并判断是否与设定的 WIFI热点或 蓝牙 ID相同。
[0154] 第二判断单元 50, 搜索到 WIFI热点或蓝牙吋, 通过智能穿戴设备判断是否与预 设 WIFI热点或蓝牙相同;
[0155] 处理单元 60, 根据判断结果, 对飞行模式进行处理。
[0156] 进一步地, 上述处理单元 60包括:
[0157] 第一处理子单元 600, 判断结果为相同并匹配吋, 即匹配上预设的 WIFI热点或 蓝牙 ID, 表示智能穿戴设备在近程, 则继续保持飞行模式;
[0158] 第二处理子单元 601, 判断结果为不同吋, 即没有预设的 WIFI热点或蓝牙 ID, 表示智能穿戴设备在远程。 此吋, 智能穿戴设备自动退出飞行模式, 并启用 SIM 卡通信。
[0159] 进一步地, 上述处理单元 60还包括:
[0160] 飞行模式接收子单元 602, 智能穿戴设备启用 SIM卡通信后, 则通过 2G/3G/4G 无线通信模块向 app发是否退出飞行模式的请求; 用户终端接收智能穿戴设备通 过 SIM卡通信反馈的是否进入飞行模式的请求;
[0161] 命令子单元 603, 根据实际需要, 用户可以通过用户终端发出启用或继续退出 飞行模式的命令。
[0162] 具体地, 当用户终端接收到退出飞行模式的信号 (此信号可由用户触摸用户终 端发出) 吋, 则发出退出飞行模式的命令至智能穿戴设备, 智能穿戴设备则保 持退出飞行模式, 用户终端显示智能穿戴设备退出飞行模式;
[0163] 当用户终端接收到启用飞行模式或者不退出飞行模式的信号 (此信号可由用户 触摸用户终端发出) 吋, 则发出启用飞行模式的指令至智能穿戴设备, 智能穿 戴设备接收到指令, 通过应用处理模块向 SIM卡的 2G/3G/4G无线通讯 MODEM发 出 AT+CFUN=0的 AT指令, SIM卡的 2G/3G/4G无线通信连接则关闭, 智能穿戴设 备进入飞行模式。
[0164] 综上所述, 为本发明实施例中提供的智能穿戴设备上无线通信方式自由切换的 方法及系统, 在近程有 WIFI热点或者蓝牙匹配连接吋, 智能关闭掉远程通信的 S IM卡的 2G/3G/4G无线通信连接, 降低功耗, 节约电量, 同吋降低辐射; 远程不 能连接 WIFI热点以及蓝牙吋, 幵启 SIM卡的 2G/3G/4G无线通信连接。
[0165] 本领域技术人员可以理解, 本发明包括涉及用于执行本申请中所述操作中的一 项或多项的设备。 这些设备可以为所需的目的而专门设计和制造, 或者也可以 包括通用计算机中的已知设备。 这些设备具有存储在其内的计算机程序, 这些 计算机程序选择性地激活或重构。 这样的计算机程序可以被存储在设备 (例如 , 计算机) 可读介质中或者存储在适于存储电子指令并分别耦联到总线的任何 类型的介质中, 所述计算机可读介质包括但不限于任何类型的盘 (包括软盘、 硬盘、 光盘、 CD-ROM、 和磁光盘) 、 ROM (Read-Only Memory, 只读存储器 ) 、 RAM (Random Access Memory, 随即存储器) 、 EPROM (Erasable Programmable Read-Only
Memory, 可擦写可编程只读存储器) 、 EEPROM (Electrically Erasable
Programmable Read-Only Memory, 电可擦可编程只读存储器) 、 闪存、 磁性卡 片或光线卡片。 也就是, 可读介质包括由设备 (例如, 计算机) 以能够读的形 式存储或传输信息的任何介质。
