WO2020215520A1 - 无线充电系统、无线充电设备及无线受电设备 - Google Patents

无线充电系统、无线充电设备及无线受电设备 Download PDF

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Publication number
WO2020215520A1
WO2020215520A1 PCT/CN2019/098664 CN2019098664W WO2020215520A1 WO 2020215520 A1 WO2020215520 A1 WO 2020215520A1 CN 2019098664 W CN2019098664 W CN 2019098664W WO 2020215520 A1 WO2020215520 A1 WO 2020215520A1
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WIPO (PCT)
Prior art keywords
module
function
wireless charging
power receiving
wireless power
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PCT/CN2019/098664
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English (en)
French (fr)
Inventor
潘亚君
韦书俊
白剑
Original Assignee
北京小米移动软件有限公司
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
Application filed by 北京小米移动软件有限公司 filed Critical 北京小米移动软件有限公司
Priority to KR1020197028469A priority Critical patent/KR102390906B1/ko
Priority to JP2019554963A priority patent/JP7377108B2/ja
Priority to RU2019141194A priority patent/RU2741064C1/ru
Publication of WO2020215520A1 publication Critical patent/WO2020215520A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B5/00Near-field transmission systems, e.g. inductive or capacitive transmission systems
    • H04B5/70Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes
    • H04B5/79Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes for data transfer in combination with power transfer
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J50/00Circuit arrangements or systems for wireless supply or distribution of electric power
    • H02J50/20Circuit arrangements or systems for wireless supply or distribution of electric power using microwaves or radio frequency waves
    • 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
    • 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
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0412Digitisers structurally integrated in a display
    • 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
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J50/00Circuit arrangements or systems for wireless supply or distribution of electric power
    • H02J50/005Mechanical details of housing or structure aiming to accommodate the power transfer means, e.g. mechanical integration of coils, antennas or transducers into emitting or receiving devices
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J50/00Circuit arrangements or systems for wireless supply or distribution of electric power
    • H02J50/80Circuit arrangements or systems for wireless supply or distribution of electric power involving the exchange of data, concerning supply or distribution of electric power, between transmitting devices and receiving devices
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B5/00Near-field transmission systems, e.g. inductive or capacitive transmission systems
    • H04B5/70Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes
    • H04B5/72Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes for local intradevice communication
    • 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
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules
    • H04N23/66Remote control of cameras or camera parts, e.g. by remote control devices
    • 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

Definitions

  • the present disclosure relates to the field of wireless charging, in particular to a wireless charging system, a wireless charging device and a wireless power receiving device.
  • Wireless charging technology is a technology applied in the charging process of various mobile terminals such as mobile phones, tablets, and notebook computers.
  • the wireless charging technology includes a wireless charging device and a wireless power receiving device.
  • the wireless charging device includes a charging coil
  • the wireless power receiving device includes a power receiving coil and a battery.
  • the embodiments of the present disclosure provide a wireless charging system, a wireless charging device, and a wireless power receiving device, which can solve the problem that the flexibility of the wireless power receiving device is also poor based on the poor flexibility of the wireless charging device.
  • a wireless charging system including: a wireless charging device and a wireless power receiving device;
  • the wireless charging device includes a wireless charging module, a first functional module, and a first communication module, and the wireless charging module includes a radio frequency transmitting antenna;
  • the wireless power receiving device includes a wireless power receiving module, a second functional module, and a second communication module, and the wireless power receiving module includes a radio frequency receiving antenna;
  • the wireless charging module is configured to supply power to the wireless power receiving device through the radio frequency transmitting antenna, and the wireless power receiving module is configured to receive the power supply of the wireless charging device through the radio frequency receiving antenna;
  • the first function module is used to implement a first function subset in the function set, and the second function module is used to implement a second function subset in the function set;
  • the first function module and the second function module communicate with each other through the first communication module and the second communication module.
  • the set of functions includes: at least one of a sensor function, a display function, an image collection function, an audio playback function, an audio collection function, a telephone communication function, and a network function.
  • the wireless charging device further includes a processor, and the processor is configured to implement a calculation function
  • the first functional module is configured to receive a trigger signal sent by the processor, and complete an operation corresponding to the trigger signal.
  • the second functional module includes a display screen, and the display screen is used to implement the display function
  • the processor is configured to send a display signal to the second communication module through the first communication module, and the display screen is configured to display corresponding content according to the display signal received by the second communication module.
  • the display screen is a touch display screen including a touch function
  • the display screen is also used to receive touch signals
  • the display screen is also used to send the touch signal to the first communication module through the second communication module;
  • the processor is configured to generate the trigger signal according to the touch signal received by the first communication module, and send the trigger signal to the first functional module.
  • the first functional module is configured to receive the trigger signal, and after completing an operation corresponding to the trigger signal, generate an operation result and send it to the processor;
  • the processor is configured to generate the display signal according to the operation result, and send the display signal to the second communication module through the first communication module.
  • the first functional module includes at least one of a sensor unit, an image acquisition unit, a speaker unit, an audio acquisition unit, and a network communication unit;
  • the sensor unit is used to realize the sensor function;
  • the image acquisition unit is used to realize the image acquisition function;
  • the speaker unit is used to realize the audio playback function;
  • the audio acquisition unit is used to realize the The audio collection function;
  • the network communication unit is used to implement the network function.
  • the sensor unit when the first functional module includes the sensor unit, includes at least one of a gravity sensor, a temperature sensor, a light sensor, a distance sensor, and an acceleration sensor.
  • the image acquisition unit when the image acquisition unit is included in the first functional module, the image acquisition unit is configured to acquire an image and send the acquired target image to the processor ;
  • the processor is configured to generate a corresponding display signal according to the target image, and send the display signal to the second communication module through the first communication module;
  • the display screen is used for displaying the target image according to the display signal received by the second communication module.
  • the communication between the first communication module and the second communication module is through an ultra-wideband carrierless communication mode.
  • the wireless power receiving module further includes a battery
  • the wireless charging module is further configured to wirelessly charge the battery of the wireless power receiving device through the radio frequency transmitting antenna;
  • the wireless power receiving module is configured to receive the wireless charging of the battery by the wireless charging device through the radio frequency receiving antenna, and supply power to the wireless power receiving device through the battery.
  • the wireless charging device is implemented as a first wearable device
  • the wireless power receiving device is implemented as a handheld device, or the wireless power receiving device is implemented as a second wearable device.
  • the wireless charging device when the wireless charging device is implemented as the first wearable device, and the wireless power receiving device is implemented as the second wearable device, the wireless charging device
  • the way of wearing includes the way of wearing around the wrist, and the way of wearing the wireless power receiving device includes the way of wearing in the form of smart glasses.
  • a wireless charging device includes a wireless charging module, a first functional module, and a first communication module, and the wireless charging module includes a radio frequency transmitting antenna;
  • the wireless charging module is used to supply power to a wireless power receiving device through the radio frequency transmitting antenna;
  • the first function module is used to implement a first function subset in a function set
  • the first functional module is used to communicate with a second communication module in the wireless power receiving device through the first communication module.
  • the function set includes:
  • At least one of sensor function, display function, image collection function, audio playback function, audio collection function, telephone communication function, and network function are examples of sensor function, display function, image collection function, audio playback function, audio collection function, telephone communication function, and network function.
  • the wireless charging device further includes a processor, and the processor is configured to implement a calculation function
  • the first functional module is configured to receive a trigger signal sent by the processor, and complete an operation corresponding to the trigger signal.
  • the first functional module is further configured to receive the trigger signal, and after completing the operation corresponding to the trigger signal, generate an operation result and send it to the processor;
  • the processor is configured to generate the display signal according to the operation result, and send the display signal to the wireless power receiving device through the first communication module.
  • the first functional module includes at least one of a sensor unit, an image acquisition unit, a speaker unit, an audio acquisition unit, and a network communication unit;
  • the sensor unit is used to realize the sensor function;
  • the image acquisition unit is used to realize the image acquisition function;
  • the speaker unit is used to realize the audio playback function;
  • the audio acquisition unit is used to realize the The audio collection function;
  • the network communication unit is used to implement the network function.
  • the image acquisition unit when the image acquisition unit is included in the first functional module, the image acquisition unit is configured to acquire an image and send the acquired target image to the processor ;
  • the processor is configured to generate a corresponding display signal according to the target image, and send the display signal to the wireless power receiving device through the first communication module, and the display signal is used to control the wireless power receiving device
  • the display screen of the device displays the target image.
  • the first communication module communicates with the second communication module in the wireless power receiving device through an ultra-wideband carrierless communication manner.
  • the wireless charging device is implemented as a wearable device, and the way of wearing the wireless charging device includes a way of wearing around the wrist.
  • a wireless power receiving device that includes a wireless power receiving module, a second functional module, and a second communication module, and the wireless power receiving module includes a radio frequency receiver. antenna;
  • the wireless power receiving module is used to receive power from a wireless charging device through the radio frequency receiving antenna;
  • the second function module is used to implement a second function subset in the function set
  • the second functional module is used to communicate with the first communication module in the wireless charging device through the second communication module.
  • the function set includes:
  • At least one of sensor function, display function, image collection function, audio playback function, audio collection function, telephone communication function, and network function are examples of sensor function, display function, image collection function, audio playback function, audio collection function, telephone communication function, and network function.
  • the second functional module includes a display screen, and the display screen is used to implement the display function
  • the display screen is used for displaying corresponding content according to the display signal received by the second communication module.
