WO2018187940A1 - 消息获取方法和装置 - Google Patents

消息获取方法和装置 Download PDF

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Publication number
WO2018187940A1
WO2018187940A1 PCT/CN2017/080105 CN2017080105W WO2018187940A1 WO 2018187940 A1 WO2018187940 A1 WO 2018187940A1 CN 2017080105 W CN2017080105 W CN 2017080105W WO 2018187940 A1 WO2018187940 A1 WO 2018187940A1
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WO
WIPO (PCT)
Prior art keywords
wearable device
terminal
text message
audio channel
message
Prior art date
Application number
PCT/CN2017/080105
Other languages
English (en)
French (fr)
Inventor
王敏
陈风
王书峰
徐永攀
Original Assignee
华为技术有限公司
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 华为技术有限公司 filed Critical 华为技术有限公司
Priority to US16/604,406 priority Critical patent/US10897531B2/en
Priority to EP17905649.4A priority patent/EP3598727B1/en
Priority to PCT/CN2017/080105 priority patent/WO2018187940A1/zh
Priority to CN201780088941.7A priority patent/CN110476404B/zh
Publication of WO2018187940A1 publication Critical patent/WO2018187940A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • H04M1/7243User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality with interactive means for internal management of messages
    • H04M1/72433User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality with interactive means for internal management of messages for voice messaging, e.g. dictaphones
    • 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
    • G06F3/16Sound input; Sound output
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • H04B1/3827Portable transceivers
    • H04B1/385Transceivers carried on the body, e.g. in helmets
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/04Supports for telephone transmitters or receivers
    • H04M1/05Supports for telephone transmitters or receivers specially adapted for use on head, throat or breast
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/60Substation equipment, e.g. for use by subscribers including speech amplifiers
    • H04M1/6033Substation equipment, e.g. for use by subscribers including speech amplifiers for providing handsfree use or a loudspeaker mode in telephone sets
    • H04M1/6041Portable telephones adapted for handsfree use
    • H04M1/6058Portable telephones adapted for handsfree use involving the use of a headset accessory device connected to the portable telephone
    • H04M1/6066Portable telephones adapted for handsfree use involving the use of a headset accessory device connected to the portable telephone including a wireless connection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • H04M1/72409User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality by interfacing with external accessories
    • H04M1/72412User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality by interfacing with external accessories using two-way short-range wireless interfaces
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • H04M1/7243User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality with interactive means for internal management of messages
    • H04M1/72436User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality with interactive means for internal management of messages for text messaging, e.g. short messaging services [SMS] or e-mails
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • H04B1/3827Portable transceivers
    • H04B1/385Transceivers carried on the body, e.g. in helmets
    • H04B2001/3861Transceivers carried on the body, e.g. in helmets carried in a hand or on fingers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • H04B1/3827Portable transceivers
    • H04B1/385Transceivers carried on the body, e.g. in helmets
    • H04B2001/3866Transceivers carried on the body, e.g. in helmets carried on the head
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/12Details of telephonic subscriber devices including a sensor for measuring a physical value, e.g. temperature or motion

Definitions

  • the present application relates to the field of communications technologies, and in particular, to a message acquiring method and apparatus for a terminal.
  • the wearable device needs to be light and compact, the display screen of the wearable device is small, and the display capability per screen is limited, which is inconvenient for displaying and reading text messages.
  • the user cannot browse the contents of the text message of the smartphone or the wearable device in time. Therefore, there is a need for a method that overcomes the insufficient display capability of a wearable device and can timely view text messages.
  • the present application describes a message acquisition method and apparatus for solving the above problems existing in the prior art.
  • a message obtaining method comprising: determining, by the wearable device, whether the wearable device is in a headset mode; when in the headset mode, the wearable device notifying the terminal that the wearable device is capable Receiving a voice message; the wearable device receives a voice message sent by the terminal, and the voice message is converted by the terminal from a text message.
  • the wearable device can overcome the shortage of the screen display capability, and facilitate the user to timely check the content of the text message.
  • the determining whether the wearable device is in the headset mode comprises: determining, by the Hall sensor, whether the wearable device is in the headset mode. Thereby, the wearing state of the wearable device can be detected.