[0166] 本技术领域技术人员可以理解, 可以用计算机程序指令来实现这些结构图和 / 或框图和 /或流图中的每个框以及这些结构图和 /或框图和 /或流图中的框的组合。 本技术领域技术人员可以理解, 可以将这些计算机程序指令提供给通用计算机 、 专业计算机或其他可编程数据处理方法的处理器来实现, 从而通过计算机或 其他可编程数据处理方法的处理器来执行本发明公幵的结构图和 /或框图和 /或流 图的框或多个框中指定的方案。
[0167] 本技术领域技术人员可以理解, 本发明中已经讨论过的各种操作、 方法、 流程 中的步骤、 措施、 方案可以被交替、 更改、 组合或刪除。 进一步地, 具有本发 明中已经讨论过的各种操作、 方法、 流程中的其他步骤、 措施、 方案也可以被 交替、 更改、 重排、 分解、 组合或刪除。 进一步地, 现有技术中的具有与本发 明中公幵的各种操作、 方法、 流程中的步骤、 措施、 方案也可以被交替、 更改 、 重排、 分解、 组合或刪除。
[0168] 以上所述仅为本发明的优选实施例, 并非因此限制本发明的专利范围, 凡是利 用本发明说明书及附图内容所作的等效结构或等效流程变换, 或直接或间接运 用在其他相关的技术领域, 均同理包括在本发明的专利保护范围内。

Claims

权利要求书
[权利要求 1] 一种智能穿戴设备上无线通信方式自由切换的方法, 其特征在于, 包 括以下步骤: 通过智能穿戴设备搜索近程通信热点; 搜索到近程通信 热点吋, 通过智能穿戴设备判断是否与预设近程通信热点相同; 判断 结果为相同并匹配吋, 则关闭远程通信。
[权利要求 2] 根据权利要求 1所述的方法, 其特征在于, 所述近程通信热点为 WIFI 热点或蓝牙热点, 所述远程通信为 SIM卡通信。
[权利要求 3] 根据权利要求 2所述的方法, 其特征在于, 所述判断结果为相同并匹 配吋, 则关闭远程通信的步骤包括: 判断结果为相同并匹配吋, 用户 终端接收智能穿戴设备通过 SIM卡通信反馈的匹配信号; 用户终端提 示是否进入飞行模式; 确认进入飞行模式吋, 发出关闭 SIM卡通信信 号的命令至智能穿戴设备, 并通过智能穿戴设备关闭 SIM卡通信信号 , 进入飞行模式。
[权利要求 4] 根据权利要求 3所述的方法, 其特征在于, 所述用户终端提示是否进 入飞行模式的步骤之后还包括: 不进入飞行模式或者不确认进入飞行 模式, 则不发出关闭 SIM卡通信信号的命令, 智能穿戴设备不进入飞 行模式。
[权利要求 5] 根据权利要求 3所述的方法, 其特征在于, 所述进入飞行模式的步骤 还包括: 用户终端上显示智能穿戴设备进入飞行模式。
[权利要求 6] 根据权利要求 2所述的方法, 其特征在于, 所述通过智能穿戴设备搜 索近程通信热点的步骤之后还包括: 搜索不到 WIFI热点吋, 用户终 端通过蓝牙或 SIM卡通信发出关闭 SIM卡通信信号的命令至智能穿戴 设备, 并通过智能穿戴设备关闭 SIM卡通信信号, 进入飞行模式。
[权利要求 7] 根据权利要求 3或 6所述的方法, 其特征在于, 所述进入飞行模式的步 骤之后包括: 用户终端发出启用 SIM卡通信信号的命令至智能穿戴设 备, 并通过智能穿戴设备启用 SIM卡通信信号, 退出飞行模式, 用户 终端上显示智能穿戴设备退出飞行模式。
[权利要求 8] 根据权利要求 3或 6所述的方法, 其特征在于, 所述进入飞行模式的步 骤之后还包括: 断幵 WIFI热点或者蓝牙的匹配连接之后, 在预设的 吋间到达吋, 通过智能穿戴设备搜索 WIFI热点或蓝牙; 搜索到 WIFI 热点或蓝牙吋, 通过智能穿戴设备判断是否与预设 WIFI热点或蓝牙 相同; 根据判断结果, 对飞行模式进行处理。