  • the display screen is a touch display screen including a touch function
  • the display screen is also used to receive touch signals
  • the display screen is also used to send the touch signal to the first communication module through the second communication module;
  • the wireless charging device is configured to generate the trigger signal according to the touch signal received by the first communication module, and send the trigger signal to the first functional module.
  • the second communication module communicates with the wireless charging device in an ultra-wideband carrierless communication manner.
  • the wireless power receiving module further includes a battery
  • the wireless power receiving module is further configured to receive the wireless charging of the battery by the wireless charging device through the radio frequency receiving antenna, and supply power to the wireless power receiving device through the battery.
  • the wireless power receiving device is implemented as a handheld device, or the wireless power receiving device is implemented as a wearable device;
  • the wearing manner of the wireless power receiving device includes a manner of wearing in the form of smart glasses.
  • the wireless charging device and the wireless power receiving device are realized
  • the first function module of the wireless power receiving device is set in the wireless charging device, and the interaction between the first function module and the second function module is realized through the communication module, which improves the wireless power receiving device’s Flexibility during use.
  • Fig. 1 is a structural block diagram of a wireless charging device and a wireless power receiving device in a wireless charging system provided by an exemplary embodiment of the present disclosure
  • FIG. 2 is a structural block diagram of a wireless charging device and a wireless power receiving device in a wireless charging system provided by another exemplary embodiment of the present disclosure
  • Fig. 3 is an interactive process diagram of controlling a first functional module through a display screen in a wireless power receiving device according to an exemplary embodiment of the present disclosure
  • Fig. 4 is an interactive process diagram of controlling a first functional module through a physical button on a wireless power receiving device according to an exemplary embodiment of the present disclosure
  • Fig. 5 is an interactive process diagram of determining the display content of a display screen in a wireless power receiving device according to a first functional module according to an exemplary embodiment of the present disclosure
  • Fig. 6 is a schematic diagram of functional units in a first functional module provided by an exemplary embodiment of the present disclosure
  • FIG. 7 is a flowchart of an image acquisition method provided by an exemplary embodiment of the present disclosure.
  • FIG. 8 is a structural block diagram of a wireless charging device and a wireless power receiving device in a wireless charging system provided by another exemplary embodiment of the present disclosure.
  • FIG. 9 is a schematic diagram of the distribution of functional modules in a terminal in a related technology provided by an exemplary embodiment of the present disclosure.
  • FIG. 10 is a schematic diagram of a wearing manner when the wireless charging device and the wireless power receiving device provided by an exemplary embodiment of the present disclosure are worn in the form of a wearable device.
  • FIG. 1 is a structural block diagram of a wireless charging system 100 provided by an exemplary embodiment of the present disclosure. As shown in FIG. 1, the wireless charging system 100 includes a wireless charging device 110 and a wireless power receiving device 120;
  • the wireless charging device 110 includes a wireless charging module 111, a first functional module 112, and a first communication module 113;
  • the wireless power receiving device 120 includes a wireless power receiving module 121, a second functional module 122, and a second communication module 123,
  • the wireless charging module 111 includes a radio frequency transmitting antenna 115
  • the wireless power receiving module 121 includes a radio frequency receiving antenna 124.
  • the first function module 112 and the first communication module 113 are connected in the wireless charging device 110.
  • the second communication module 123 is connected to the second functional module 122.
  • the wireless charging module 111 in the wireless charging device 110 and the wireless power receiving module 121 in the wireless power receiving device 120 are described;
  • the wireless charging module 111 is used to supply power to the wireless power receiving device 120 through the radio frequency transmitting antenna 115, and the wireless power receiving module 121 is used to receive power supply from the wireless charging device 110 through the radio frequency receiving antenna 124.
  • the radio frequency transmission between the radio frequency transmitting antenna 115 and the radio frequency receiving antenna 124 is performed through radio frequency (RF) technology, where radio frequency is used to indicate the electromagnetic frequency radiated into space, and the radio frequency is a radio frequency current, which is a A kind of high-frequency alternating electromagnetic waves.
  • RF radio frequency
  • the wireless power receiving module 121 supplies power to the operation of the wireless power receiving device 120.
  • the wireless power receiving module 121 supplies power to the operation of the second function module 122 and the second communication module 123 of the wireless power receiving device 120.
  • the wireless charging device 110 is connected to a power source, and the power source supplies power to the wireless charging device 110, and the wireless charging device 110 supplies power from the power source to the wireless power receiving device 120 through the radio frequency transmitting antenna 115; or
  • the charging device 110 includes a battery, and the battery uses power to the wireless charging device 110, and the wireless charging device 110 uses the electric energy of the battery to supply power to the wireless power receiving device 120 through the radio frequency transmitting antenna 115.
  • the wireless charging device 110 includes a battery
  • the power of the battery is used to supply power to the wireless power receiving device 120
  • the wireless charging device 110 and the wireless power receiving device 120 can be used without power, that is, the The wireless charging device 110 and the wireless power receiving device 120 may be implemented as a group of mobile terminal devices.
  • wireless charging can be performed at a midfield distance, such as 0.8 meters, or at a far field distance, such as 4 meters. Among them, the RF power at the far field distance is higher, and the midfield distance The RF power at distance is low.
  • the first function module 112 is used to implement a first function subset in the function set
  • the second function module 122 is used to implement a second function subset in the function set.
  • the first function subset and the second function can have overlapping functional items, or they can be independent of each other, that is, the functions implemented by the second functional module can be completely different from those implemented by the first functional module; or, the second functional module can implement the functions in the first functional module.
  • the function set includes: at least one of sensor function, display function, image collection function, audio playback function, audio collection function, telephone communication function, and network function.
  • the sensor function is implemented by a sensor unit, and the sensor unit includes at least one of a gravity sensor, a temperature sensor, a light sensor, a distance sensor, and an acceleration sensor.
  • the sensors in the sensor unit may all be implemented in the first function module 112, or all may be implemented in the second function module 122, and may also be partially implemented in the first function module 112, and the other part may be implemented in the second function module.
  • module 122 the sensors in the sensor unit may all be implemented in the first function module 112, or all may be implemented in the second function module 122, and may also be partially implemented in the first function module 112, and the other part may be implemented in the second function module.
  • the display function may be implemented by the first function module 112, may be implemented by the second function module 122, or may be implemented by both the first function module 112 and the second function module. 122 achieved. It will be described in combination with the implementation of the display function. If the display function is implemented by a display screen, the first function module 112 includes a first display screen, and/or the second function module 122 includes a second display screen.
  • an image acquisition function is taken as an example for description or description.
  • the image acquisition function is implemented by an image acquisition unit (such as a camera).
  • the camera may be configured in the wireless charging device 110, that is, the first functional module 112 includes the camera, It can also be configured in the wireless power receiving device 120, that is, the second functional module 122 includes the camera, or the first functional module 112 is configured with a first camera, and the second functional module 122 is configured with a second camera.
  • the embodiment does not limit this. It is worth noting that the aforementioned camera can be implemented as a single camera element or as a group of camera modules.
  • the second function module 122 includes a display screen and the wireless charging system 100 receives an incoming call event
  • the wireless charging The display screen of the device 120 displays the incoming call reminder
  • the second communication module 123 sends an answering signal to the first communication module 113
  • the telephone communication unit receives the telephone signal according to the answering signal and starts the voice The voice collection function of the collection unit.
  • the first function module 112 and the second function module 122 communicate through the first communication module 113 and the second communication module 123.
  • the above-mentioned wireless charging system 100 further includes a processor, and the processor is configured to implement a calculation function.
  • the processor can be implemented in the wireless charging device 110 or in the wireless power receiving device 120.
  • the first processor can also be configured in the wireless charging device 110 and the second processor can be configured in the wireless power receiving device 120. .
  • the function of the first functional module 112 may be realized by the trigger signal of the processor, and the function of the second functional module 122 may be generated by the processor after the trigger signal is generated. After being sent to the second communication module 123 by the first communication module 113, it is realized according to the trigger signal received by the second communication module 123; on the contrary, when the processor is configured in the wireless power receiving device 120, the function of the first function module 112 The function can be generated by the processor after the trigger signal is sent to the first communication module 113 through the second communication module 123, and then realized according to the trigger signal received by the first communication module 113, the function of the second function module 122 can be generated by the processor Realized after the trigger signal; or, when the wireless charging device 110 is configured with a first processor and the wireless power receiving device 120 is configured with a second processor, the function of the first functional module 112 is generated or received by the first processor The function of the second functional module 122 is realized by the trigger signal generated or received by the second
  • the wireless charging device 110 includes the aforementioned processor 114, and the aforementioned second functional module 122 includes a display screen 125, which is used to implement the aforementioned display function.
  • the first functional module 112 is configured to receive a trigger signal sent by the processor 114, and complete operations corresponding to the trigger signal.
  • the processor 114 is further configured to send a display signal to the second communication module 123 through the first communication module 113, and the display screen 125 is also configured to display corresponding content according to the display signal received by the second communication module 123.
  • the wireless power receiving device 120 only includes the wireless power receiving module 121, the display screen 125, and the second communication module 123.
  • the trigger signal sent by the processor 114 received by the first functional module 112 may be a trigger signal generated by the processor 114 according to a trigger operation received by the wireless power receiving device 120, or may be a trigger signal generated by the processor 114 according to the wireless charging device 110 The trigger signal generated by the received notification message.
  • the display screen 125 in the wireless power receiving device 120 is a touch display screen including a touch function.
  • the display screen 125 is used to receive touch signals, and the display screen 125 is also used to send touch signals to the second communication module 123.
