WO2017059756A1 - 穿戴设备显示信息的显示方法及系统 - Google Patents

穿戴设备显示信息的显示方法及系统 Download PDF

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Publication number
WO2017059756A1
WO2017059756A1 PCT/CN2016/098441 CN2016098441W WO2017059756A1 WO 2017059756 A1 WO2017059756 A1 WO 2017059756A1 CN 2016098441 W CN2016098441 W CN 2016098441W WO 2017059756 A1 WO2017059756 A1 WO 2017059756A1
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WO
WIPO (PCT)
Prior art keywords
communication interface
wearable device
information
slave
processor
Prior art date
Application number
PCT/CN2016/098441
Other languages
English (en)
French (fr)
Inventor
张�杰
Original Assignee
惠州Tcl移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority to US15/563,590 priority Critical patent/US20180206281A1/en
Application filed by 惠州Tcl移动通信有限公司 filed Critical 惠州Tcl移动通信有限公司
Priority to US15/563,590 priority patent/US10225878B2/en
Publication of WO2017059756A1 publication Critical patent/WO2017059756A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • H04W76/15Setup of multiple wireless link connections
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/163Wearable computers, e.g. on a belt
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F13/00Interconnection of, or transfer of information or other signals between, memories, input/output devices or central processing units
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/011Arrangements for interaction with the human body, e.g. for user immersion in virtual reality
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/14Digital output to display device ; Cooperation and interconnection of the display device with other functional units
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B13/00Transmission systems characterised by the medium used for transmission, not provided for in groups H04B3/00 - H04B11/00
    • H04B13/005Transmission systems in which the medium consists of the human body
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/18Self-organising networks, e.g. ad-hoc networks or sensor networks
    • H04W84/20Master-slave selection or change arrangements
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2330/00Aspects of power supply; Aspects of display protection and defect management
    • G09G2330/02Details of power systems and of start or stop of display operation
    • G09G2330/026Arrangements or methods related to booting a display
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2354/00Aspects of interface with display user
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2370/00Aspects of data communication
    • G09G2370/04Exchange of auxiliary data, i.e. other than image data, between monitor and graphics controller
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2370/00Aspects of data communication
    • G09G2370/16Use of wireless transmission of display information

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a display method and system for displaying information on a wearable device.
  • smart watches and smart glasses can display information.
  • the display information is only displayed on the wearable device worn by the user.
  • the display of the display information is required to be manually set by the user.
  • the display information is only displayed on the smart watch; when the user wears the smart watch and the smart glasses at the same time, the user needs to manually set whether the display information is displayed on the smart watch or on the smart glasses. on. Since the manual operation is required to display the display information on the wearable device, and the operation is cumbersome, it is easy to reduce the user experience.
  • the technical problem to be solved by the present invention is to provide a display method and system for displaying information of a wearable device, which can improve the user experience.
  • the first technical solution adopted by the present invention is to provide a display system for displaying information by a wearable device, including a main wearable device, a handheld terminal, and a slave wearable device.
  • the main wearable device is worn on the user, and the main wearer
  • the device includes a first bus, a first memory, a first processor, a first communication interface, and a first display, and the first memory, the first processor, the first communication interface, and the first display are respectively connected to the first bus, and are worn from
  • the device includes a second bus, a second memory, a second processor, a second communication interface, and a second display, and the second memory, the second processor, the second communication interface, and the second display are respectively connected to the second bus, the handheld terminal
  • the third memory, the third memory, the third processor, and the third communication interface, the third memory, the third processor, and the third communication interface are respectively connected to the third bus, and the first memory stores the first program instruction, a processor for executing the first program instruction, a second
  • the first processor executes the first program instruction to control the first communication interface to detect whether the user is wearing the slave wear device through a human body transmission path formed in the user's body;
  • the first processor executes the first program instruction, when determining that the user is wearing from the wearable device, the first communication interface acquires the device information of the wearable device from the second communication interface through the human body transmission path, and passes the first wireless communication link The device information is sent to the third communication interface;
  • the third processor executes the third program instruction, after the third communication interface receives the device information, controls the third communication interface to establish a second wireless communication link with the second communication interface according to the device information;
  • the third processor executes the third program instruction to determine the priority of the master wearable device and the slave wearable device;
  • the third processor executes the third program instruction, when determining that the priority from the wearable device is greater than the priority of the primary wearable device, the third communication interface sends the display information to be displayed to the second communication interface through the second wireless communication link;
  • the second display displays the display information
  • the first processor executes the first program instruction to determine that the user wears the slave device, and the first communication interface further sends the handshake information to the second communication interface periodically through the human body transmission path;
  • the second processor executes the second program instruction to enable the second communication interface to send the response information corresponding to the handshake information to the first communication interface through the human body transmission path;
  • the first wireless communication link and the second wireless communication link are Bluetooth links.
  • the first processor executes the first program instruction, and after the first communication interface sends the handshake information, and does not receive the corresponding response information, the first processor confirms that the user takes off the slave wear device;
  • the first communication interface sends the switching information to the third communication interface through the first wireless communication link when the first processor determines that the user takes off the slave device;
  • the third processor executes the third program instruction to send the display information to be displayed to the first communication interface through the first wireless communication link according to the switching information;
  • the first display displays display information.
  • the main wearable device is a smart watch, and the wearable device is a smart glasses.
  • the second technical solution adopted by the present invention is to provide a display system for displaying information by a wearable device, including a main wearable device, a handheld terminal, and a slave wearable device, the main wearable device being worn on the user, and the main wearer
  • the device includes a first bus, a first memory, a first processor, a first communication interface, and a first display, and the first memory, the first processor, the first communication interface, and the first display are respectively connected to the first bus, and are worn from
  • the device includes a second bus, a second memory, a second processor, a second communication interface, and a second display, and the second memory, the second processor, the second communication interface, and the second display are respectively connected to the second bus, the handheld terminal
  • the third memory, the third memory, the third processor, and the third communication interface, the third memory, the third processor, and the third communication interface are respectively connected to the third bus, and the first memory stores the first program instruction, a processor for executing the first program instruction, a second
  • the first processor executes the first program instruction to control the first communication interface to detect whether the user is wearing the slave wear device through a human body transmission path formed in the user's body;
  • the first processor executes the first program instruction, when determining that the user is wearing from the wearable device, the first communication interface acquires the device information of the wearable device from the second communication interface through the human body transmission path, and passes the first wireless communication link The device information is sent to the third communication interface;
  • the third processor executes the third program instruction, after the third communication interface receives the device information, controls the third communication interface to establish a second wireless communication link with the second communication interface according to the device information;
  • the third processor executes the third program instruction to determine the priority of the master wearable device and the slave wearable device;
  • the third processor executes the third program instruction, when determining that the priority from the wearable device is greater than the priority of the primary wearable device, the third communication interface sends the display information to be displayed to the second communication interface through the second wireless communication link;
  • the second processor executes the second program instruction, and after the second communication interface receives the display information, the second display displays the display information.