根据权利要求 8所述的方法, 其特征在于, 所述根据判断结果, 对飞 行模式进行处理的步骤包括: 判断结果为相同并匹配吋, 则继续保持 飞行模式; 判断结果为不同吋, 则退出飞行模式, 启用 SIM卡通信。 根据权利要求 9所述的方法, 其特征在于, 所述判断结果为不同吋, 则退出飞行模式, 启用 SIM卡通信的步骤之后包括: 用户终端接收智 能穿戴设备通过 SIM卡通信反馈的是否进入飞行模式的请求; 用户终 端发出启用或继续退出飞行模式的命令。
一种智能穿戴设备上无线通信方式自由切换的系统, 其特征在于, 包 括: 搜索单元, 通过智能穿戴设备搜索近程通信热点; 第一判断单元 , 搜索到近程通信热点吋, 通过智能穿戴设备判断是否与预设近程通 信热点相同; 第一关闭单元, 判断结果为相同并匹配吋, 则关闭远程 通信。
根据权利要求 11所述的系统, 其特征在于, 所述近程通信热点为 WIF I热点或蓝牙热点, 所述远程通信为 SIM卡通信。
根据权利要求 12所述的系统, 其特征在于, 所述第一关闭单元包括: 接收子单元, 判断结果为相同并匹配吋, 用户终端接收智能穿戴设备 通过 SIM卡通信反馈的匹配信号; 提示子单元, 用户终端提示是否进 入飞行模式; 确认子单元, 确认进入飞行模式吋, 发出关闭 SIM卡通 信信号的命令至智能穿戴设备, 并通过智能穿戴设备关闭 SIM卡通信 信号, 进入飞行模式。
根据权利要求 13所述的系统, 其特征在于, 所述第一关闭单元还包括 : 不确认子单元, 不进入飞行模式或者不确认进入飞行模式, 则不发 出关闭 SIM卡通信信号的命令, 智能穿戴设备不进入飞行模式。
根据权利要求 13所述的系统, 其特征在于, 所述确认子单元还包括在 用户终端上显示智能穿戴设备进入飞行模式。
根据权利要求 12所述的系统, 其特征在于, 所述系统还包括: 第二关 闭单元, 搜索不到 WIFI热点吋, 用户终端通过蓝牙或 SIM卡通信发出 关闭 SIM卡通信信号的命令至智能穿戴设备, 并通过智能穿戴设备关 闭 SIM卡通信信号, 进入飞行模式。
根据权利要求 13或 16所述的系统, 其特征在于, 所述系统还包括: 启 用单元, 用户终端发出启用 SIM卡通信信号的命令至智能穿戴设备, 并通过智能穿戴设备启用 SIM卡通信信号, 退出飞行模式, 用户终端 上显示智能穿戴设备退出飞行模式。
根据权利要求 13或 16所述的系统, 其特征在于, 所述系统还包括: 定 吋单元, 断幵 WIFI热点或者蓝牙的匹配连接之后, 在预设的吋间到 达吋, 通过智能穿戴设备搜索 WIFI热点或蓝牙; 第二判断单元, 搜 索到 WIFI热点或蓝牙吋, 通过智能穿戴设备判断是否与预设 WIFI热 点或蓝牙相同; 处理单元, 根据判断结果, 对飞行模式进行处理。 根据权利要求 18所述的系统, 其特征在于, 所述处理单元包括: 第一 处理子单元, 判断结果为相同并匹配吋, 则继续保持飞行模式; 第二 处理子单元, 判断结果为不同吋, 则退出飞行模式, 启用 SIM卡通信
根据权利要求 19所述的系统, 其特征在于, 所述处理单元还包括: 飞 行模式接收子单元, 用户终端接收智能穿戴设备通过 SIM卡通信反馈 的是否进入飞行模式的请求; 命令子单元, 用户终端发出启用或继续 退出飞行模式的命令。
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CN106211133A (zh) * 2016-07-13 2016-12-07 深圳市沃特沃德股份有限公司 智能穿戴设备上无线通信方式自由切换的方法及系统

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