  • the first communication module 113, the processor 114 in the wireless charging device 110 is configured to generate a trigger signal according to the touch signal received by the first communication module 113, and send the trigger signal to the first function module 112;
  • the first functional module 112 includes a speaker unit 311, and a music playing interface 320 is displayed on the display screen 125.
  • the touch signal is passed through the second communication module 123 is sent to the first communication module 113, where the touch signal includes the user's touch coordinates on the display screen 125, and the processor 114 obtains the touch signal received by the first communication module 113, and corresponds to the touch signal according to the touch signal. It is determined that the control corresponding to the touch signal is the playback control 321, and the processor 114 generates a playback trigger signal according to the touch signal, and sends the playback trigger signal to the speaker unit for music playback.
  • the wireless power receiving device 120 includes a physical button.
  • the operation signal is sent to the first communication module 113 through the second communication module 123, and the wireless charging device 110
  • the processor 114 is configured to generate a trigger signal according to the operation signal received by the first communication module 113, and send the trigger signal to the first function module 112;
  • the first functional module 112 includes an image acquisition unit 411
  • the wireless power receiving device 120 includes a lock screen button 410.
  • the operation signal is sent to the first communication module 113 through the second communication module 123, and the processor 114 generates an image acquisition signal according to the operation signal received by the first communication module 113, and The image acquisition signal is sent to the image acquisition unit 411 for image acquisition.
  • the image acquired by the image acquisition unit 411 is used for facial recognition to unlock the application of the wireless power receiving device 120, that is, the wireless The module in the charging device that realizes the function of the wireless power receiving device is unlocked.
  • a physical button is located in the wireless power receiving device 120 as an example for description.
  • the physical button may also be located in the wireless charging device 110, directly in the wireless charging device 110. It generates operation signals and controls the operation of the first functional module 112.
  • the wireless charging device 110 includes a network communication module, and when a notification message is received through the network communication module, the processor 114 generates a trigger signal according to the notification message, and sends the trigger signal to the first function module 112;
  • the first functional module 112 includes a speaker unit
  • the wireless charging device 110 includes a network communication module.
  • the processor 114 When a notification message is received through the network communication module, the processor 114 generates an audio prompt signal according to the notification message, and The audio prompt signal is sent to the speaker unit to play the prompt sound.
  • the wireless charging device 110 includes a timer, and performs timing according to the timer, and when the timing is reached, the timer automatically generates a trigger signal, and sends the trigger signal to the processor 114, which is The trigger signal is sent to the first function module 112.
  • the first functional module 112 includes a speaker unit
  • the wireless charging device 110 includes a timer.
  • the timer is set with a first time.
  • the timer automatically generates a trigger signal and sends the trigger signal to the processor 114, and the processor 114 sends the trigger signal to the speaker unit, and the speaker unit plays the prompt sound.
  • the processor 114 is further configured to send a display signal to the second communication module 123 through the first communication module 113, and the display screen 125 is configured to display corresponding content according to the display signal received by the second communication module.
  • the display signal may be automatically generated in the wireless charging device 110, may also be generated in the wireless charging device 110 according to the operation of the first function module 112, or may be generated by the network communication module in the wireless charging device 110 according to Generated by the received notification message;
  • the wireless charging device 110 includes a timer, and performs timing according to the timer.
  • the timer automatically generates a display signal, and sends the display signal to the processor 114, and the processor 114 uses the The display signal is sent to the second communication module 123 through the first communication module 113.
  • the wireless charging device 110 includes a timer 510, and the timer 510 is set with a first time.
  • the timer 510 automatically A display signal is generated and sent to the processor 114.
  • the processor 114 sends the display signal to the second communication module 123 through the first communication module 113, the display screen 125 in the wireless power receiving device 120 is based on the The display signal received by the second communication module 123 displays the alarm clock interface 520.
  • the first functional module 112 receives the trigger signal, and after completing the operation corresponding to the trigger signal, generates the operation result and sends it to the processor 114; the processor 114 generates a display signal according to the operation result, and displays the signal through the first communication module 113 Send to the second communication module 123.
  • the wireless charging device 110 includes a network communication module.
  • the processor 114 When a notification message is received through the network communication module, the processor 114 generates a display signal according to the notification message, and sends the display signal to the second communication through the first communication module 113 Module 123.
  • the wireless charging device 110 further includes a memory, and an operating system and an application program are installed in the wireless charging device 110, which are displayed on the display screen 125 through the communication between the first communication module 113 and the second communication module 123 The display interface corresponding to the operating system and application programs.
  • the power supply process or wireless charging process between the wireless charging module 111 and the wireless power receiving module 121 is relatively independent of the communication process between the first communication module 113 and the second communication module 123.
  • the wireless charging module by setting the wireless charging module in the wireless charging device, and setting the wireless power receiving module in the wireless power receiving device, and the wireless charging module provides power to the wireless power receiving module through the radio frequency transmitting antenna, the wireless charging device and wireless The long-distance wireless charging between the powered devices, so that the first functional module of the wireless powered device is set in the wireless charging device, and the interaction between the first functional module and the second functional module is realized through the communication module, which improves The flexibility of the wireless power receiving equipment during use.
  • the first communication module 113 and the second communication module 123 may communicate with each other through Ultra Wideband (UWB) communication; optionally, the first communication module 113 and the second communication module 123 may also communicate via a wireless network or communication, which is not limited in the embodiment of the present disclosure.
  • UWB Ultra Wideband
  • the aforementioned first functional module 112 includes at least one of a sensor unit 610, an image acquisition unit 620, a speaker unit 630, and an audio acquisition unit 640; wherein, when the first functional module 112 includes the In the case of the sensor unit 610, the sensor unit includes at least one of a gravity sensor 611, a temperature sensor 612, a light sensor 613, a distance sensor 614, and an acceleration sensor 615.
  • first functional module 112 the functional units included in the above-mentioned first functional module 112 are merely illustrative examples.
  • the first functional module 112 may also include other functional units.
  • all functional units in the terminal can be implemented in In the above-mentioned first functional module 112, the embodiment of the present disclosure does not limit this.
  • the image acquisition unit 620 is configured to collect images and send the collected target images to the processor 114; the processor 114 is configured to collect images according to the target The image generates a corresponding display signal, and sends the display signal to the second communication module 123 through the first communication module 113, and the display screen 125 is used to display the target image according to the display signal received by the second communication module 123.
  • FIG. 7 is a flowchart of an image acquisition method provided by an exemplary embodiment of the present disclosure.
  • the method is applied to the wireless charging system shown in FIG. 1 and the first functional module 112 includes an image acquisition unit 620 As an example, the method includes:
  • Step 701 Display a function selection interface on the display screen of the wireless power receiving device.
  • the wireless charging device further includes a memory in which an operating system is installed and an application program is installed.
  • the function selection interface may be a display interface provided by an operating system or a display interface provided by an application program.
  • the application includes at least one of an instant messaging application, a financial application, a multimedia application, and a game application.
  • the function selection interface is a display interface provided by an instant messaging application, and the function selection interface includes shooting controls corresponding to the shooting function.
  • Step 702 Receive a touch signal on the display screen.
  • the touch signal is a signal corresponding to a touch operation on the shooting control.
  • the touch signal includes touch coordinates corresponding to the touch operation on the display screen.
  • Step 703 The display screen sends the touch signal to the first communication module of the wireless charging device through the second communication module.
  • the second communication module sends the touch signal to the first communication module through UWB communication.
  • Step 704 The first communication module sends the touch signal to the processor.
  • Step 705 The processor determines that the control corresponding to the touch signal is a shooting control, and generates a shooting trigger signal.
  • the processor determines that the control corresponding to the touch signal is a shooting control according to the touch coordinates corresponding to the touch signal and the interface content currently displayed on the display screen.
  • Step 706 The processor sends a shooting trigger signal to the image acquisition unit.
  • the processor determines that the control corresponding to the touch signal is the shooting control according to the touch signal, it determines that the first functional module corresponding to the shooting control is the image acquisition unit, and sends the shooting trigger signal to the image acquisition unit.
  • Step 707 The image acquisition unit performs image acquisition according to the shooting trigger signal to obtain a target image.
  • the target image may be an image or a video stream composed of multiple images.
  • step 708 the image acquisition unit sends the target image to the processor.
  • the processor combines the target image and other content to be displayed on the display screen to determine the display mode of the target image on the display screen.
  • the processor includes a central processing unit (CPU) and a graphics processing unit (Graphics Processing Unit, GPU), where the CPU calculates the display content of the display screen, and the GPU performs calculations on the display content of the display screen. Rendering.
  • Step 709 The processor generates a display signal according to the target image.
  • the display signal includes a signal obtained by converting the display content of the display screen.
  • Step 710 The processor sends the display signal to the second communication module through the first communication module.
  • Step 711 The second communication module sends the display signal to the display screen.
  • Step 712 The display screen displays the target image acquired by the image acquisition unit according to the display signal.
  • the display content of the display screen includes the target image.
  • the display content of the display screen also includes other content, such as shooting parameters, shooting setting columns, etc.
  • the image acquisition method shown in FIG. 7 is only described by taking the image acquisition unit 620 included in the first functional module 112 as an example.
  • the image acquisition unit 620 is also It can be implemented as other functional units, and the functions implemented by the image acquisition unit 620 are changed correspondingly according to the actual functional units in the first functional module 112.
  • the aforementioned image acquisition unit 620 may be implemented as one camera, or as a camera module composed of multiple cameras.