  • the first processor executes the first program instruction to determine that the user wears the slave device, and the first communication interface further sends the handshake information to the second communication interface periodically through the human body transmission path;
  • the second processor executes the second program instruction to cause the second communication interface to transmit the response information corresponding to the handshake information to the first communication interface through the human body transmission path.
  • the first processor executes the first program instruction, after the first communication interface sends the handshake information, and does not receive the corresponding response information sent by the second communication interface, the first processor confirms that the user takes off the slave wear device;
  • the first communication interface sends the switching information to the third communication interface through the first wireless communication link when the first processor determines that the user takes off the slave device;
  • the third processor executes the third program instruction to send the display information to be displayed to the first communication interface through the first wireless communication link according to the switching information;
  • the first display displays display information.
  • the first wireless communication link and the second wireless communication link are Bluetooth links.
  • the main wearable device is a smart watch, and the wearable device is a smart glasses.
  • the third technical solution adopted by the present invention is to provide a display method for displaying information of a wearable device, which is applied to a main wearable device, a handheld terminal, and a slave wearable device, and the main wearable device is worn on the user.
  • Establishing a first wireless communication link between the primary wearable device and the handheld terminal the method comprising: detecting, by the primary wearable device, whether the user wears the wearable device through a human body transmission path formed in the user's body; the primary wearable device determines the user When the wearable device is worn, the device information of the wearable device is obtained from the wearable device through the human body transmission path, and the device information is transmitted to the handheld terminal through the first wireless communication link; after the handheld terminal receives the device information, according to the device The information establishes a second wireless communication link with the slave device; the handheld terminal determines the priority of the master wear device and the slave wear device, and when determining that the priority from the wearable device is greater than the priority of the master wear device, the second wireless communication The link sends the display information to be displayed to the wearable device; In the display information on the display itself.
  • the main wearable device periodically sends handshake information to the slave wearable device through the human body transmission path when the user wears the slave wearable device, and sends response information corresponding to the handshake information to the master wearable device from the wearable device through the human body transmission path.
  • the primary wearable device After the primary wearable device sends the handshake information and does not receive the corresponding response information, the primary wearable device confirms that the user takes off the slave wear device and sends the handover information to the handheld terminal, and the handheld terminal passes the first wireless communication according to the handover information.
  • the link sends the display information to be displayed to the main wearable device, and the main wearable device displays the display information on its own display.
  • the first wireless communication link and the second wireless communication link are Bluetooth links.
  • the main wearable device is a smart watch, and the wearable device is a smart glasses.
  • the method for displaying the display information of the wearable device of the present invention includes: the main wearable device detects whether the user wears the slave wear device through a human body transmission path formed in the user body; The main wearable device determines that when the user wears the slave wear device, the device information of the slave wear device is acquired from the wear device through the human body transmission path, and the device information is transmitted to the handheld terminal through the first wireless communication link; the handheld terminal receives the device After the information, the second wireless communication link is established according to the device information and the slave device; the handheld terminal determines the priority of the master wear device and the slave device, and when the priority of the slave device is greater than the priority of the master device, The second wireless communication link transmits display information to be displayed to the slave wear device; the wear device displays display information on the display itself.
  • the present invention greatly improves the display flexibility of the wearable device by automatically displaying the display information on the wearable device with the highest priority, thereby effectively improving the user experience.
  • FIG. 1 is a schematic flow chart of a method for displaying display information of a wearable device according to the present invention
  • FIG. 2 is a schematic structural diagram of a display system for displaying information of a wearable device according to the present invention
  • FIG. 3 is a schematic structural view of the main wearable device of FIG. 2;
  • Figure 4 is a schematic structural view of the wearable device of Figure 2;
  • Figure 5 is a schematic structural view of the handheld terminal of Figure 2;
  • FIG. 6 is a schematic diagram showing the hardware structure of a display system for displaying information of the wearable device of the present invention.
  • FIG. 1 is a schematic flowchart of a method for displaying display information of a wearable device according to the present invention. The method is applied to a primary wearable device, a handheld terminal, and a secondary wearable device, the method comprising the steps of:
  • Step S101 The main wearable device detects whether the user wears the slave wear device through a human body transmission path formed in the user's body.
  • the main wearable device is worn on the user, and the main wearable device and the slave wearable device use the human body as a transmission medium. Therefore, the main wearable device of the present invention can transmit data through a human body such as skin, muscle or blood, and the present invention Wearable devices can also transmit data through the human body, such as skin, muscle or blood.
  • the outer casing of the main wearable device that contacts the human body and the outer casing that is in contact with the human body from the wearable device and the human body form a human body transmission path, so that the main wearable device can detect whether the user wears from wearing device.
  • step S101 the main wearable device periodically sends handshake information to the slave wear device through the human body transmission path. If the user wears the handshake information from the wear device, the feedback information is fed back to the main wear device, and the main wear device It is determined that the user wears the slave wear device, the master wear device and the slave device establish a human body transmission path; if the master wear device does not receive the response message, the master wear device confirms that the user does not wear the slave device. It should be understood that when the user wears the wearable device, the primary wearable device cannot receive the response information once or twice due to the error, so in order to improve the accuracy, the main wear device receives the response information for more than a predetermined number of times within the predetermined time. To determine that the user is wearing from the wearable device.
  • Step S102 When determining that the user wears from the wearable device, the main wearable device acquires device information from the wearable device from the wearable device through the human body transmission path, and transmits the device information to the handheld terminal through the first wireless communication link.
  • a first wireless communication link is established between the primary wearable device and the handheld terminal.
  • the first wireless communication link is a Bluetooth link.
  • the primary wearable device is preferably a smart watch
  • the wearable device is preferably smart glasses
  • the handheld terminal is preferably a mobile phone.
  • the handheld terminal sends the display information to the main wearable device, the main wearable device displays the display information on the display of the self, and when it is detected that the user wears the wearable device, the handheld terminal switches the display information to the slave.
  • the device is worn such that the display device displays the displayed information on its own display.
  • the smart glasses are closer to the eyes of the user, when the user wears the smart glasses, the display information can be clearly seen from the smart glasses.
  • the primary wearable device and the secondary wearable device may also be other wearable devices, and the handheld terminal may also be other electronic devices.
  • Step S103 After receiving the device information, the handheld terminal establishes a second wireless communication link with the slave wear device according to the device information.
  • the device information includes an identification number of the wearable device, and after receiving the device information, the handheld terminal finds the identification number of the specific slave wear device and establishes a second wireless communication link.
  • the second wireless communication link is a Bluetooth link.
  • Step S104 The handheld terminal determines the priority of the primary wearable device and the secondary wearable device, and when determining that the priority of the wearable device is greater than the priority of the primary wearable device, the display information to be displayed is sent to the second wireless communication link to From the wearable device.
  • the priority of the smart glasses is preferably higher than the priority of the smart watch.
  • the priority of the primary wearable device may also be higher than the priority of the wearable device.
  • the display information to be displayed includes information that the handheld terminal needs to display and/or information that the main wearable device needs to display.
  • the display information transmitted through the second wireless communication link has a relatively large capacity, such as video, and the transmission speed of the display information transmitted through the second wireless communication link is relatively high.
