WO2017128295A1 - Procédé et appareil d'émission de données pour dispositif portable intelligent - Google Patents

Procédé et appareil d'émission de données pour dispositif portable intelligent Download PDF

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Publication number
WO2017128295A1
WO2017128295A1 PCT/CN2016/072796 CN2016072796W WO2017128295A1 WO 2017128295 A1 WO2017128295 A1 WO 2017128295A1 CN 2016072796 W CN2016072796 W CN 2016072796W WO 2017128295 A1 WO2017128295 A1 WO 2017128295A1
Authority
WO
WIPO (PCT)
Prior art keywords
data transmission
wearable device
smart wearable
data
indication information
Prior art date
Application number
PCT/CN2016/072796
Other languages
English (en)
Chinese (zh)
Inventor
杨志豪
王越超
熊涛
Original Assignee
石姗姗
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 石姗姗 filed Critical 石姗姗
Priority to PCT/CN2016/072796 priority Critical patent/WO2017128295A1/fr
Publication of WO2017128295A1 publication Critical patent/WO2017128295A1/fr

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B13/00Transmission systems characterised by the medium used for transmission, not provided for in groups H04B3/00 - H04B11/00

Definitions

  • the present invention relates to the field of smart wearable devices, and in particular, to a data transmission method and apparatus for a smart wearable device.
  • Two kinds of communication methods are mainly used for communication between existing smart wearable devices, smart wearable devices and other terminal devices.
  • One type is wired communication, and a communication line such as a cable is required.
  • the use and carrying of such a device are inconvenient, and the application scenario is limited.
  • the other is wireless communication, but the transmission efficiency of wireless signals in the air is low, it is easy to be affected by obstacles, and the power consumption is large; the security of the wireless communication transmission is also greatly affected due to the transmission of wireless communication. .
  • the embodiments of the present invention provide a data transmission method and device for a smart wearable device, so as to implement the smart wearable device to transmit data through the human body, reduce communication power consumption, and improve communication security.
  • a data transmission method of a smart wearable device includes: [0005] when the smart wearable device acquires the data transmission indication information, converting the data information to be transmitted into a micro electric field Transmitting, by the electrode, the micro electric field signal to the human body to transmit the data information to be transmitted to the target device through the human body; and/or
  • the smart wearable device acquires the data reception indication information
  • the micro electric field signal transmitted by the human body is acquired through the electrode, and the micro electric field signal is converted into data information.
  • a data transmission apparatus for a smart wearable device is provided, where the data transmission apparatus includes
  • a transmission module configured to: when the smart wearable device acquires the data transmission indication information, convert the data information to be transmitted into a micro electric field signal, and transmit the micro electric field signal to the human body through the electrode, to pass the human body
  • the data information to be transmitted is transmitted to the target device; and/or [0009]
  • the receiving module is configured to: when the smart wearable device acquires the data receiving indication information, acquire the micro electric field signal transmitted by the human body through the electrode, and convert the micro electric field signal into the data information.
  • the embodiment of the invention converts the data information into a micro electric field signal suitable for the human body, and performs data transmission through the human body, thereby effectively solving the problem that the wired transmission mode is inconvenient to carry and use, and avoids the problem.
  • the waterproof problem of the cable socket in the wired transmission and solves the problem of large power consumption and low security in the wireless transmission mode, and the security of data transmission is guaranteed.
  • FIG. 1 is a schematic structural diagram of a data transmission system according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural diagram of a smart wearable device according to an embodiment of the present invention.
  • FIG. 3 is a flowchart of implementing a data transmission method of a smart wearable device according to an embodiment of the present invention
  • FIG. 4 is a structural diagram of a data transmission apparatus of a smart wearable device according to an embodiment of the present invention.
  • FIG. 1 is a block diagram showing the structure of a data transmission system according to an embodiment of the present invention. For the convenience of description, only parts related to the embodiment of the present invention are shown.
  • the data transmission method of the smart wearable device may be applied to the data transmission system.
  • the data transmission system includes a smart wearable device 1, and the terminal device 2, at least one of which is used.
  • the user 3 serves as a bridge for transmitting signals between the smart wearable device 1 and the terminal device 2, and may be a smart wear device 1_user 3_terminal device 2, or a smart wear device 1_user 3_user 3 _ terminal
  • the device 2 can also be a smart wearable device 1 - user 3 - user 3 - smart wearable device 1.
  • the terminal device 2 includes, but is not limited to, a smart phone, a tablet computer, a television, a smart wearable device, an access device, an in-vehicle device, and the like.
  • FIG. 2 is a schematic diagram showing the structure of the smart wearable device according to an embodiment of the present invention.
  • the smart wearable device 1 includes:
  • At least one electrode 11, the electrode is for contacting a human skin and receiving a micro electric field signal of the human body or transmitting a micro electric field signal to the human body.
  • a signal transmitter 13 connected to the electrode is used to convert a micro electric field signal output by the processor into a micro electric field signal and transmit it to the electrode.
  • a processor 14 coupled to the signal receiver 12 and the signal transmitter 13, respectively, for displaying the data information.
  • the signal receiver 12, the signal transmitter 13 and the processor 14 may also be integrated.
  • At least one electrode is added to the existing smart wearable device.
  • the electrodes are in contact with human skin as much as possible, for receiving micro-electric field signals of the human body or for transmitting micro-electric field signals to the human body.
  • the electrodes may be arranged along the side of the smart wearable device that is in contact with the user, and the arrangement manner may be various, which is not limited herein, so that the improved smart wearable device can transmit data through the electrodes and the human body.
  • the smart wearable device converts the data information to be transmitted into a micro electric field signal, and then transmits the micro electric field signal to the human body through the electrode, thereby implementing the human body communication technology on the smart wearable device, Helps reduce the power consumption of smart wearable devices.
  • the data information to be transmitted includes, but is not limited to, user identity information, access control information (such as home, community, school, etc.), car electronic key information, etc.