  • the wireless charging module 111 further includes a first Bluetooth unit 811, a biometric identification unit 812, a charging management unit 813, a beamforming management unit 814, and a power amplifier 815;
  • the wireless power receiving module 121 also includes a second Bluetooth unit 821 and a power receiving management unit 822.
  • the biological recognition unit 812 is used to determine the distance between the wireless charging device 110 and the biological body.
  • the biometric identification unit 812 determines the distance between the wireless charging device 110 and the biological body (such as the human body) by detecting the peripheral temperature, or the biometric identification unit 812 determines the distance between the wireless charging device and the biological body through pulse detection. The distance between.
  • the biometric identification unit 812 sends the identification result to the first Bluetooth unit 811.
  • the first Bluetooth unit 811 and the second Bluetooth unit 821 communicate through Bluetooth Low Energy (BLE) technology.
  • BLE Bluetooth Low Energy
  • the first Bluetooth unit 811 and the second Bluetooth unit 821 Determine the distance between the wireless charging device 110 and the wireless power receiving device 120, and determine the distance between the wireless power receiving device 120 and the living body, thereby determining the power supply of the wireless charging module 111 to the wireless power receiving module 121 ,
  • the power supply is set in a state where the power supply efficiency of the wireless charging module 111 to the wireless power receiving module 121 is relatively high, and the impact of the power supply on the organism (such as radiation) is the lowest.
  • the charging management unit 813 is configured to control the power supply power according to the distance recognition result of the first Bluetooth unit 811, the beam forming management unit 814 is configured to adjust the bandwidth of the radio frequency signal, and the power amplifier 815 is configured to perform the radio frequency signal Power amplification processing.
  • the above-mentioned power receiving management unit 822 is configured to manage the radio frequency signals received by the radio frequency receiving antenna 124.
  • the wireless power receiving module 121 further includes a charger management unit 823 and a battery 824.
  • the charger management unit 823 is used to manage the charging process of the battery 824
  • the wireless pet-dina module 111 is also used to wirelessly charge the battery 824 of the wireless power receiving device 120 through the radio frequency transmitting antenna 115
  • the wireless power receiving module 121 It is used to receive the wireless charging of the battery 824 by the wireless charging device 110 through the radio frequency receiving antenna 124, and to supply power to the operation of the wireless power receiving device 120 through the battery 824.
  • mobile terminals such as mobile phones and tablet computers are equipped with various functional units such as a display screen 910, an audio input unit 920, an audio output unit 930, a power management unit 940, and an image acquisition unit 950.
  • the terminal also includes a processor. 960, and the above functional units are integrated in the mobile terminal, which increases the load in the mobile terminal.
  • the terminal 900 is an integral mobile device, and the above functional units are all integrated in the terminal 900.
  • the above-mentioned wireless charging device 110 may be implemented as a first wearable device, and the wireless power receiving device 120 may be implemented as a handheld device or a second wearable device.
  • the wireless charging device 110 when the wireless charging device 110 is implemented as a first wearable device, and the wireless power receiving device 120 is implemented as a second wearable device, the wireless charging device 110 can be worn around the wrist.
  • the way of wearing the power receiving device 120 includes a way of wearing in the form of smart glasses.
  • the user wears a wireless charging device 1010 on the wrist
  • the wireless charging device 1010 is worn on the user's wrist in the form of a smart watch
  • the user wears a wireless power receiving device 1020 on the face.
  • the electrical device 1020 is worn directly in front of the user's glasses in the form of smart glasses.
  • the wireless charging device 1010 and the wireless power receiving device 1020 perform wireless power supply or wireless charging through RF technology
  • the wireless charging device 1010 and the wireless power receiving device 1020 communicate through UWB technology, so that the wireless The power receiving device 1020 displays the content through the lens according to the display content sent by the processor in the wireless charging device 1010.