  • the handheld terminal may also send display information to be displayed to the main wearable device through the first wireless communication link, and the main wearable device transmits the display information to the slave wear device through the human body communication loop.
  • the display information transmitted by this path has a small capacity, such as photos, voices, or small documents, while requiring low transmission speed.
  • Step S105 Display the display information on the display from the wearable device.
  • step S105 after the primary wearable device sends the handshake information and does not receive the corresponding response information, the primary wearable device confirms that the user takes off the slave wear device and sends the handover information to the handheld terminal, and the handheld terminal passes the handover information according to the handover information.
  • a wireless communication link transmits display information to be displayed to the primary wearable device, and the primary wearable device displays display information on its own display.
  • the main wear device further periodically sends the handshake information to the slave wear device through the human body transmission path, and if the user continues to wear the wear device, the wear device passes the human body transmission path to the main device.
  • the wearable device sends the response information corresponding to the handshake information; if the user does not wear the slave wear device, the master wear device does not receive the response information, and the master wear device displays the display information through the display of the master device, that is, the master wear device does not receive the response message.
  • the wearable device After repeated attempts and repeated failures, it is considered that the wearable device has been removed, and the default primary wearable device is displayed to display the display information.
  • the handheld terminal determines the priority of the primary wearable device and the handheld terminal, and if it is determined that the priority of the primary wearable device is high, the display of the handheld terminal that needs to be displayed through the first wireless communication link The information is sent to the main wearable device for display; if it is determined that the priority of the handheld terminal is high, the handheld terminal displays the display information that needs to be displayed.
  • FIG. 2 is a schematic structural diagram of a display system for displaying information of the wearable device of the present invention, and the system of FIG. 2 corresponds to the method of FIG.
  • the system includes a primary wearable device 11, a secondary wearable device 12, and a handheld terminal 13.
  • the main wearable device 11 is worn on the user, the main wearable device 11 and the slave wearable device 12 can transmit data through the human body transmission path, and the main wearable device 11 and the handheld terminal 13 establish a first wireless communication link, from the wearable device 12 and the handheld terminal. 13 establishing a second wireless communication link.
  • the main wearable device is preferably a smart watch
  • the wearable device is preferably a smart glasses
  • the handheld terminal 13 is a mobile phone.
  • the main wear device and the slave wear device may also be other wearable devices, and the handheld terminal 13 may also be Other electronic devices.
  • the main wearable device 11 includes a detection module 111, a main transceiver module 112, and a main display module 113.
  • the slave wear device 12 includes a slave transceiver module 121 and a slave display module 122.
  • the handheld terminal 13 includes a wireless network module. 131 and priority determination module 132.
  • a first wireless communication link is established between the primary transceiver module 112 and the wireless network module 131.
  • the detecting module 111 is configured to detect whether the user is wearing the slave wear device 12 through a human body transmission path formed in the user's body.
  • the detecting module 111 is further configured to periodically send the handshake information to the slave wearable device 12 through the human body transmission path when determining that the user is wearing the wearable device 12.
  • the detecting module 111 is further configured to confirm that the user wears the slave device 12 when receiving the corresponding response information after transmitting the handshake information.
  • the detecting module 111 is further configured to confirm that the user takes off the slave device 12 after receiving the handshake information and does not receive the corresponding response information.
  • the main transceiver module 112 obtains device information from the wearable device 12 from the wearable device 12 through the human body transmission path when the user detects that the user is wearing the slave device, and transmits the device information to the wireless device through the first wireless communication link.
  • Network module 131 The main transceiver module 112 obtains device information from the wearable device 12 from the wearable device 12 through the human body transmission path when the user detects that the user is wearing the slave device, and transmits the device information to the wireless device through the first wireless communication link.
  • the wireless network module 131 is configured to establish a second wireless communication link with the slave transceiver module 121 according to the device information after receiving the device information.
  • the first wireless communication link and the second wireless communication link are Bluetooth links.
  • the priority judging module 132 is configured to determine the priority of the main wearable device 11 and the slave wearable device 12. In this embodiment, the priority of the smart glasses is higher than the priority of the smart watch.
  • the wireless network module 131 is further configured to: when the priority determining module 132 determines that the priority of the wearable device 12 is greater than the priority of the primary wearable device 11, send the display information to be displayed to the slave wear device 12 through the second wireless communication link. .
  • the display module 122 After the display module 122 receives the display information from the transceiver module 121, the display information is displayed.
  • the slave transceiver module 121 is further configured to send response information corresponding to the handshake information to the master wearable device 11 through the human body transmission path.
  • the main transceiver module 112 is configured to send the switching information to the wireless network module 131 through the first wireless communication link when the detecting module 111 determines that the user takes off the slave device 12.
  • the wireless network module 131 transmits the display information to be displayed to the main display module 113 through the first wireless communication link according to the switching information.
  • the main display module 131 displays display information.
  • the main transceiver module 112 and the slave transceiver module 121 are each provided with a sensing area, which is disposed on the side of the housing and the skin to ensure the smooth transmission of the human body.
  • the sensing area of the smart glasses is disposed on the eyeglass holder and in contact with the skin of the face.
  • the sensing area is disposed on the bridge of the nose of the eyeglass holder and in contact with the skin of the bridge of the nose, and can accurately determine whether the user actually wears the smart glasses.
  • the sensing area of the smart watch is placed on the wristband and in contact with the skin to ensure the smooth passage of the human body.
  • the primary wearable device 11 also includes a primary human body communication module (not shown) for data transmission by the human body.
  • the slave wear device 12 also includes a slave body communication module (not shown) for data transmission through the human body.
  • the main body communication module and the slave body communication module are capable of forming a human body transmission path in the human body for data transmission.
  • Both the main body communication module and the slave body communication module include a human body communication chip.
  • FIG. 6 is a schematic diagram showing the hardware structure of the display system for displaying information of the wearable device of the present invention.
  • the display system includes a main wearable device 11, a handheld terminal 13, and a slave wear device 12 that is worn on the user.
  • the main wearable device 11 includes a first bus 615 and a first memory 611, a first processor 612, a first communication interface 614, and a first display 613 respectively connected to the first bus 615.
  • the slave device 12 includes a second bus 625 and a second memory 621, a second processor 622, a second communication interface 624, and a second display 623 that are respectively coupled to the second bus 625.
  • the handheld terminal 13 includes a third bus 634 and a third memory 631, a third processor 632, and a third communication interface 633 that are respectively connected to the third bus 634.
  • the first processor 611 stores the first program instruction
  • the first processor 612 is configured to execute the first program instruction
  • the second memory 621 stores the second program instruction
  • the second processor 622 is configured to execute the second program instruction.
  • the third memory 631 stores third program instructions
  • the third processor 632 is configured to execute third program instructions.
  • the first communication interface 614 and the second communication interface 624 are both in contact with the skin to ensure smooth communication of the human body.
  • the first communication interface 614 and the third communication interface 633 establish a first wireless communication link.