  • the smart wearable device passes the human body to other smart wearable devices or The terminal device transmits the above data information, which improves the security of the communication.
  • the smart wearable device may further include:
  • an interaction device 15 connected to the processor, the interaction device 15 is configured to acquire an interaction with a user
  • the interaction device 15 includes but is not limited to one of a gravity sensor, a gyroscope, a touch display, a button, a photoelectric sensor, a camera, or any combination thereof.
  • the smart wearable device further includes:
  • a power supply circuit 16 connected to the signal receiver 12, the signal transmitter 13, the processor 14, and the interaction device 15, respectively.
  • the power supply circuit 16 may be a battery, a super capacitor, a solar battery, or an external power supply, etc., for providing power to the signal receiver 12, the signal transmitter 13, the processor 14, and the interaction device 15. .
  • the smart wearable device as the transmitting end can acquire the data information to be transmitted through the interaction device, convert the data information to be transmitted into a micro electric field signal, and use the human body to transmit the data information to be transmitted. Transmitted to the target device; the smart wearable device as the receiving end receives the micro electric field signal transmitted by the human body through the electrode, and converts the micro electric field signal into data information.
  • the smart wearable device can acquire data transmission indication information or data reception indication information according to skin contact between the user and the user. For example, when the contact time is 3 seconds, if the data information to be transmitted is obtained by the smart wearable device corresponding to the user A (preferably selected and obtained through the interaction device), and the user A and the user B shake hands over each other. After 3 seconds, the smart wearable device corresponding to the user A obtains the data transmission indication information and converts the data information to be transmitted into a micro electric field signal, and transmits the data to the smart wearable device corresponding to the user B through the user A and the user B shaking the user A.
  • the contact time is 3 seconds
  • the smart wearable device corresponding to the user A obtains the data transmission indication information and converts the data information to be transmitted into a micro electric field signal, and transmits the data to the smart wearable device corresponding to the user B through the user A and the user B shaking the user A.
  • the smart wearable device corresponding to the user B obtains the data receiving indication information, and receives the micro electric field signal transmitted by the human body, and converts the micro electric field signal into data information, thereby realizing the intelligence corresponding to the smart wearable device corresponding to the user B of the user A. Human body data transmission between wearable devices.
  • the terminal device that performs data transmission with the smart wearable device should also have the composition described in the foregoing embodiment of FIG. 2.
  • the terminal device that performs data transmission with the smart wearable device should also have the composition described in the foregoing embodiment of FIG. 2.
  • FIG. 3 is a flowchart showing an implementation process of a data transmission method of a smart wearable device according to an embodiment of the present invention.
  • the data transmission method includes:
  • step S301 when the smart wearable device acquires the data transmission indication information, the data information to be transmitted is converted into a micro electric field signal, and the micro electric field signal is transmitted to the human body through the electrode to pass through the human body. Transmitting the data information to be transmitted to the target device.
  • the data information to be transmitted includes, but is not limited to, user identity information, access control information, car electronic key information, etc., and the data information to be transmitted is acquired according to an operation of the user on the touch screen.
  • the smart wearable device converts the data information to be transmitted into a micro electric field signal, and then transmits the micro electric field signal to the human body through the electrode, and transmits the data information to other terminal devices through the human body, thereby
  • the human body communication technology is implemented on the smart wearable device, which is beneficial to reducing the power consumption of the smart wearable device and improving the security of the communication.
  • the smart wearable device may also serve as a receiving end of the data information, where the data transmission method further includes:
  • step S302 when the smart wearable device acquires the data reception indication information, the micro electric field signal transmitted by the human body is acquired through the electrode, and the micro electric field signal is converted into data information.
  • the smart wearable device after receiving the micro electric field signal transmitted by the human body, the smart wearable device first performs filtering processing on the micro electric field signal to filter out the bioelectric signal in the micro electric field signal, and then after the filtering process
  • the micro electric field signal is amplified, and the amplified micro electric field signal is converted into data information.
  • the method further includes:
  • the smart wearable device presents the data information.
  • the manner in which the data information is presented includes, but is not limited to, performing display or playback processing in accordance with the format of the data information.
  • the data transmission method further includes:
  • the smart wearable device does not receive the data transmission indication information or the data reception indication information within the preset interval, and closes the data transmission function.
  • the default state of the data transmission function can be set to the off state.
  • the data transmission function is turned off to reduce the power consumption of the smart wearable device.
  • the preset interval is set by the user, and is not limited herein.
  • the data transmission method further includes: [0047] when the smart wearable device detects the call indication information triggered by the application, the data transmission function is started.
  • the application on the smart wearable device needs to perform data transmission, and the data transmission function may be invoked to transmit the data information to be transmitted to the outside world, that is, the target device through the human body.
  • the data transmission method further includes:
  • the smart wearable device detects a preset movement mode by a gravity sensor and/or a gyroscope, the data transmission function is activated.
  • the preset mobile mode refers to a preset mobile mode of the smart wearable device, including but not limited to, the smart wearable device moves up and down, the smart wearable device shakes left and right, and the like.
  • the gravity sensor and/or the gyroscope implements a method of detecting the movement of the smart wearable device, and activates the data transfer function when the movement mode is a preset movement mode.
  • the data transmission method further includes:
  • the smart wearable device detects the activation indication information input by the user, the data transmission function is activated.
  • the activation indication information includes startup indication information input by gesture recognition or voice recognition.