  • the method further includes: the wearable device sends a request to establish an audio channel to the terminal; and the wearable device receives a response sent by the terminal to establish an audio channel response .
  • the wearable device can establish an audio channel with the terminal and receive the voice information sent by the terminal through the audio channel.
  • the method further includes: the wearable device sends a request to establish an audio channel to the terminal; and the wearable device receives a response sent by the terminal to establish an audio channel response The wearable device sends a text message index to the terminal. Thereby, the wearable device can establish an audio channel with the terminal and receive the voice information corresponding to the text message index through the audio channel.
  • the text message is a text message corresponding to the text message index.
  • the wearable device can check the text message received by the terminal through the text message index when switching from the non-headphone mode to the earphone mode.
  • the text message comprises a text message received or pre-stored by the terminal.
  • the terminal can convert the received or pre-stored text message into a voice message.
  • the method further comprises: the wearable device receiving an index of a text message sent by the terminal, the text message index being created by the terminal according to a text message.
  • the wearable device can store the text message index in the non-headphone mode, and When the headset mode is obtained, the voice message corresponding to the text message index is obtained.
  • the audio channel comprises an Advanced Audio Distribution Protocol A2DP audio channel.
  • Wearable devices can receive high quality voice messages over the A2DP audio channel.
  • a second aspect provides a message acquiring method, the method comprising: receiving, by the terminal, a notification that the wearable device is capable of receiving a voice message, and the terminal converting the text message into a voice message; The terminal sends the voice message to the wearable device.
  • the wearable device can overcome the insufficiency of the screen display capability, and facilitate the user to timely check the content of the text message.
  • the notification that the wearable device is capable of receiving a voice message is sent when the wearable device determines that the wearable device is in a headset mode.
  • the terminal can acquire that the wearable device is in the state of wearing the earphone.
  • the method further includes: the terminal receiving a request for establishing an audio channel sent by the wearable device; and sending, by the terminal, a response confirming establishment of an audio channel to the wearable device.
  • the terminal can establish an audio channel with the wearable device and send voice information to the wearable device through the audio channel.
  • the method further includes: the terminal receiving a request for establishing an audio channel sent by the wearable device; and sending, by the terminal, a response confirming establishment of an audio channel to the wearable
  • the device receives an index of a text message sent by the wearable device.
  • the terminal can establish an audio channel with the wearable device, convert the corresponding text message into a voice message according to the text message index, and send the voice information to the wearable device through the audio channel.
  • the text message is a text message corresponding to the text message index.
  • the wearable device can check the text message received by the terminal through the text message index when switching from the non-headphone mode to the earphone mode.
  • the text message comprises a text message received or pre-stored by the terminal.
  • the terminal can convert the received or pre-stored text message into a voice message.
  • the method further comprises: the terminal transmitting a text message index to the wearable device, the text message index being created by the terminal according to the text message.
  • the terminal may store the text message when the wearable device is in the non-headphone mode, and send the voice message corresponding to the text message index to the wearable device when the wearable device is switched to the headset mode .
  • the audio channel comprises an Advanced Audio Distribution Protocol A2DP audio channel.
  • Wearable devices can receive high quality voice messages over the A2DP audio channel.
  • a wearable device in a third aspect, includes: a determining module, configured to determine whether the wearable device is in a headset mode, and a notification module, when in a headset mode, the wearable device Notifying the terminal that the wearable device is capable of receiving a voice message; and the receiving module is configured to receive a voice message sent by the terminal, where the voice message is converted by the terminal from a text message.
  • the wearable device can overcome the shortage of the screen display capability, and facilitate the user to timely check the content of the text message.
  • the determining module is configured to determine, by the Hall sensor, whether the wearable device is in a headphone mode. Thereby, the wearing state of the wearable device can be detected.
  • the wearable device further includes: a sending module, configured to The terminal sends a request for establishing an audio channel, and the receiving module is further configured to receive a response sent by the terminal to confirm establishment of an audio channel.
  • the wearable device can establish an audio channel with the terminal and receive the voice information sent by the terminal through the audio channel.
  • the wearable device further includes: a sending module, configured to send a request for establishing an audio channel and a text message index to the terminal; the receiving module is further configured to receive, send, by the terminal, The confirmation establishes the response of the audio channel.
  • the wearable device can establish an audio channel with the terminal and receive the voice information corresponding to the text message index through the audio channel.