  • the first processor 612 executes the first program instruction to control the first communication interface 614 to detect whether the user is wearing the slave device 12 through the body transmission path formed in the user's body; the first program instruction is executed at the first processor 612.
  • the first communication interface 614 acquires device information from the wearable device 12 from the second communication interface 624 through the human body transmission path, and transmits the device information to the third communication through the first wireless communication link. Interface 633.
  • the third processor 632 executes the third program instruction to control the third communication interface 633 to establish a second wireless communication link with the second communication interface 624 according to the device information after receiving the device information on the third communication interface 633.
  • the third processor 632 executes the third program instruction to determine the priority of the master wearable device 11 and the slave wearable device 12, and the third processor 632 executes the third program instruction to determine that the priority from the wearable device 12 is greater than the priority of the master wearable device 11.
  • the third communication interface 633 transmits the display information to be displayed to the second communication interface 624 via the second wireless communication link.
  • the second processor 622 executes the second program instruction, and after the second communication interface 624 receives the display information, the second display 623 displays the display information.
  • the first processor 612 executes the first program instruction.
  • the first communication interface 614 further sends handshake information to the second communication interface 624 through the human body transmission path.
  • the second processor 622 Executing the second program instruction causes the second communication interface 624 to transmit the response information corresponding to the handshake information to the first communication interface 614 through the human body transmission path.
  • the first processor 612 executes the first program instruction, after the first communication interface 614 sends the handshake information, and does not receive the corresponding response information, the first processor 612 confirms that the user takes off the slave device 12, the first communication interface. 614, when the first processor 612 determines that the user is off the slave device 12, transmits the handover information to the third communication interface 633 over the first wireless communication link.
  • the third processor 632 executes the third program instruction to send the display information to be displayed to the first communication interface 614 through the first wireless communication link according to the switching information, and the first display 613 displays the display information.
  • the first wireless communication link and the second wireless communication link are preferably Bluetooth links
  • the primary wearable device 11 is preferably a smart watch
  • the wearable device 12 is preferably smart glasses.