  • the wireless charging system provided by the present disclosure, by setting the wireless charging module in the wireless charging device, and setting the wireless power receiving module in the wireless power receiving device, and the wireless charging module transmits to the wireless power receiving module through the radio frequency transmitting antenna.
  • Power supply to realize long-distance wireless charging between the wireless charging device and the wireless power receiving device, so that the first function module of the wireless power receiving device is set in the wireless charging device, and the first function module and the second function are realized through the communication module
  • the interaction between the modules improves the flexibility of the wireless power receiving device during use.
  • the wireless charging system provided by the present disclosure has flexible design, meets the connection between the terminal and the artificial intelligence field according to the development of the artificial intelligence field, and can meet the needs of users in specific fields, such as: game mobile phones with extreme performance experience, terminal battery life The duration is longer, the terminal charging speed is faster, etc., and the wireless charging device and the wireless power receiving device are easy to carry and use flexibly, which improves the user's display and touch interaction experience.
  • the wireless charging device 110 and the wireless power receiving device 120 are implemented as a wireless charging system as an example. In actual operation, the wireless charging device 110 and the wireless receiving device 120 in the wireless charging system The electric device 120 may also be implemented as two separate mobile terminals.

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Abstract

本公开实施例提供了一种无线充电系统、无线充电设备及无线受电设备,涉及无线充电领域,该系统包括:无线充电设备、无线受电设备;无线充电设备中包括无线充电模块、第一功能模块、第一通信模块,无线充电模块中包括射频发射天线;无线受电设备中包括无线受电模块、第二功能模块、第二通信模块;无线充电模块用于通过射频发射天线向无线受电设备进行供电;第一功能模块和第二功能模块之间通过第一通信模块和第二通信模块进行通信。通过射频发射天线向无线受电模块进行供电,实现无线充电设备和无线受电设备之间的远距离无线充电,从而将无线受电设备的第一功能模块设置在无线充电设备中,提高了无线受电设备在使用过程中的灵活度。

Description

无线充电系统、无线充电设备及无线受电设备
本申请基于申请号为201910325192.6、申请日为2019年4月22日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本公开涉及无线充电领域,特别涉及一种无线充电系统、无线充电设备及无线受电设备。
背景技术
无线充电技术为应用于手机、平板、笔记本电脑等多种移动终端的充电过程中的技术。
相关技术中提供了一种无线充电技术,该无线充电技术中包括无线充电设备和无线受电设备,无线充电设备中包括充电线圈,无线受电设备中包括受电线圈和电池。
然而,目前进行无线充电时,由于是通过电磁感应实现无线充电过程的,无线充电设备和无线受电设备之间的距离需要保持在较小的距离范围内,在无线充电设备的灵活性较差的基础上,无线受电设备的灵活性也较差。
发明内容
本公开实施例提供了一种无线充电系统、无线充电设备及无线受电设备,可以解决无线充电设备的灵活性较差的基础上,无线受电设备的灵活性也较差的问题。
所述技术方案如下:
根据本公开的第一方面,提供了一种无线充电系统,所述系统包括:无线充电设备、无线受电设备;
所述无线充电设备中包括无线充电模块、第一功能模块以及第一通信模块,所述无线充电模块中包括射频发射天线;
所述无线受电设备中包括无线受电模块、第二功能模块以及第二通信模块,所述无线受电模块中包括射频接收天线;
所述无线充电模块用于通过所述射频发射天线向所述无线受电设备进行供电,所述无线受电模块用于通过所述射频接收天线接收所述无线充电设备的所述供电;
所述第一功能模块用于实现功能集合中的第一功能子集合,所述第二功能模块用于实现所述功能集合中的第二功能子集合;
所述第一功能模块和所述第二功能模块之间通过所述第一通信模块和所述第二通信模块进行通信。
在一个可选的实施例中,所述功能集合中包括:传感器功能、显示功能、图像采集功能、音频播放功能、音频采集功能、电话通信功能、网络功能中的至少一种。
在一个可选的实施例中,所述无线充电设备中还包括处理器,所述处理器用于实现计算功能;
所述第一功能模块用于接收所述处理器发送的触发信号,并完成所述触发信号对应的操作。
在一个可选的实施例中,所述第二功能模块中包括显示屏,所述显示屏用于实现所述显示功能;
所述处理器用于通过所述第一通信模块向所述第二通信模块发送显示信号,所述显示屏用于根据所述第二通信模块接收的所述显示信号显示对应的内容。
在一个可选的实施例中,所述显示屏为包括触控功能的触摸显示屏;
所述显示屏还用于接收触摸信号;
所述显示屏还用于通过所述第二通信模块将所述触摸信号发送至所述第一通信模块;
所述处理器用于根据所述第一通信模块接收到的所述触摸信号生成 所述触发信号,并将所述触发信号发送至所述第一功能模块。
在一个可选的实施例中,所述第一功能模块用于接收所述触发信号,完成所述触发信号对应的操作后,生成操作结果并发送至所述处理器;
所述处理器用于根据所述操作结果生成所述显示信号,并通过所述第一通信模块将所述显示信号发送至所述第二通信模块。
在一个可选的实施例中,所述第一功能模块包括传感器单元、图像采集单元、扬声器单元、音频采集单元、网络通信单元中的至少一种;
其中,所述传感器单元用于实现所述传感器功能;所述图像采集单元用于实现所述图像采集功能;所述扬声器单元用于实现所述音频播放功能;所述音频采集单元用于实现所述音频采集功能;所述网络通信单元用于实现所述网络功能。
在一个可选的实施例中,当所述第一功能模块中包括所述传感器单元时,所述传感器单元包括重力传感器、温度传感器、光线传感器、距离传感器、加速度传感器中的至少一种。
在一个可选的实施例中,当所述第一功能模块中包括所述图像采集单元时,所述图像采集单元用于对图像进行采集,并将采集得到的目标图像发送至所述处理器;
所述处理器用于根据所述目标图像生成对应的显示信号,并通过所述第一通信模块将所述显示信号发送至所述第二通信模块;
所述显示屏用于根据所述第二通信模块接收到的所述显示信号显示所述目标图像。
在一个可选的实施例中,所述第一通信模块和所述第二通信模块之间通过超宽带无载波通信方式进行通信。
在一个可选的实施例中,所述无线受电模块中还包括电池;
所述无线充电模块还用于通过所述射频发射天线向所述无线受电设备的所述电池进行无线充电;
所述无线受电模块用于通过所述射频接收天线接收所述无线充电设备对所述电池的所述无线充电,并通过所述电池向所述无线受电设备进 行供电。
在一个可选的实施例中,所述无线充电设备实现为第一可穿戴式设备;
所述无线受电设备实现为手持式设备,或,所述无线受电设备实现为第二可穿戴式设备。
在一个可选的实施例中,当所述无线充电设备实现为所述第一可穿戴式设备,且所述无线受电设备实现为所述第二可穿戴式设备时,所述无线充电设备的穿戴方式包括环绕手腕进行穿戴的方式,所述无线受电设备的穿戴方式包括以智能眼镜的形式进行佩戴的方式。
根据本公开的另一方面,提供了一种无线充电设备,所述无线充电设备中包括无线充电模块、第一功能模块以及第一通信模块,所述无线充电模块中包括射频发射天线;
所述无线充电模块用于通过所述射频发射天线向无线受电设备进行供电;
所述第一功能模块用于实现功能集合中的第一功能子集合;
所述第一功能模块用于通过所述第一通信模块与所述无线受电设备中的第二通信模块进行通信。
在一个可选的实施例中,所述功能集合中包括:
传感器功能、显示功能、图像采集功能、音频播放功能、音频采集功能、电话通信功能、网络功能中的至少一种。
在一个可选的实施例中,所述无线充电设备中还包括处理器,所述处理器用于实现计算功能;
所述第一功能模块用于接收所述处理器发送的触发信号,并完成所述触发信号对应的操作。
在一个可选的实施例中,所述第一功能模块还用于接收所述触发信号,完成所述触发信号对应的操作后,生成操作结果并发送至所述处理器;
所述处理器用于根据所述操作结果生成所述显示信号,并通过所述第一通信模块将所述显示信号发送至所述无线受电设备。
在一个可选的实施例中,所述第一功能模块包括传感器单元、图像采集单元、扬声器单元、音频采集单元、网络通信单元中的至少一种;
其中,所述传感器单元用于实现所述传感器功能;所述图像采集单元用于实现所述图像采集功能;所述扬声器单元用于实现所述音频播放功能;所述音频采集单元用于实现所述音频采集功能;所述网络通信单元用于实现所述网络功能。
在一个可选的实施例中,当所述第一功能模块中包括所述图像采集单元时,所述图像采集单元用于对图像进行采集,并将采集得到的目标图像发送至所述处理器;
所述处理器用于根据所述目标图像生成对应的显示信号,并通过所述第一通信模块将所述显示信号发送至所述无线受电设备,所述显示信号用于控制所述无线受电设备的显示屏显示所述目标图像。