  • the activation indication information is input by clicking the activation indicator on the touch screen to input activation instruction information or inputting a preset voice segment.
  • the data transmission method further includes:
  • the smart wearable device acquires data transmission indication information or data reception indication information according to the trigger information of the transmission function identifier on the touch screen, the trigger information of the transmission function button, or the skin contact between the user and the user.
  • the manner of skin contact includes, but is not limited to, a contact manner such as a handshake, a tap, and the like.
  • the skin contact is between 3 seconds.
  • the smart wearing device corresponding to the user acquires data transmission indication information or data reception indication information to transmit the data information.
  • the user between the smart wearable devices or between the smart wearable device and the terminal device performs data transmission through a skin contact manner such as a handshake, and the data information to be transmitted can be acquired through the interaction device.
  • the embodiment of the present invention converts data information into a micro electric field signal suitable for the human body, and passes through the human body.
  • the data transmission effectively solves the problem of large power consumption and low security in the wireless transmission mode, and ensures the security of data transmission; and solves the problem that the wired transmission mode is inconvenient to carry and use, and also avoids the wired transmission. Waterproofing of cable jacks.
  • FIG. 4 is a block diagram showing the structure of a data transmission device of a smart wearable device according to an embodiment of the present invention. For convenience of description, only parts related to the embodiment of the present invention are shown.
  • the data transmission device is used to implement the data transmission method described in the foregoing embodiment of FIG. 3, and may be a software unit, a hardware unit, or a combination of hardware and software built in the smart wearable device. .
  • the data transmission device includes:
  • the transmission module 41 is configured to: when the smart wearable device acquires the data transmission indication information, convert the data information to be transmitted into a micro electric field signal, and transmit the micro electric field signal to the human body through the electrode to pass the human body Transmitting the transmitted data information to the target device; and/or
  • the receiving module 42 is configured to: when the smart wearable device acquires the data receiving indication information, acquire the micro electric field signal transmitted by the human body through the electrode, and convert the micro electric field signal into the data information.
  • the data transmission device may further include:
  • a display module configured to display the data information after converting the micro electric field signal into data information.
  • the data transmission device may further include:
  • the closing module 43 is configured to close the data transmission function by not receiving the data transmission indication information or the data reception indication information within the preset interval.
  • the data transmission apparatus may further include: [0069] a startup module 44, configured to start the data transmission when detecting an application-initiated call indication information Features.
  • the activation module 44 may be further configured to activate the data transmission function when a preset movement mode is detected by a gravity sensor and/or a gyroscope.
  • the startup module 44 may be further configured to start the data transmission function when detecting a startup indication information input by a user.
  • the data transmission device may further include:
  • the first obtaining module is configured to acquire data information to be transmitted according to an operation of the user on the touch screen.
  • the data transmission device further includes:
  • the second obtaining module is configured to obtain data transmission indication information or data reception indication information according to the trigger information of the transmission function identifier on the touch screen, the trigger information of the transmission function button, or the skin contact between the user and the user.
  • the device in the embodiment of the present invention may be used to implement all the technical solutions in the foregoing method embodiments, and the functions of the various functional modules may be specifically implemented according to the method in the foregoing method embodiment, and the specific implementation is implemented.
  • the smart wearable device may only serve as a data information sending end.
  • the data transmitting device in the smart wearable device includes a receiving module 42.
  • the smart wearable device may also serve as a data information receiving end.
  • the data transmission device in the smart wearable device includes the transmission module 41; of course, the smart wearable device can also serve as the data information sending end and the receiving end, and then the data transmission device in the smart wearable device includes the transmission.
  • the smart wearable device includes, but is not limited to, a smart watch, smart glasses, smart gloves, clothing, shoes, and the like.
  • the embodiment of the present invention converts the data information into a micro electric field signal suitable for the human body, and performs data transmission through the human body, thereby effectively solving the problem of large power consumption and low security in the wireless transmission mode, thereby ensuring the problem.
  • the security of data transmission and solves the problem that the wired transmission mode is inconvenient to carry and use, and also avoids the waterproof problem of the cable socket in the wired transmission.
  • the disclosed apparatus and method may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the modules and units is only a logical function division, and the actual implementation may have another division manner, for example, multiple units or components may be used. Combined or can be integrated into another system, or some features can be ignored, or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
  • the unit described as a separate component may or may not be physically distributed, and the component displayed as a unit may or may not be a physical unit, that is, may be located in one place, or may be distributed to multiple On the network unit. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit and module in each embodiment of the present invention may be integrated into one processing unit, or each unit or module may exist physically separately, or two or more units and modules may be integrated in the module. In a unit.
  • the functions, if implemented in the form of software functional units and sold or used as separate products, may be stored in a computer readable storage medium.
  • the technical solution of the present invention which is essential or contributes to the prior art, or a part of the technical solution, may be embodied in the form of a software product, which is stored in a storage medium, including
  • the instructions are used to cause a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes: a USB flash drive, a removable hard disk, a read only memory (ROM, Read-Only)
  • RAM random access memory
  • disk disk or optical disk, and other media that can store program code.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