  • the display method of the wearable device display information of the present invention includes: the main wearable device detects whether the user wears the wearable device through the human body transmission path formed in the user's human body; and the main wearable device determines that the user wears the wearable device from the wearable device Determining a priority of the primary wearable device and the slave wearable device, and transmitting display information that needs to be displayed to the slave wearable device through the human body transmission path when the priority of the wearable device is greater than the priority of the primary wearable device; The display information is displayed on the display.
  • the present invention greatly improves the display flexibility of the wearable device by automatically displaying the display information on the wearable device with the highest priority, thereby effectively improving the user experience.

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Abstract

一种穿戴设备显示信息的显示方法及系统,方法包括:主穿戴设备通过人体传输通路检测用户是否配戴上从穿戴设备(12);如果是,则将从穿戴设备的设备信息发送至手持终端(13);手持终端与从穿戴设备建立无线通信链路;手持终端在判断出从穿戴设备的优先级大于主穿戴设备(11)的优先级时,将显示信息发送至从穿戴设备上进行显示。

Description

穿戴设备显示信息的显示方法及系统
【技术领域】
本发明涉及通信技术领域,特别是涉及一种穿戴设备显示信息的显示方法及系统。
【背景技术】
随着技术的发展,电子设备的日益普及,特别是穿戴设备,由于穿戴设备具有轻巧性和易携带性,因此越来越得到大众得青睐。随着市场上大众化,穿戴设备的种类也特别多,许多用户会佩戴多个穿戴设备,最常见的比如智能手表和智能眼镜。
一般情况下,智能手表和智能眼镜都能是能够显示显示信息。对于用户单独佩戴穿戴设备时,显示信息只显示在用户所佩戴的穿戴设备上。而对用户佩戴多个穿戴设备时,显示信息的显示在哪个穿戴设备是需要用户手动设置的。具体地,当用户佩戴智能手表时,显示信息只在智能手表上显示;当用户同时佩戴智能手表和智能眼镜时,这时就需要用户手动去设置显示信息是显示在智能手表还是显示在智能眼镜上。由于需要手动操作将显示信息显示在穿戴设备上,且该操作繁琐,容易降低用户的体验。
综上所述,有必要提供一种穿戴设备显示信息的显示方法及系统以解决上述问题。
【发明内容】
本发明主要解决的技术问题是提供一种穿戴设备显示信息的显示方法及系统,能够提升用户的体验。
为解决上述技术问题,本发明采用的第一个技术方案是:提供一种穿戴设备显示信息的显示系统,包括主穿戴设备、手持终端以及从穿戴设备,主穿戴设备佩戴于用户身上,主穿戴设备包括第一总线、第一存储器、第一处理器、第一通信接口以及第一显示器,第一存储器、第一处理器、第一通信接口以及第一显示器分别与第一总线连接,从穿戴设备包括第二总线、第二存储器、第二处理器、第二通信接口以及第二显示器,第二存储器、第二处理器、第二通信接口以及第二显示器分别与第二总线连接,手持终端包括第三总线、第三存储器、第三处理器及第三通信接口,第三存储器、第三处理器及第三通信接口分别与第三总线连接,第一存储器存储有第一程序指令,第一处理器用于执行第一程序指令,第二存储器存储有第二程序指令,第二处理器用于执行第二程序指令,第三存储器存储有第三程序指令,第三处理器用于执行第三程序指令,第一通信接口与第二通信接口均与皮肤接触,以保证人体传输通路的畅通,其中:
第一通信接口与第三通信接口之间建立第一无线通信链路;
第一处理器执行第一程序指令以控制第一通信接口通过在用户人体内形成的人体传输通路检测用户是否配戴上从穿戴设备;
第一处理器执行第一程序指令在确定用户配戴上从穿戴设备时,第一通信接口通过人体传输通路从第二通信接口获取从穿戴设备的设备信息,并通过第一无线通信链路将设备信息发送至第三通信接口;
第三处理器执行第三程序指令在第三通信接口接收到设备信息后,根据设备信息控制第三通信接口与第二通信接口建立第二无线通信链路;
第三处理器执行第三程序指令判断主穿戴设备和从穿戴设备的优先级;
第三处理器执行第三程序指令在确定从穿戴设备的优先级大于主穿戴设备的优先级时,第三通信接口通过第二无线通信链路将需显示的显示信息发送至第二通信接口;
第二处理器执行第二程序指令在第二通信接口接收到显示信息后,第二显示器显示显示信息;
其中,第一处理器执行第一程序指令在确定用户配戴上从穿戴设备时,第一通信接口进一步通过人体传输通路定期向第二通信接口发送握手信息;
第二处理器执行第二程序指令使第二通信接口通过人体传输通路向第一通信接口发送对应于握手信息的应答信息;
第一无线通信链路和第二无线通信链路为蓝牙链路。
其中,第一处理器执行第一程序指令在第一通信接口发送握手信息之后,并没有接收到对应的应答信息时,第一处理器确认用户脱下从穿戴设备;
第一通信接口在第一处理器确定用户脱下从穿戴设备时,通过第一无线通信链路发送切换信息至第三通信接口;
第三处理器执行第三程序指令根据切换信息通过第一无线通信链路将需显示的显示信息发送至第一通信接口;
第一显示器显示显示信息。
其中,主穿戴设备为智能手表,从穿戴设备为智能眼镜。
为解决上述技术问题,本发明采用的第二个技术方案是:提供一种穿戴设备显示信息的显示系统,包括主穿戴设备、手持终端以及从穿戴设备,主穿戴设备佩戴于用户身上,主穿戴设备包括第一总线、第一存储器、第一处理器、第一通信接口以及第一显示器,第一存储器、第一处理器、第一通信接口以及第一显示器分别与第一总线连接,从穿戴设备包括第二总线、第二存储器、第二处理器、第二通信接口以及第二显示器,第二存储器、第二处理器、第二通信接口以及第二显示器分别与第二总线连接,手持终端包括第三总线、第三存储器、第三处理器及第三通信接口,第三存储器、第三处理器及第三通信接口分别与第三总线连接,第一存储器存储有第一程序指令,第一处理器用于执行第一程序指令,第二存储器存储有第二程序指令,第二处理器用于执行第二程序指令,第三存储器存储有第三程序指令,第三处理器用于执行第三程序指令,其中:
第一通信接口与第三通信接口之间建立第一无线通信链路;
第一处理器执行第一程序指令以控制第一通信接口通过在用户人体内形成的人体传输通路检测用户是否配戴上从穿戴设备;
第一处理器执行第一程序指令在确定用户配戴上从穿戴设备时,第一通信接口通过人体传输通路从第二通信接口获取从穿戴设备的设备信息,并通过第一无线通信链路将设备信息发送至第三通信接口;
第三处理器执行第三程序指令在第三通信接口接收到设备信息后,根据设备信息控制第三通信接口与第二通信接口建立第二无线通信链路;
第三处理器执行第三程序指令判断主穿戴设备和从穿戴设备的优先级;
第三处理器执行第三程序指令在确定从穿戴设备的优先级大于主穿戴设备的优先级时,第三通信接口通过第二无线通信链路将需显示的显示信息发送至第二通信接口;