在一个可选的实施例中,所述第一通信模块通过超宽带无载波通信方式与所述无线受电设备中的所述第二通信模块进行通信。
在一个可选的实施例中,所述无线充电设备实现为可穿戴式设备,所述无线充电设备的穿戴方式包括环绕手腕进行穿戴的方式。
根据本公开的另一方面,提供了一种无线受电设备,所述无线受电设备中包括无线受电模块、第二功能模块以及第二通信模块,所述无线受电模块中包括射频接收天线;
所述无线受电模块用于通过所述射频接收天线接收无线充电设备的供电;
所述第二功能模块用于实现功能集合中的第二功能子集合;
所述第二功能模块用于通过所述第二通信模块与所述无线充电设备中的第一通信模块进行通信。
在一个可选的实施例中,所述功能集合中包括:
传感器功能、显示功能、图像采集功能、音频播放功能、音频采集功能、电话通信功能、网络功能中的至少一种。
在一个可选的实施例中,所述第二功能模块中包括显示屏,所述显示屏用于实现所述显示功能;
所述显示屏用于根据所述第二通信模块接收的所述显示信号显示对应的内容。
在一个可选的实施例中,所述显示屏为包括触控功能的触摸显示屏;
所述显示屏还用于接收触摸信号;
所述显示屏还用于通过所述第二通信模块将所述触摸信号发送至所述第一通信模块;
所述无线充电设备用于根据所述第一通信模块接收到的所述触摸信号生成所述触发信号,并将所述触发信号发送至所述第一功能模块。
在一个可选的实施例中,所述第二通信模块通过超宽带无载波通信方式与所述无线充电设备进行通信。
在一个可选的实施例中,所述无线受电模块中还包括电池;
所述无线受电模块还用于通过所述射频接收天线接收所述无线充电设备对所述电池的无线充电,并通过所述电池向所述无线受电设备进行供电。
在一个可选的实施例中,所述无线受电设备实现为手持式设备,或,所述无线受电设备实现为可穿戴式设备;
当所述无线受电设备实现为所述可穿戴式设备时,所述无线受电设备的穿戴方式包括以智能眼镜的形式进行佩戴的方式。
本公开实施例提供的技术方案的有益效果是:
通过在无线充电设备中设置无线充电模块,在无线受电设备中设置无线受电模块,且无线充电模块通过射频发射天线向无线受电模块进行供电,实现无线充电设备和无线受电设备之间的远距离无线充电,从而将无线受电设备的第一功能模块设置在无线充电设备中,并通过通信模块实现第一功能模块与第二功能模块之间的交互,提高了无线受电设备在使用过程中的灵活度。
附图说明
此处的附图被并入说明书中并构成本说明书的一部分,示出了符合本公开的实施例,并于说明书一起用于解释本公开的原理。
图1是本公开一个示例性实施例提供的无线充电系统中无线充电设备和无线受电设备的结构框图;
图2是本公开另一个示例性实施例提供的无线充电系统中无线充电设备和无线受电设备的结构框图;
图3是本公开一个示例性实施例提供的通过无线受电设备中的显示屏控制第一功能模块的交互过程图;
图4是本公开一个示例性实施例提供的通过无线受电设备上的物理按键控制第一功能模块的交互过程图;
图5是本公开一个示例性实施例提供的根据第一功能模块确定无线受电设备中显示屏的显示内容的交互过程图;
图6是本公开一个示例性实施例提供的第一功能模块中的功能单元的示意图;
图7是本公开一个示例性实施例提供的图像采集方法的流程图;
图8是本公开另一个示例性实施例提供的无线充电系统中无线充电设备和无线受电设备的结构框图;
图9是本公开一个示例性实施例提供的相关技术中终端中功能模块的分布示意图;
图10是本公开一个示例性实施例提供的无线充电设备和无线受电设备以可穿戴式设备的形式进行穿戴时的穿戴方式示意图。
具体实施例
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本公开相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本公开的一些方面相一致的装置和方法的例子。
图1是本公开一个示例性实施例提供的无线充电系统100的结构框图,如图1所示,该无线充电系统100包括无线充电设备110和无线受电设备120;
其中,无线充电设备110中包括无线充电模块111、第一功能模块112以及第一通信模块113;无线受电设备120中包括无线受电模块121、第二功能模块122以及第二通信模块123,其中,无线充电模块111中包括射频发射天线115,无线受电模块121中包括射频接收天线124。
可选地,如图1所示,无线充电设备110中,第一功能模块112和第一通信模块113相连。无线受电设备120中,第二通信模块123与第二功能模块122相连。
首先,对上述无线充电设备110中的无线充电模块111以及无线受电设备120中的无线受电模块121进行说明;
可选地,无线充电模块111用于通过射频发射天线115向无线受电设备120进行供电,无线受电模块121用于通过射频接收天线124接收无线充电设备110的供电。
可选地,上述射频发射天线115和射频接收天线124之间通过射频(Radio Frequency,RF)技术进行射频传递,其中,射频用于表示辐射到空间的电磁频率,该射频为射频电流,是一种高频交流变化电磁波。
可选地,无线受电模块121通过射频接收天线124接收无线充电设备110的供电后,该无线受电模块121向无线受电设备120的运行进行供电。如:无线受电模块121向无线受电设备120的第二功能模块122和第二通信模块123的运行进行供电。
可选地,无线充电设备110与电源相连,电源向该无线充电设备110进行供电,且该无线充电设备110将电源的电能通过射频发射天线115向无线受电设备120进行供电;或,该无线充电设备110中包括电池,电池向该无线充电设备110进行用电,且该无线充电设备110将电池的电能通过射频发射天线115先该无线受电设备120进行供电。
可选地,当该无线充电设备110中包括电池,且通过该电池的电量向无线受电设备120进行供电时,该无线充电设备110和无线受电设备120可以脱离电源进行应用,也即该无线充电设备110和无线受电设备120可以实现为一组移动终端设备。
可选地,根据无线充电设备110和无线受电设备120之间的距离,调整无线充电设备110的射频发射天线115发射的射频功率,其中,无线充电设备110和无线充电设备120之间可以贴合进行充电,可以在中场距离下进行无线充电,如:0.8米,也可以在远场距离下进行无线充电,如:4米,其中,在远场距离下的射频功率较高,中场距离下的射频功率较低。
其次,对上述第一功能模块112和第二功能模块122进行说明;
第一功能模块112用于实现功能集合中的第一功能子集合,第二功能模块122用于实现功能集合中的第二功能子集合,可选地,该第一功能子集合和第二功能子集合可以存在交集的功能项,也可以互相独立,即第二功能模块实现的功能与第一功能模块实现的功能可以完全不同;或,该第二功能模块可以实现该第一功能模块中的部分功能项。
可选地,该功能集合中包括:传感器功能、显示功能、图像采集功能、音频播放功能、音频采集功能、电话通信功能、网络功能中的至少一种。
可选地,该传感器功能通过传感器单元实现,该传感器单元中包括重力传感器、温度传感器、光线传感器、距离传感器以及加速度传感器中的至少一种。其中,该传感器单元中的传感器可以都实现在第一功能模块112中,也可以都实现在第二功能模块122中,还可以部分实现在第一功能模块112中,另一部分实现在第二功能模块122中。
可选地,以显示功能为例进行说明,该显示功能可以由第一功能模块112实现,可以由第二功能模块122实现,还可以既由第一功能模块112实现,又由第二功能模块122实现。结合该显示功能的实现方式进行说明,该显示功能由显示屏进行实现,则该第一功能模块112中包括 第一显示屏,和/或,第二功能模块122中包括第二显示屏。
可选地,以图像采集功能为例进行或说明,该图像采集功能由图像采集单元(如:摄像头)实现,该摄像头可以配置在无线充电设备110中,即第一功能模块112包括该摄像头,也可以配置在无线受电设备120中,即第二功能模块122中包括该摄像头,还可以第一功能模块112中配置有第一摄像头,第二功能模块122中配置有第二摄像头,本公开实施例对此不加以限定。值得注意的是,上述摄像头可以实现为单个摄像头元件,也可以实现为一组摄像头模组。
示意性的,以电话通信功能由第一功能模块112中的电话通信单元实现为例进行说明,当第二功能模块122中包括显示屏且无线充电系统100接收到来电事件时,通过无线受电设备120的显示屏显示来电提醒,并当用户对该来电提醒进行确认接听后,由第二通信模块123向第一通信模块113发送接听信号,电话通信单元根据接听信号接收电话信号,并开启语音采集单元的语音采集功能。
可选地,第一功能模块112和第二功能模块122之间通过第一通信模块113和第二通信模块123进行通信。
可选地,上述无线充电系统100中还包括处理器,该处理器用于实现计算功能。该处理器可以实现在无线充电设备110中,也可以实现在无线受电设备120中,还可以在无线充电设备110中配置第一处理器,并在无线受电设备120中配置第二处理器。
可选地,当处理器配置于无线充电设备110中时,该第一功能模块112的功能可以通过该处理器的触发信号实现,第二功能模块122的功能可以由处理器生成触发信号后,通过第一通信模块113发送至第二通信模块123后,根据第二通信模块123接收到的触发信号实现;反之,当处理器配置于无线受电设备120中时,该第一功能模块112的功能可以由处理器生成触发信号后,通过第二通信模块123发送至第一通信模块113后,根据第一通信模块113接收到的触发信号实现,第二功能模块122的功能可以由处理器生成触发信号后实现;或,当无线充电设备110中配置有第一处理器,无线受电设备120中配置有第二处理器时, 第一功能模块112的功能由第一处理器生成或接收到的触发信号实现,第二功能模块122的功能由第二处理器生成或接收到的触发信号实现,且第一功能模块112和第二功能模块122之间存在功能交互时,由处理器生成交互信号后,通过第一通信模块113和第二通信模块123实现交互的通信过程。
在一个可选地实施例中,请参考图2,无线充电设备110中包括上述处理器114,且上述第二功能模块122中包括显示屏125,该显示屏125用于实现上述显示功能。
可选地,该第一功能模块112用于接收处理器114发送的触发信号,并完成触发信号对应的操作。
可选地,该处理器114还用于通过第一通信模块113向第二通信模块123发送显示信号,该显示屏125还用于根据第二通信模块123接收的显示信号显示对应的内容。
可选地,该无线受电设备120中仅包括该无线受电模块121、显示屏125以及第二通信模块123。
可选地,该第一功能模块112接收的处理器114发送的触发信号可以是处理器114根据无线受电设备120接收到的触发操作生成的触发信号,也可以是处理器114根据无线充电设备110接收到的通知消息生成的触发信号。
根据上述情况分别进行说明:
第一,无线受电设备120中的显示屏125为包括触控功能的触摸显示屏,该显示屏125用于接收触摸信号,显示屏125还用于通过第二通信模块123将触摸信号发送至第一通信模块113,无线充电设备110中的处理器114用于根据第一通信模块113接收到的触摸信号生成触发信号,并将该触发信号发送至第一功能模块112;
示意性的,请参考图3,该第一功能模块112中包括扬声器单元311,显示屏125中显示有音乐播放界面320,显示屏125接收到触摸信号后,将该触摸信号通过第二通信模块123发送至第一通信模块113, 其中,该触摸信号中包括用户在该显示屏125上的触摸坐标,处理器114获取该第一通信模块113接收到的该触摸信号,并根据该触摸信号对应的触摸坐标确定该触摸信号对应的控件为播放控件321,处理器114根据该触摸信号生成播放触发信号,并将该播放触发信号发送至扬声器单元进行音乐播放。