L'invention concerne un procédé et un appareil d'émission de données pour un dispositif portable intelligent. Le procédé d'émission de données comprend les opérations suivantes : lors de l'acquisition d'informations d'indication d'émission de données, un dispositif portable intelligent (1) convertit des informations de données à émettre en un signal de micro-champ électrique, et émet le signal de micro-champ électrique vers un corps humain par l'intermédiaire d'une électrode (11), afin d'envoyer les informations de données à émettre à un dispositif cible par l'intermédiaire du corps humain ; et/ou lors de l'acquisition d'informations d'indication de réception de données, le dispositif portable intelligent (1) acquiert le signal de micro-champ électrique émis par le corps humain par l'intermédiaire de l'électrode (11) et convertit le signal de micro-champ électrique en les informations de données, afin que le dispositif portable intelligent réalise un émission d'informations par l'intermédiaire du corps humain. Le procédé résout efficacement le problème du manque de commodité que représente le fait de porter et d'utiliser un mode d'émission par fil, et résout les problèmes de la consommation d'énergie élevée et du manque de sécurité d'un mode d'émission sans fil, ce qui permet de garantir la sécurité de l'émission de données.
PCT/CN2016/072796 2016-01-29 2016-01-29 Procédé et appareil d'émission de données pour dispositif portable intelligent WO2017128295A1 (fr)