第二处理器执行第二程序指令在第二通信接口接收到显示信息后,第二显示器显示显示信息。
其中,第一处理器执行第一程序指令在确定用户配戴上从穿戴设备时,第一通信接口进一步通过人体传输通路定期向第二通信接口发送握手信息;
第二处理器执行第二程序指令使第二通信接口通过人体传输通路向第一通信接口发送对应于握手信息的应答信息。
其中,第一处理器执行第一程序指令在第一通信接口发送握手信息之后,并没有接收到第二通信接口发送的对应的应答信息时,第一处理器确认用户脱下从穿戴设备;
第一通信接口在第一处理器确定用户脱下从穿戴设备时,通过第一无线通信链路发送切换信息至第三通信接口;
第三处理器执行第三程序指令根据切换信息通过第一无线通信链路将需显示的显示信息发送至第一通信接口;
第一显示器显示显示信息。
其中,第一无线通信链路和第二无线通信链路为蓝牙链路。
其中,主穿戴设备为智能手表,从穿戴设备为智能眼镜。
为解决上述技术问题,本发明采用的第三个技术方案是:提供一种穿戴设备显示信息的显示方法,该方法应用于主穿戴设备、手持终端以及从穿戴设备,主穿戴设备佩戴于用户身上,主穿戴设备与手持终端之间建立第一无线通信链路,该方法包括:主穿戴设备通过在用户人体内形成的人体传输通路检测用户是否配戴上从穿戴设备;主穿戴设备在确定用户配戴上从穿戴设备时,通过人体传输通路从从穿戴设备获取从穿戴设备的设备信息,并通过第一无线通信链路将设备信息发送至手持终端;手持终端接收到设备信息后,根据设备信息与从穿戴设备建立第二无线通信链路;手持终端判断主穿戴设备和从穿戴设备的优先级,且在确定从穿戴设备的优先级大于主穿戴设备的优先级时,通过第二无线通信链路将需显示的显示信息发送至从穿戴设备;从穿戴设备在自身显示器上显示显示信息。
其中,主穿戴设备在确定用户配戴上从穿戴设备时,进一步通过人体传输通路定期向从穿戴设备发送握手信息,从穿戴设备通过人体传输通路向主穿戴设备发送对应于握手信息的应答信息。
其中,在主穿戴设备发送握手信息之后,并没有接收到对应的应答信息时,主穿戴设备确认用户脱下从穿戴设备,并发送切换信息至手持终端,手持终端根据切换信息通过第一无线通信链路将需显示的显示信息发送至主穿戴设备,主穿戴设备在自身显示器上显示显示信息。
其中,第一无线通信链路和第二无线通信链路为蓝牙链路。
其中,主穿戴设备为智能手表,从穿戴设备为智能眼镜。
本发明的有益效果是:区别于现有技术的情况,本发明的穿戴设备显示信息的显示方法包括:主穿戴设备通过在用户人体内形成的人体传输通路检测用户是否配戴上从穿戴设备;主穿戴设备确定用户配戴上从穿戴设备时,通过人体传输通路从从穿戴设备获取从穿戴设备的设备信息,并通过第一无线通信链路将设备信息发送至手持终端;手持终端接收到设备信息后,根据设备信息与从穿戴设备建立第二无线通信链路;手持终端判断主穿戴设备和从穿戴设备的优先级,且在从穿戴设备的优先级大于主穿戴设备的优先级时,通过第二无线通信链路将需显示的显示信息发送至从穿戴设备;从穿戴设备在自身显示器上显示显示信息。通过上述方式,本发明通过自动将显示信息显示在优先级为最高的穿戴设备上,大大提高穿戴设备的显示的灵活性,有效提升用户的体验。
【附图说明】
图1是本发明穿戴设备显示信息的显示方法的流程示意图;
图2是本发明穿戴设备显示信息的显示系统的结构示意图;
图3是图2中主穿戴设备的结构示意图;
图4是图2中从穿戴设备的结构示意图;
图5是图2中手持终端的结构示意图;
图6是本发明穿戴设备显示信息的显示系统的硬体结构示意图。
【具体实施方式】
为了使本发明所要解决的技术问题、技术方案及有益效果更加清楚、明白,以下结合附图和实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
如图1所示,图1是本发明穿戴设备显示信息的显示方法的流程示意图。该方法应用于主穿戴设备、手持终端和从穿戴设备上,该方法包括以下步骤:
步骤S101:主穿戴设备通过在用户人体内形成的人体传输通路检测用户是否配戴上从穿戴设备。
在本实施例中,主穿戴设备佩戴于用户身上,主穿戴设备和从穿戴设备以人体作为传输介质,因此本发明的主穿戴设备可以通过人体如皮肤、肌肉或血液传送数据,本发明的从穿戴设备同样也可以通过人体如皮肤、肌肉或血液传送数据。当用户佩戴上从穿戴设备时,主穿戴设备的和人体接触的外壳与从穿戴设备的和人体接触的外壳在人体内形成的人体传输通路,因此主穿戴设备能够检测到用户是否佩戴上从穿戴设备。
在步骤S101中,主穿戴设备通过人体传输通路定期向从穿戴设备发送握手信息,如果有用户佩戴上从穿戴设备时,从穿戴设备接收该握手信息后反馈应答信息至主穿戴设备,主穿戴设备确定用户配戴上从穿戴设备,主穿戴设备和从穿戴设备建立人体传输通路;如果主穿戴设备没有接收到应答信息,则主穿戴设备确认用户没有佩戴上从穿戴设备。应理解,当用户佩戴从穿戴设备时,由于误差影响会导致一两次主穿戴设备不能接收到应答信息,因此为了提高准确性,主穿戴设备在预定时间内收到的应答信息超过预定次数时,确定用户佩戴从穿戴设备。
步骤S102:主穿戴设备在确定用户配戴上从穿戴设备时,通过人体传输通路从从穿戴设备获取从穿戴设备的设备信息,并通过第一无线通信链路将设备信息发送至手持终端。
在本实施例中,主穿戴设备与手持终端之间建立第一无线通信链路。其中,第一无线通信链路为蓝牙链路。主穿戴设备优选为智能手表,从穿戴设备优选为智能眼镜,手持终端优选为手机。并且,在步骤S101之前,手持终端发送显示信息至主穿戴设备,主穿戴设备在自身显示器上显示显示信息,而当检测到用户佩戴从穿戴设备时,手持终端改而将显示信息切换发送至从穿戴设备,从而使得从穿戴设备在自身显示器上显示显示信息。
由于智能眼镜更加贴近用户的眼睛,因此当用户佩戴上智能眼镜后,可以从智能眼镜上清晰看到显示信息。
当然,主穿戴设备和从穿戴设备还可以是其他穿戴设备,手持终端还可以为其他电子设备。
步骤S103:手持终端接收到设备信息后,根据设备信息与从穿戴设备建立第二无线通信链路。
其中,设备信息包括从穿戴设备的识别号,手持终端接收到设备信息后,查找到特定从穿戴设备的识别号,并建立第二无线通信链路。其中,第二无线通信链路为蓝牙链路。
步骤S104:手持终端判断主穿戴设备和从穿戴设备的优先级,且在确定从穿戴设备的优先级大于主穿戴设备的优先级时,通过第二无线通信链路将需显示的显示信息发送至从穿戴设备。
在本实施例中,智能眼镜的优先级优选高于智能手表的优先级。当然,在其他实施例中,主穿戴设备的优先级也可以高于从穿戴设备的优先级。
在步骤S104中,需显示的显示信息包括手持终端需要显示的信息和/或主穿戴设备需要显示的信息。通过第二无线通信链路发送的显示信息的容量比较大,如视频,同时通过第二无线通信链路发送的显示信息的传输速度比较高。当然,在其他实施例中,手持终端还可以通过第一无线通信链路将需显示的显示信息发送至主穿戴设备,主穿戴设备在通过人体通信回路发送显示信息至从穿戴设备。此路径所传输的显示信息的容量小,如照片、语音或小文档,同时对传输速度的要求低。
步骤S105:从穿戴设备在自身显示器上显示显示信息。
在步骤S105中,在主穿戴设备发送握手信息之后,并没有接收到对应的应答信息时,主穿戴设备确认用户脱下从穿戴设备,并发送切换信息至手持终端,手持终端根据切换信息通过第一无线通信链路将需显示的显示信息发送至主穿戴设备,主穿戴设备在自身显示器上显示显示信息。
应理解,从穿戴设备在自身显示器上显示显示信息后,主穿戴设备进一步通过人体传输通路定期向从穿戴设备发送握手信息,如果用户还继续佩戴从穿戴设备,从穿戴设备通过人体传输通路向主穿戴设备发送对应于握手信息的应答信息;如果用户不佩戴从穿戴设备,主穿戴设备接收不到应答信息,此时主穿戴设备通过自身的显示器显示显示信息,即主穿戴设备没有收到应答信息后,重复尝试若干次后仍然失败,则认为从穿戴设备已被取下,切换默认主穿戴设备显示显示信息。又或者在确定从穿戴设备已被取下,手持终端判断主穿戴设备和手持终端的优先级,如果确定主穿戴设备的优先级高,则手持终端通过第一无线通信链路将需要显示的显示信息发送给主穿戴设备显示;如果确定手持终端的优先级高,则手持终端显示需要显示的显示信息。