第二,无线受电设备120中包括物理按键,当接收到位于该物理按键上的操作信号时,通过第二通信模块123将该操作信号发送至第一通信模块113,无线充电设备110中的处理器114用于根据第一通信模块113接收到的操作信号生成触发信号,并将该触发信号发送至第一功能模块112;
示意性的,请参考图4,该第一功能模块112中包括图像采集单元411,该无线受电设备120中包括锁屏按键410,当无线受电设备120处于锁屏状态,且接收到在该锁屏按键410上的操作信号时,通过第二通信模块123将该操作信号发送至第一通信模块113,处理器114根据该第一通信模块113接收到的操作信号生成图像采集信号,并将该图像采集信号发送至图像采集单元411进行图像采集,可选地,该图像采集单元411所采集的图像用于进行面部识别从而对该无线受电设备120的应用进行解锁,也即对无线充电设备中实现该无线受电设备的功能的模块进行解锁。
可选地,该实施例中以物理按键位于无线受电设备120中为例进行说明,在一个可选的实施例中,该物理按键还可以位于无线充电设备110中,直接在无线充电设备110中产生操作信号并控制第一功能模块112的运行。
第三,无线充电设备110中包括网络通信模块,通过该网络通信模块接收到通知消息时,处理器114根据该通知消息生成触发信号,并将该触发信号发送至第一功能模块112;
示意性的,该第一功能模块112中包括扬声器单元,该无线充电设备110中包括网络通信模块,通过该网络通信模块接收到通知消息时,处理器114根据该通知消息生成音频提示信号,并将该音频提示信号发 送至扬声器单元进行提示音的播放。
第四,无线充电设备110中包括定时器,根据该定时器进行定时,并当达到定时时刻时,由定时器自动生成触发信号,并将该触发信号发送至处理器114,处理器114将该触发信号发送至第一功能模块112。
示意性的,该第一功能模块112中包括扬声器单元,无线充电设备110中包括定时器,该定时器中设置有第一时刻,当无线充电设备110的时钟时刻达到该第一时刻时,有定时器自动生成触发信号,并将该触发信号发送至处理器114,处理器114将该触发信号发送至扬声器单元,由扬声器单元进行提示音播放。
可选地,处理器114还用于通过第一通信模块113向第二通信模块123发送显示信号,显示屏125用于根据第二通信模块接收的显示信号显示对应的内容。
可选地,该显示信号可以是无线充电设备110中自动生成的,也可以是无线充电设备110中根据第一功能模块112的操作生成的,还可以是无线充电设备110中的网络通信模块根据接收到的通知消息生成的;
根据上述情况分别进行说明:
第一,无线充电设备110中包括定时器,根据该定时器进行定时,并当达到定时时刻时,由定时器自动生成显示信号,并将该显示信号发送至处理器114,处理器114将该显示信号通过第一通信模块113发送至第二通信模块123。
示意性的,请参考图5,无线充电设备110中包括定时器510,该定时器510中设置有第一时刻,当无线充电设备110的时钟时刻达到该第一时刻时,由定时器510自动生成显示信号,并将该显示信号发送至处理器114,处理器114将该显示信号通过第一通信模块113发送至第二通信模块123后,无线受电设备120中的显示屏125根据该第二通信模块123接收到的显示信号显示闹钟界面520。
第二,第一功能模块112接收触发信号,完成触发信号对应的操作后,生成操作结果并发送至处理器114;处理器114根据操作结果生成显示信号,并通过第一通信模块113将显示信号发送至第二通信模块 123。
第三,无线充电设备110中包括网络通信模块,通过该网络通信模块接收到通知消息时,处理器114根据该通知消息生成显示信号,并通过第一通信模块113将显示信号发送至第二通信模块123。
可选地,该无线充电设备110中还包括存储器,该无线充电设备110中安装有操作系统以及应用程序,通过第一通信模块113和第二通信模块123之间的通信在显示屏125中显示该操作系统以及应用程序对应的显示界面。
值得注意的是,上述无线充电模块111和无线受电模块121之间的供电过程或无线充电过程,与上述第一通信模块113和第二通信模块123之间的通信过程是相对独立进行的。
综上所述,通过在无线充电设备中设置无线充电模块,在无线受电设备中设置无线受电模块,且无线充电模块通过射频发射天线向无线受电模块进行供电,实现无线充电设备和无线受电设备之间的远距离无线充电,从而将无线受电设备的第一功能模块设置在无线充电设备中,并通过通信模块实现第一功能模块与第二功能模块之间的交互,提高了无线受电设备在使用过程中的灵活度。
可选地,上述第一通信模块113和第二通信模块123之间可以通过超宽带无载波通信(Ultra Wideband,UWB)方式进行通信;可选地,该第一通信模块113和第二通信模块123之间还可以通过无线网络或进行通信,本公开实施例对此不加以限定。
可选地,请参考图6,上述第一功能模块112包括传感器单元610、图像采集单元620、扬声器单元630以及音频采集单元640中的至少一种;其中,当第一功能模块112中包括该传感器单元610时,该传感器单元包括重力传感器611、温度传感器612、光线传感器613、距离传感器614以及加速度传感器615中的至少一种。
值得注意的是,上述第一功能模块112中包括的功能单元仅为示意 性的举例,该第一功能模块112中还可以包括其他功能单元,可选地,终端中的功能单元都可以实现在上述第一功能模块112中,本公开实施例对此不加以限定。
可选地,当第一功能模块112中包括图像采集单元620时,该图像采集单元620用于对图像进行采集,并将采集得到的目标图像发送至处理器114;处理器114用于根据目标图像生成对应的显示信号,并通过第一通信模块113将显示信号发送至第二通信模块123,显示屏125用于根据第二通信模块123接收到的该显示信号显示目标图像。
示意性的,图7是本公开一个示例性实施例提供的图像采集方法的流程图,以该方法应用于如图1所示的无线充电系统,且第一功能模块112中包括图像采集单元620为例进行说明,该方法包括:
步骤701,在无线受电设备的显示屏中显示功能选择界面。
可选地,无线充电设备中还包括存储器,该存储器中安装有操作系统,且安装有应用程序。可选地,该功能选择界面可以是操作系统提供的显示界面,也可以是应用程序提供的显示界面。可选地,该应用程序包括即时通讯应用程序、金融应用程序、多媒体应用程序、游戏应用程序中的至少一种。示意性的,该功能选择界面为即时通讯应用程序提供的显示界面,该功能选择界面中包括拍摄功能对应的拍摄控件。
步骤702,接收在显示屏上的触摸信号。
可选地,该触摸信号为作用在该拍摄控件上的触摸操作对应的信号。可选地,该触摸信号中包括该触摸操作对应该显示屏的触摸坐标。
步骤703,显示屏将触摸信号通过第二通信模块发送至无线充电设备的第一通信模块。
可选地,该第二通信模块将触摸信号通过UWB通信方式发送至第一通信模块。
步骤704,第一通信模块将触摸信号发送至处理器。
步骤705,处理器确定该触摸信号对应的控件为拍摄控件,并生成拍摄触发信号。
可选地,处理器根据触摸信号对应的触摸坐标,以及当前显示屏中显示的界面内容,确定该触摸信号所对应的控件为拍摄控件。
步骤706,处理器将拍摄触发信号发送至图像采集单元。
可选地,处理器根据该触摸信号确定该触摸信号对应的控件为拍摄控件后,确定与该拍摄控件对应的第一功能模块为图像采集单元,并将拍摄触发信号发送至该图像采集单元。
步骤707,图像采集单元根据拍摄触发信号进行图像采集,得到目标图像。
可选地,该目标图像可以是一张图像,也可以是多张图像组成的一段视频流。
步骤708,图像采集单元将目标图像发送至处理器。
可选地,处理器根据目标图像以及显示屏中需要显示的其他内容进行组合,确定该目标图像在显示屏中的显示方式。可选地,该处理器包括中央处理器(Central Processing Unit,CPU)和图形处理器(Graphics Processing Unit,GPU),其中,CPU对显示屏的显示内容进行计算,GPU对显示屏的显示内容进行渲染。
步骤709,处理器根据目标图像生成显示信号。
可选地,该显示信号中包括显示屏的显示内容转换得到的信号。
步骤710,处理器将显示信号通过第一通信模块发送至第二通信模块。
步骤711,第二通信模块将显示信号发送至显示屏。
步骤712,显示屏根据显示信号显示图像采集单元采集得到的目标图像。
可选地,显示屏的显示内容中包括该目标图像,可选地,该显示屏的显示内容中还包括其他内容,如:拍摄参数、拍摄设置栏等。
值得注意的是,图7所示的图像采集方法仅以第一功能模块112中包括图像采集单元620为例进行说明,当第一功能模块112中包括其他功能单元时,上述图像采集单元620也可以实现为其他功能单元,且该图像采集单元620实现的功能根据第一功能模块112中的实际功能单元 进行对应改变。
可选地,上述图像采集单元620可以实现为一个摄像头,也可以实现为多个摄像头构成的摄像头模组。
在一个可选的实施例中,如图8所示,上述无线充电模块111中还包括第一蓝牙单元811、生物识别单元812、充电管理单元813、波束形成管理单元814以功率放大器815;上述无线受电模块121中还包括第二蓝牙单元821、受电管理单元822。
其中,生物识别单元812用于对无线充电设备110与生物体之间的距离进行确定。可选地,生物识别单元812通过对周侧温度进行检测确定无线充电设备110与生物体(如:人体)之间的距离,或,生物识别单元812通过脉搏检测确定无线充电设备与生物体之间的距离。
可选地,生物识别单元812将识别结果发送至第一蓝牙单元811。可选地,第一蓝牙单元811和第二蓝牙单元821之间通过低功耗蓝牙(Bluetooth Low Energy,BLE)技术进行通信,可选地,根据该第一蓝牙单元811和第二蓝牙单元821确定该无线充电设备110和无线受电设备120之间的距离,以及确定无线受电设备120和生物体之间的距离,从而确定该无线充电模块111向无线受电模块121进行供电的供电功率,将该供电功率设置在无线充电模块111向无线受电模块121的供电效率较高,且供电功率对生物体产生的影响(如:辐射)最低的状态下。
可选地,充电管理单元813用于根据第一蓝牙单元811对距离的识别结果对供电功率进行控制,波束形成管理单元814用于对射频信号进行带宽调整,功率放大器815用于对射频信号进行功率放大处理。
可选地,上述受电管理单元822用于对射频接收天线接收124的射频信号进行管理。
可选地,该无线受电模块121中还包括充电器管理单元823和电池824。其中,充电器管理单元823用于电池824的充电过程进行管理,无线宠溺地那模块111还用于通过射频发射天线115向无线受电设备120的电池824进行无线充电,无线受电模块121用于通过射频接收天线124 接收无线充电设备110对电池824的无线充电,并通过电池824向无线受电设备120的运行进行供电。
相关技术中,手机、平板电脑等移动终端中配置有显示屏910、音频输入单元920、音频输出单元930、电源管理单元940、图像采集单元950等多种功能单元,该终端中还包括处理器960,而上述功能单元都集成在移动终端中,增加了移动终端中的负载,如图9所示,该终端900为一个整体的移动设备,上述功能单元都集成在该终端900中。
而本公开实施例中,上述无线充电设备110可以实现为第一可穿戴式设备,无线受电设备120可以实现为手持式设备或第二可穿戴式设备。