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Application Number Priority Date Filing Date Title
PCT/CN2016/072796 WO2017128295A1 (fr) 2016-01-29 2016-01-29 Procédé et appareil d'émission de données pour dispositif portable intelligent

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PCT/CN2016/072796 WO2017128295A1 (fr) 2016-01-29 2016-01-29 Procédé et appareil d'émission de données pour dispositif portable intelligent

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2618600A (en) * 2022-05-12 2023-11-15 Advanced Risc Mach Ltd Data transfer between user-worn devices

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CN101107795A (zh) * 2005-03-14 2008-01-16 松下电器产业株式会社 电子设备控制系统和控制信号发送装置
US20140080430A1 (en) * 2012-09-07 2014-03-20 Agency For Science, Technology And Research Receiver for body channel communication and a method of operating a receiver therefrom
CN104067542A (zh) * 2012-03-14 2014-09-24 索尼移动通讯有限公司 基于具有触摸显示器的用户装置的人体耦合通信
CN104202805A (zh) * 2014-09-22 2014-12-10 联想(北京)有限公司 通信控制方法和电子设备
CN104365040A (zh) * 2012-05-29 2015-02-18 株式会社尼康 电子设备以及衣服
WO2015170367A1 (fr) * 2014-05-09 2015-11-12 Sony Corporation Dispositifs électroniques sans fil pouvant être portés et procédés pour permettre des communications par l'intermédiaire de dispositifs électroniques sans fil pouvant être portés

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Publication number Priority date Publication date Assignee Title
CN1457456A (zh) * 2001-02-19 2003-11-19 索尼公司 信息输入装置
CN101107795A (zh) * 2005-03-14 2008-01-16 松下电器产业株式会社 电子设备控制系统和控制信号发送装置
CN104067542A (zh) * 2012-03-14 2014-09-24 索尼移动通讯有限公司 基于具有触摸显示器的用户装置的人体耦合通信
CN104365040A (zh) * 2012-05-29 2015-02-18 株式会社尼康 电子设备以及衣服
US20140080430A1 (en) * 2012-09-07 2014-03-20 Agency For Science, Technology And Research Receiver for body channel communication and a method of operating a receiver therefrom
WO2015170367A1 (fr) * 2014-05-09 2015-11-12 Sony Corporation Dispositifs électroniques sans fil pouvant être portés et procédés pour permettre des communications par l'intermédiaire de dispositifs électroniques sans fil pouvant être portés
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GB2618600A (en) * 2022-05-12 2023-11-15 Advanced Risc Mach Ltd Data transfer between user-worn devices

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