如图2所示,图2是本发明穿戴设备显示信息的显示系统的结构示意图,图2中的系统对应图1中的方法。该系统包括主穿戴设备11、从穿戴设备12和手持终端13。主穿戴设备11佩戴于用户身上,主穿戴设备11和从穿戴设备12可以通过人体传输通路进行数据传输,主穿戴设备11和手持终端13建立第一无线通信链路,从穿戴设备12和手持终端13建立第二无线通信链路。在本实施例中,主穿戴设备优选为智能手表,从穿戴设备优选为智能眼镜,手持终端13为手机,当然,主穿戴设备和从穿戴设备还可以是其他穿戴设备,手持终端13还可以为其他电子设备。
如图3-图5所示,主穿戴设备11包括检测模块111、主收发模块112和主显示模块113,从穿戴设备12包括从收发模块121和从显示模块122,手持终端13包括无线网络模块131和优先级判断模块132。
主收发模块112与无线网络模块131之间建立第一无线通信链路。
检测模块111用于通过在用户人体内形成的人体传输通路检测用户是否配戴上从穿戴设备12。检测模块111还用于在确定用户配戴上从穿戴设备12时,进一步通过人体传输通路定期向从穿戴设备12发送握手信息。检测模块111还用于在发送握手信息之后,接收到对应的应答信息时,确认用户佩戴上从穿戴设备12。检测模块111还用于在发送握手信息之后,并没有接收到对应的应答信息时,确认用户脱下从穿戴设备12。
主收发模块112在检测模块111确定用户配戴上从穿戴设备时,通过人体传输通路从从穿戴设备12获取从穿戴设备12的设备信息,并通过第一无线通信链路将设备信息发送至无线网络模块131。
无线网络模块131用于在接收到设备信息后,根据设备信息与从收发模块121建立第二无线通信链路。在本实施例中,第一无线通信链路和所述第二无线通信链路为蓝牙链路。
优先级判断模块132用于判断主穿戴设备11和从穿戴设备12的优先级。在本实施例中,智能眼镜的优先级高于智能手表的优先级。
无线网络模块131还用于在优先级判断模块132确定从穿戴设备12的优先级大于主穿戴设备11的优先级时,通过第二无线通信链路将需显示的显示信息发送至从穿戴设备12。
从显示模块122在从收发模块121接收到显示信息后,显示显示信息。另外,从收发模块121还用于通过人体传输通路向主穿戴设备11发送对应于握手信息的应答信息。
主收发模块112用于在检测模块111确定用户脱下从穿戴设备12时,通过第一无线通信链路发送切换信息至无线网络模块131。无线网络模块131根据切换信息通过第一无线通信链路将需显示的显示信息发送至主显示模块113。主显示模块131显示显示信息。
在本实施例中,主收发模块112和从收发模块121均设有感应区域,该感应区域均设置于外壳和皮肤接触的一面,以保证人体传输通路的畅通。具体地,智能眼镜的感应区域设置在眼镜支架上并与面部皮肤接触,优选地,感应区域设置在眼镜支架上的鼻梁支架上并与鼻梁皮肤接触,能够准确判定用户是否真正佩戴上智能眼镜。而智能手表的感应区域设置在腕带上并与皮肤接触的一面,以保证人体传输通路的畅通。
应理解,主穿戴设备11还包括主人体通信模块(未图示),用于通过人体进行数据传输。从穿戴设备12还包括从人体通信模块(未图示),用于通过人体进行数据传输。主人体通信模块和从人体通信模块能够在人体内形成人体传输通路,以进行数据传输。主人体通信模块和从人体通信模块均包含人体通信芯片。
请进一步参看图6,图6是本发明穿戴设备显示信息的显示系统的硬体结构示意图。如图6所示,显示系统包括主穿戴设备11、手持终端13以及从穿戴设备12,主穿戴设备11佩戴于用户身上。其中,主穿戴设备11包括第一总线615及分别与第一总线615连接的第一存储器611、第一处理器612、第一通信接口614以及第一显示器613。从穿戴设备12包括第二总线625及分别与第二总线625连接的第二存储器621、第二处理器622、第二通信接口624以及第二显示器623。手持终端13包括第三总线634及分别与第三总线634连接的第三存储器631、第三处理器632及第三通信接口633。其中,第一存储器611存储有第一程序指令,第一处理器612用于执行第一程序指令,第二存储器621存储有第二程序指令,第二处理器622用于执行第二程序指令,第三存储器631存储有第三程序指令,第三处理器632用于执行第三程序指令。
其中,第一通信接口614与第二通信接口624均与皮肤接触,以保证人体传输通路的畅通,第一通信接口614与第三通信接口633之间建立第一无线通信链路。
第一处理器612执行第一程序指令以控制第一通信接口614通过在用户人体内形成的人体传输通路检测用户是否配戴上从穿戴设备12;在第一处理器612执行第一程序指令确定用户配戴上从穿戴设备12时,第一通信接口614通过人体传输通路从第二通信接口624获取从穿戴设备12的设备信息,并通过第一无线通信链路将设备信息发送至第三通信接口633。
第三处理器632执行第三程序指令在第三通信接口633接收到设备信息后,根据设备信息控制第三通信接口633与第二通信接口624建立第二无线通信链路。
第三处理器632执行第三程序指令判断主穿戴设备11和从穿戴设备12的优先级,第三处理器632执行第三程序指令在确定从穿戴设备12的优先级大于主穿戴设备11的优先级时,第三通信接口633通过第二无线通信链路将需显示的显示信息发送至第二通信接口624。
第二处理器622执行第二程序指令在第二通信接口624接收到显示信息后,第二显示器623显示显示信息。
其中,第一处理器612执行第一程序指令在确定用户配戴上从穿戴设备12时,第一通信接口614进一步通过人体传输通路定期向第二通信接口624发送握手信息,第二处理器622执行第二程序指令使第二通信接口624通过人体传输通路向第一通信接口614发送对应于握手信息的应答信息。
在第一处理器612执行第一程序指令在第一通信接口614发送握手信息之后,并没有接收到对应的应答信息时,第一处理器612确认用户脱下从穿戴设备12,第一通信接口614在第一处理器612确定用户脱下从穿戴设备12时,通过第一无线通信链路发送切换信息至第三通信接口633。第三处理器632执行第三程序指令根据切换信息通过第一无线通信链路将需显示的显示信息发送至第一通信接口614,第一显示器613显示显示信息。
第一无线通信链路和第二无线通信链路优选为蓝牙链路,主穿戴设备11优选为智能手表,从穿戴设备12优选为智能眼镜。
综上,本发明的穿戴设备显示信息的显示方法包括:主穿戴设备通过在用户人体内形成的人体传输通路检测用户是否配戴上从穿戴设备;主穿戴设备确定用户配戴上从穿戴设备时,判断主穿戴设备和从穿戴设备的优先级,且在从穿戴设备的优先级大于主穿戴设备的优先级时通过人体传输通路将需要显示的显示信息发送至从穿戴设备;从穿戴设备在自身显示器上显示显示信息。通过上述方式,本发明通过自动将显示信息显示在优先级为最高的穿戴设备上,大大提高穿戴设备的显示的灵活性,有效提升用户的体验。
以上参照附图说明了本发明的优选实施例,并非因此局限本发明的权利范围。本领域技术人员不脱离本发明的范围和实质内所作的任何修改、等同替换和改进,均应在本发明的权利范围之内。

Claims (13)

  1. 一种穿戴设备显示信息的显示系统,其中,包括主穿戴设备、手持终端以及从穿戴设备,所述主穿戴设备佩戴于用户身上,所述主穿戴设备包括第一总线、第一存储器、第一处理器、第一通信接口以及第一显示器,所述第一存储器、所述第一处理器、所述第一通信接口以及所述第一显示器分别与所述第一总线连接,所述从穿戴设备包括第二总线、第二存储器、第二处理器、第二通信接口以及第二显示器,所述第二存储器、所述第二处理器、所述第二通信接口以及所述第二显示器分别与所述第二总线连接,所述手持终端包括第三总线、第三存储器、第三处理器及第三通信接口,所述第三存储器、所述第三处理器及所述第三通信接口分别与所述第三总线连接,所述第一存储器存储有第一程序指令,所述第一处理器用于执行所述第一程序指令,所述第二存储器存储有第二程序指令,所述第二处理器用于执行所述第二程序指令,所述第三存储器存储有第三程序指令,所述第三处理器用于执行所述第三程序指令,所述第一通信接口与所述第二通信接口均与皮肤接触,以保证人体传输通路的畅通,其中:
    所述第一通信接口与所述第三通信接口之间建立第一无线通信链路;
    所述第一处理器执行所述第一程序指令以控制所述第一通信接口通过在所述用户人体内形成的人体传输通路检测所述用户是否配戴上所述从穿戴设备;
    所述第一处理器执行所述第一程序指令在确定所述用户配戴上所述从穿戴设备时,所述第一通信接口通过所述人体传输通路从所述第二通信接口获取所述从穿戴设备的设备信息,并通过所述第一无线通信链路将所述设备信息发送至所述第三通信接口;
    所述第三处理器执行所述第三程序指令在所述第三通信接口接收到所述设备信息后,根据所述设备信息控制所述第三通信接口与所述第二通信接口建立第二无线通信链路;
    所述第三处理器执行所述第三程序指令判断所述主穿戴设备和所述从穿戴设备的优先级;
    所述第三处理器执行所述第三程序指令在确定所述从穿戴设备的优先级大于所述主穿戴设备的优先级时,所述第三通信接口通过所述第二无线通信链路将需显示的显示信息发送至所述第二通信接口;
    所述第二处理器执行所述第二程序指令在所述第二通信接口接收到所述显示信息后,所述第二显示器显示所述显示信息;
    其中,所述第一处理器执行所述第一程序指令在确定所述用户配戴上所述从穿戴设备时,所述第一通信接口进一步通过所述人体传输通路定期向所述第二通信接口发送握手信息;
    所述第二处理器执行所述第二程序指令使所述第二通信接口通过所述人体传输通路向所述第一通信接口发送对应于所述握手信息的应答信息;
    所述第一无线通信链路和所述第二无线通信链路为蓝牙链路。
  2. 根据权利要求1所述的系统,其中,
    所述第一处理器执行所述第一程序指令在所述第一通信接口发送所述握手信息之后,并没有接收到对应的应答信息时,所述第一处理器确认所述用户脱下所述从穿戴设备;
    所述第一通信接口在所述第一处理器确定所述用户脱下所述从穿戴设备时,通过所述第一无线通信链路发送切换信息至所述第三通信接口;
    所述第三处理器执行所述第三程序指令根据所述切换信息通过所述第一无线通信链路将需显示的显示信息发送至所述第一通信接口;
    所述第一显示器显示所述显示信息。
  3. 根据权利要求1所述的系统,其中,所述主穿戴设备为智能手表,所述从穿戴设备为智能眼镜。
  4. 一种穿戴设备显示信息的显示系统,其中,包括主穿戴设备、手持终端以及从穿戴设备,所述主穿戴设备佩戴于用户身上,所述主穿戴设备包括第一总线、第一存储器、第一处理器、第一通信接口以及第一显示器,所述第一存储器、所述第一处理器、所述第一通信接口以及所述第一显示器分别与所述第一总线连接,所述从穿戴设备包括第二总线、第二存储器、第二处理器、第二通信接口以及第二显示器,所述第二存储器、所述第二处理器、所述第二通信接口以及所述第二显示器分别与所述第二总线连接,所述手持终端包括第三总线、第三存储器、第三处理器及第三通信接口,所述第三存储器、所述第三处理器及所述第三通信接口分别与所述第三总线连接,所述第一存储器存储有第一程序指令,所述第一处理器用于执行所述第一程序指令,所述第二存储器存储有第二程序指令,所述第二处理器用于执行所述第二程序指令,所述第三存储器存储有第三程序指令,所述第三处理器用于执行所述第三程序指令,其中:
    所述第一通信接口与所述第三通信接口之间建立第一无线通信链路;
    所述第一处理器执行所述第一程序指令以控制所述第一通信接口通过在所述用户人体内形成的人体传输通路检测所述用户是否配戴上所述从穿戴设备;
    所述第一处理器执行所述第一程序指令在确定所述用户配戴上所述从穿戴设备时,所述第一通信接口通过所述人体传输通路从所述第二通信接口获取所述从穿戴设备的设备信息,并通过所述第一无线通信链路将所述设备信息发送至所述第三通信接口;
    所述第三处理器执行所述第三程序指令在所述第三通信接口接收到所述设备信息后,根据所述设备信息控制所述第三通信接口与所述第二通信接口建立第二无线通信链路;
    所述第三处理器执行所述第三程序指令判断所述主穿戴设备和所述从穿戴设备的优先级;
    所述第三处理器执行所述第三程序指令在确定所述从穿戴设备的优先级大于所述主穿戴设备的优先级时,所述第三通信接口通过所述第二无线通信链路将需显示的显示信息发送至所述第二通信接口;
    所述第二处理器执行所述第二程序指令在所述第二通信接口接收到所述显示信息后,所述第二显示器显示所述显示信息。
  5. 根据权利要求4所述的系统,其中,所述第一处理器执行所述第一程序指令在确定所述用户配戴上所述从穿戴设备时,所述第一通信接口进一步通过所述人体传输通路定期向所述第二通信接口发送握手信息;
    所述第二处理器执行所述第二程序指令使所述第二通信接口通过所述人体传输通路向所述第一通信接口发送对应于所述握手信息的应答信息。
  6. 根据权利要求5所述的系统,其中,所述第一处理器执行所述第一程序指令在所述第一通信接口发送所述握手信息之后,并没有接收到所述第二通信接口发送的对应的应答信息时,所述第一处理器确认所述用户脱下所述从穿戴设备;
    所述第一通信接口在所述第一处理器确定所述用户脱下所述从穿戴设备时,通过所述第一无线通信链路发送切换信息至所述第三通信接口;
    所述第三处理器执行所述第三程序指令根据所述切换信息通过所述第一无线通信链路将需显示的显示信息发送至所述第一通信接口;
    所述第一显示器显示所述显示信息。
  7. 根据权利要求4所述的系统,其中,所述第一无线通信链路和所述第二无线通信链路为蓝牙链路。
  8. 根据权利要求4所述的系统,其中,所述主穿戴设备为智能手表,所述从穿戴设备为智能眼镜。
  9. 一种穿戴设备显示信息的显示方法,其中,所述方法应用于主穿戴设备、手持终端以及从穿戴设备,所述主穿戴设备佩戴于用户身上,所述主穿戴设备与所述手持终端之间建立第一无线通信链路,所述方法包括:
    所述主穿戴设备通过在所述用户人体内形成的人体传输通路检测所述用户是否配戴上所述从穿戴设备;
    所述主穿戴设备在确定所述用户配戴上所述从穿戴设备时,通过所述人体传输通路从所述从穿戴设备获取所述从穿戴设备的设备信息,并通过所述第一无线通信链路将所述设备信息发送至所述手持终端;
    所述手持终端接收到所述设备信息后,根据所述设备信息与所述从穿戴设备建立第二无线通信链路;
    所述手持终端判断所述主穿戴设备和所述从穿戴设备的优先级,且在确定所述从穿戴设备的优先级大于所述主穿戴设备的优先级时,通过所述第二无线通信链路将需显示的显示信息发送至所述从穿戴设备;
    所述从穿戴设备在自身显示器上显示所述显示信息。
  10. 根据权利要求9所述的方法,其中,所述主穿戴设备在确定所述用户配戴上所述从穿戴设备时,进一步通过所述人体传输通路定期向所述从穿戴设备发送握手信息,所述从穿戴设备通过所述人体传输通路向所述主穿戴设备发送对应于所述握手信息的应答信息。
  11. 根据权利要求10所述的方法,其中,在所述主穿戴设备发送所述握手信息之后,并没有接收到对应的应答信息时,所述主穿戴设备确认所述用户脱下所述从穿戴设备,并发送切换信息至所述手持终端,所述手持终端根据所述切换信息通过所述第一无线通信链路将需显示的显示信息发送至所述主穿戴设备,所述主穿戴设备在自身显示器上显示所述显示信息。
  12. 根据权利要求9所述的方法,其中,所述第一无线通信链路和所述第二无线通信链路为蓝牙链路。
  13. 根据权利要求9所述的方法,其中,所述主穿戴设备为智能手表,所述从穿戴设备为智能眼镜。
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