示意性的,当无线充电设备110实现为第一可穿戴式设备,无线受电设备120实现为第二可穿戴式设备时,该无线充电设备110的穿戴方式包括环绕手腕进行穿戴的方式,无线受电设备120的穿戴方式包括以智能眼镜的形式进行佩戴的方式。
示意性的,请参考图10,用户手腕处佩戴有无线充电设备1010,该无线充电设备1010以智能手表的形式佩戴在该用户的手腕处,用户面部佩戴有无线受电设备1020,该无线受电设备1020以智能眼镜的形式佩戴在用户眼镜正前方。可选地,该无线充电设备1010和无线受电设备1020之间通过RF技术进行无线供电或无线充电,且该无线充电设备1010和无线受电设备1020之间通过UWB技术进行通信,从而该无线受电设备1020根据无线充电设备1010中处理器发送的显示内容通过镜片进行显示。
综上所述,本公开提供的无线充电系统,通过在无线充电设备中设置无线充电模块,在无线受电设备中设置无线受电模块,且无线充电模块通过射频发射天线向无线受电模块进行供电,实现无线充电设备和无线受电设备之间的远距离无线充电,从而将无线受电设备的第一功能模块设置在无线充电设备中,并通过通信模块实现第一功能模块与第二功能模块之间的交互,提高了无线受电设备在使用过程中的灵活度。
本公开提供的无线充电系统,设计灵活,根据人工智能领域的发展,满足终端与人工智能领域之间的衔接,且在特定领域能够满足用户的需求,如:极致性能体验的游戏手机、终端续航时长更长、终端充电速度更快等,且无线充电设备和无线受电设备便于携带,灵活使用,提升用户显示与触控交互体验。
值得注意的是,上述实施例中,以无线充电设备110和无线受电设备120实现为一个无线充电系统为例进行说明的,实际操作中,该无线充电系统中的无线充电设备110和无线受电设备120还可以实现为两个单独的移动终端。
应当理解的是,在本文中提及的“多个”是指两个或两个以上。“和/或”,描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。字符“/”一般表示前后关联对象是一种“或”的关系。
上述本公开实施例序号仅仅为了描述,不代表实施例的优劣。
本领域普通技术人员可以理解实现上述实施例的全部或部分步骤可以通过硬件来完成,也可以通过程序来指令相关的硬件完成,所述的程序可以存储于一种计算机可读存储介质中,上述提到的存储介质可以是只读存储器,磁盘或光盘等。
以上所述仅为本公开的较佳实施例,并不用以限制本公开,凡在本公开的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本公开的保护范围之内。

Claims (28)

  1. 一种无线充电系统,其特征在于,所述系统包括:无线充电设备、无线受电设备;
    所述无线充电设备中包括无线充电模块、第一功能模块以及第一通信模块,所述无线充电模块中包括射频发射天线;
    所述无线受电设备中包括无线受电模块、第二功能模块以及第二通信模块,所述无线受电模块中包括射频接收天线;
    所述无线充电模块用于通过所述射频发射天线向所述无线受电设备进行供电,所述无线受电模块用于通过所述射频接收天线接收所述无线充电设备的所述供电;
    所述第一功能模块用于实现功能集合中的第一功能子集合,所述第二功能模块用于实现所述功能集合中的第二功能子集合;
    所述第一功能模块和所述第二功能模块之间通过所述第一通信模块和所述第二通信模块进行通信。
  2. 根据权利要求1所述的系统,其特征在于,所述功能集合中包括:传感器功能、显示功能、图像采集功能、音频播放功能、音频采集功能、电话通信功能、网络功能中的至少一种。
  3. 根据权利要求2所述的系统,其特征在于,所述无线充电设备中还包括处理器;
    所述第一功能模块用于接收所述处理器发送的触发信号,并完成所述触发信号对应的操作。
  4. 根据权利要求3所述的系统,其特征在于,所述第二功能模块中包括显示屏,所述显示屏用于实现所述显示功能;
    所述处理器用于通过所述第一通信模块向所述第二通信模块发送显示信号,所述显示屏用于根据所述第二通信模块接收的所述显示信号显 示对应的内容。
  5. 根据权利要求4所述的系统,其特征在于,所述显示屏为包括触控功能的触摸显示屏;
    所述显示屏还用于接收触摸信号;
    所述显示屏还用于通过所述第二通信模块将所述触摸信号发送至所述第一通信模块;
    所述处理器用于根据所述第一通信模块接收到的所述触摸信号生成所述触发信号,并将所述触发信号发送至所述第一功能模块。
  6. 根据权利要求4所述的系统,其特征在于,
    所述第一功能模块用于接收所述触发信号,完成所述触发信号对应的操作后,生成操作结果并发送至所述处理器;
    所述处理器用于根据所述操作结果生成所述显示信号,并通过所述第一通信模块将所述显示信号发送至所述第二通信模块。
  7. 根据权利要求3至6任一所述的系统,其特征在于,所述第一功能模块包括传感器单元、图像采集单元、扬声器单元、音频采集单元、网络通信单元中的至少一种;
    其中,所述传感器单元用于实现所述传感器功能;所述图像采集单元用于实现所述图像采集功能;所述扬声器单元用于实现所述音频播放功能;所述音频采集单元用于实现所述音频采集功能;所述网络通信单元用于实现所述网络功能。
  8. 根据权利要求7所述的系统,其特征在于,
    当所述第一功能模块中包括所述传感器单元时,所述传感器单元包括重力传感器、温度传感器、光线传感器、距离传感器、加速度传感器中的至少一种。
  9. 根据权利要求7所述的系统,其特征在于,
    当所述第一功能模块中包括所述图像采集单元时,所述图像采集单元用于对图像进行采集,并将采集得到的目标图像发送至所述处理器;
    所述处理器用于根据所述目标图像生成对应的显示信号,并通过所述第一通信模块将所述显示信号发送至所述第二通信模块;
    所述显示屏用于根据所述第二通信模块接收到的所述显示信号显示所述目标图像。
  10. 根据权利要求1至6任一所述的系统,其特征在于,所述第一通信模块和所述第二通信模块之间通过超宽带无载波通信方式进行通信。
  11. 根据权利要求1至6任一所述的系统,其特征在于,所述无线受电模块中还包括电池;
    所述无线充电模块还用于通过所述射频发射天线向所述无线受电设备的所述电池进行无线充电;
    所述无线受电模块用于通过所述射频接收天线接收所述无线充电设备对所述电池的所述无线充电,并通过所述电池向所述无线受电设备进行供电。
  12. 根据权利要求1至6任一所述的系统,其特征在于,所述无线充电设备实现为第一可穿戴式设备;
    所述无线受电设备实现为手持式设备,或,所述无线受电设备实现为第二可穿戴式设备。
  13. 根据权利要求12所述的系统,其特征在于,
    当所述无线充电设备实现为所述第一可穿戴式设备,且所述无线受电设备实现为所述第二可穿戴式设备时,所述无线充电设备的穿戴方式包括环绕手腕进行穿戴的方式,所述无线受电设备的穿戴方式包括以智 能眼镜的形式进行佩戴的方式。
  14. 一种无线充电设备,其特征在于,所述无线充电设备中包括无线充电模块、第一功能模块以及第一通信模块,所述无线充电模块中包括射频发射天线;
    所述无线充电模块用于通过所述射频发射天线向无线受电设备进行供电;
    所述第一功能模块用于实现功能集合中的第一功能子集合;
    所述第一功能模块用于通过所述第一通信模块与所述无线受电设备中的第二通信模块进行通信。
  15. 根据权利要求14所述的设备,其特征在于,所述功能集合中包括:
    传感器功能、显示功能、图像采集功能、音频播放功能、音频采集功能、电话通信功能、网络功能中的至少一种。
  16. 根据权利要求15所述的设备,其特征在于,所述无线充电设备中还包括处理器;
    所述第一功能模块用于接收所述处理器发送的触发信号,并完成所述触发信号对应的操作。
  17. 根据权利要求16所述的设备,其特征在于,
    所述第一功能模块还用于接收所述触发信号,完成所述触发信号对应的操作后,生成操作结果并发送至所述处理器;
    所述处理器用于根据所述操作结果生成所述显示信号,并通过所述第一通信模块将所述显示信号发送至所述无线受电设备。
  18. 根据权利要求16或17所述的设备,其特征在于,所述第一功能模块包括传感器单元、图像采集单元、扬声器单元、音频采集单元、 网络通信单元中的至少一种;
    其中,所述传感器单元用于实现所述传感器功能;所述图像采集单元用于实现所述图像采集功能;所述扬声器单元用于实现所述音频播放功能;所述音频采集单元用于实现所述音频采集功能;所述网络通信单元用于实现所述网络功能。
  19. 根据权利要求18所述的设备,其特征在于,
    当所述第一功能模块中包括所述图像采集单元时,所述图像采集单元用于对图像进行采集,并将采集得到的目标图像发送至所述处理器;
    所述处理器用于根据所述目标图像生成对应的显示信号,并通过所述第一通信模块将所述显示信号发送至所述无线受电设备,所述显示信号用于控制所述无线受电设备的显示屏显示所述目标图像。
  20. 根据权利要求14至17任一所述的设备,其特征在于,所述第一通信模块通过超宽带无载波通信方式与所述无线受电设备中的所述第二通信模块进行通信。
  21. 根据权利要求14至17任一所述的设备,其特征在于,所述无线充电设备实现为可穿戴式设备,所述无线充电设备的穿戴方式包括环绕手腕进行穿戴的方式。
  22. 一种无线受电设备,其特征在于,所述无线受电设备中包括无线受电模块、第二功能模块以及第二通信模块,所述无线受电模块中包括射频接收天线;
    所述无线受电模块用于通过所述射频接收天线接收无线充电设备的供电;
    所述第二功能模块用于实现功能集合中的第二功能子集合;
    所述第二功能模块用于通过所述第二通信模块与所述无线充电设备中的第一通信模块进行通信。
  23. 根据权利要求22所述的设备,其特征在于,所述功能集合中包括:
    传感器功能、显示功能、图像采集功能、音频播放功能、音频采集功能、电话通信功能、网络功能中的至少一种。
  24. 根据权利要求22所述的设备,其特征在于,所述第二功能模块中包括显示屏,所述显示屏用于实现所述显示功能;
    所述显示屏用于根据所述第二通信模块接收的所述显示信号显示对应的内容。
  25. 根据权利要求24所述的设备,其特征在于,所述显示屏为包括触控功能的触摸显示屏;
    所述显示屏还用于接收触摸信号;
    所述显示屏还用于通过所述第二通信模块将所述触摸信号发送至所述第一通信模块;
    所述无线充电设备用于根据所述第一通信模块接收到的所述触摸信号生成所述触发信号,并将所述触发信号发送至所述第一功能模块。
  26. 根据权利要求22至25任一所述的设备,其特征在于,所述第二通信模块通过超宽带无载波通信方式与所述无线充电设备进行通信。
  27. 根据权利要求22至25任一所述的设备,其特征在于,所述无线受电模块中还包括电池;
    所述无线受电模块还用于通过所述射频接收天线接收所述无线充电设备对所述电池的无线充电,并通过所述电池向所述无线受电设备进行供电。
  28. 根据权利要求22至25任一所述的设备,其特征在于,所述无 线受电设备实现为手持式设备,或,所述无线受电设备实现为可穿戴式设备;
    当所述无线受电设备实现为所述可穿戴式设备时,所述无线受电设备的穿戴方式包括以智能眼镜的形式进行佩戴的方式。
PCT/CN2019/098664 2019-04-22 2019-07-31 无线充电系统、无线充电设备及无线受电设备 WO2020215520A1 (zh)

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