  • the text message is a text message corresponding to the text message index.
  • the wearable device can check the text message received by the terminal through the text message index when switching from the non-headphone mode to the earphone mode.
  • the text message comprises a text message received or pre-stored by the terminal.
  • the terminal can convert the received or pre-stored text message into a voice message.
  • the wearable device can store the text message index in the non-headphone mode, and obtain the voice message corresponding to the text message index when the mode is changed to the headphone mode.
  • the wearable device further includes: the receiving module, configured to receive an index of a text message sent by the terminal, where the text message index is determined by the terminal according to a text message Created.
  • the audio channel comprises an Advanced Audio Distribution Protocol A2DP audio channel.
  • Wearable devices can receive high quality voice messages over the A2DP audio channel.
  • the fourth aspect provides a terminal, where the terminal includes: a receiving module, configured to receive, by the wearable device, a notification that the wearable device can receive a voice message; and a conversion module, configured to convert the text message into a voice message; And a sending module, configured to send the voice message to the wearable device.
  • the terminal includes: a receiving module, configured to receive, by the wearable device, a notification that the wearable device can receive a voice message; and a conversion module, configured to convert the text message into a voice message; And a sending module, configured to send the voice message to the wearable device.
  • the notification that the wearable device is capable of receiving a voice message is sent when the wearable device determines that the wearable device is in a headset mode.
  • the terminal can acquire that the wearable device is in the state of wearing the earphone.
  • the terminal further includes: the receiving module, configured to receive a request for establishing an audio channel sent by the wearable device; and the sending module is further configured to establish an acknowledgement A response of the audio channel is sent to the wearable device.
  • the terminal can establish an audio channel with the wearable device and send voice information to the wearable device through the audio channel.
  • the terminal further includes: the receiving module, configured to receive a request for establishing an audio channel and a text message index sent by the wearable device; A response confirming the establishment of the audio channel is sent to the wearable device.
  • the terminal can establish an audio channel with the wearable device, convert the corresponding text message into a voice message according to the text message index, and send the voice information to the wearable device through the audio channel.
  • the text message is a text message corresponding to the text message index.
  • the wearable device can check the text message received by the terminal through the text message index when switching from the non-headphone mode to the earphone mode.
  • the text message includes the terminal receiving or pre-storing Text message.
  • the terminal can convert the received or pre-stored text message into a voice message.
  • the terminal further includes: the sending module, configured to send a text message index to the wearable device, where the text message index is determined by the terminal according to the text The message was created.
  • the terminal may store the text message when the wearable device is in the non-headphone mode, and send the voice message corresponding to the text message index to the wearable device when the wearable device is switched to the headset mode .
  • the audio channel comprises an Advanced Audio Distribution Protocol A2DP audio channel.
  • Wearable devices can receive high quality voice messages over the A2DP audio channel.
  • a wearable device comprising one or more processors, a memory, a transmitter, a receiver, and one or more programs, the one or more programs being stored in a memory and It is configured to be executed by one or more processors, the one or more programs comprising instructions for performing the method of the first aspect.
  • a terminal comprising one or more processors, a memory, a transmitter, a receiver, and one or more programs, the one or more programs being stored in a memory and configured To be executed by one or more processors, the one or more programs include instructions for performing the method of the second aspect.
  • a computer program product comprising instructions for causing a computer to perform the method of the first aspect or the second aspect when the instructions are run on a computer.
  • a computer readable storage medium having stored therein instructions that, when executed on a computer, cause the computer to perform the method of the first aspect or the second aspect.
  • FIG. 1 is a schematic structural diagram of a first terminal according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of an application scenario according to an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of communication of a first message acquiring method according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of an embodiment of a wearable device detecting a wear state according to an embodiment of the present invention
  • FIG. 5 is a schematic diagram of communication of a second message acquiring method according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of communication of a third message acquiring method according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a first wearable device according to an embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of a second terminal according to an embodiment of the present invention.
  • FIG. 9 is a schematic structural diagram of a second wearable device according to an embodiment of the present invention.
  • FIG. 10 is a schematic structural diagram of a third terminal according to an embodiment of the present invention.
  • the message acquiring method and device of the embodiment of the present invention can be applied to any terminal having a screen and multiple applications.
  • the device may be hardware with processing capability installed in the terminal, software or a combination of software and hardware, wherein the terminal may be a mobile phone or a mobile phone, a tablet (Tablet Personal Computer, TPC), a knee Laptop Computer, Digital Camera, Digital Camera, Projection Device, Wearable Device, Personal Digital Assistant (PDA), e-book reader, virtual reality
  • a terminal such as a smart device, a digital broadcast terminal, a messaging device, a game console, a medical device, a fitness device, or a scanner, and the terminal can be connected to a 2G, 3G, 4G, 5G, or wireless locale access network (WLAN).
  • the network establishes communication.
  • the embodiment of the present invention is not further limited.
  • the mobile terminal is taken as an example for description.
  • FIG. 1 is a schematic structural diagram of a mobile phone 100. Each component is specifically described.
  • the mobile phone 100 includes a radio frequency (RF) circuit 110, a Bluetooth module 116, a memory 120, an input device 130, a display screen 140, a sensor 150, an audio circuit 160, and an input/output (I/O) subsystem 170. , processor 180, and power supply 190 and other components.
  • RF radio frequency
  • I/O input/output subsystem 170
  • processor 180 and power supply 190 and other components.
  • FIG. 1 is only an example of implementation, and does not constitute a limitation on a mobile phone, and may include more or less components than those illustrated, or combine some components, or Different parts are arranged.
  • the RF circuit 110 can be used for transmitting and receiving information or during a call, and receiving and transmitting the signal. Specifically, after receiving the downlink information of the base station, the processor 180 processes the data. In addition, the uplink data is designed to be sent to the base station.
  • RF circuits include, but are not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a Low Noise Amplifier (LNA), a duplexer, and the like.
  • LNA Low Noise Amplifier
  • RF circuitry 110 can also communicate with the network and other devices via wireless communication.
  • the wireless communication may use any communication standard or protocol, including but not limited to Global System of Mobile communication (GSM), General Packet Radio Service (GPRS), Code Division Multiple Access (Code). Division Multiple Access (CDMA), Wideband Code Division Multiple Access (WCDMA), Long Term Evolution (LTE), E-mail, Short Messaging Service (SMS), etc.
  • GSM Global System of Mobile communication
  • GPRS General Packet
  • the Bluetooth module 116 can be used for short-range wireless data transmission and voice transmission.
  • the Bluetooth module 116 can receive control commands or messages sent by other devices through the data channel, and the sending processor 180 processes the control commands or messages to other devices.
  • the handset 100 can receive or transmit audio, such as a voice call or listening to music.
  • the memory 120 can be used to store software programs and modules, and the processor 180 executes various functional applications and data processing of the mobile phone 100 by running software programs and modules stored in the memory 120.
  • the memory 120 may include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application required for at least one function (such as a sound playing function, an image playing function, etc.), and the like; the storage data area may be stored according to the mobile phone.
  • the data created by the use of 100 (such as audio data, video data, phone book, etc.).
  • the memory 120 may include volatile memory, such as non-volatile volatile random access memory (NVRAM), phase change random access memory (PRAM), magnetoresistive random access memory.
  • NVRAM non-volatile volatile random access memory
  • PRAM phase change random access memory
  • magnetoresistive random access memory magnetoresistive random access memory
  • MRAM Magnetoresistive RAM
  • MRAM may also include non-volatile memory, such as at least one magnetic disk storage device, electrically erasable programmable read-only memory (EEPROM), flash memory device, such as anti- Or flash memory (NOR flash memory) or NAND flash memory, semiconductor devices, such as Solid State Disk (SSD).
  • EEPROM electrically erasable programmable read-only memory
  • flash memory device such as anti- Or flash memory (NOR flash memory) or NAND flash memory
  • SSD Solid State Disk
  • Input device 130 can be used to receive input numeric or character information, as well as generate key signal inputs related to user settings and function controls of handset 100.
  • the input device 130 may include a touch panel 131 and other input devices 132.
  • the touch panel 131 also referred to as a touch screen, can collect touch operations on or near the user (such as a user using a finger, a stylus, or the like on the touch panel 131 or near the touch panel 131. Operation) and drive the corresponding connecting device according to a preset program.
  • the touch panel 131 may include two parts: a touch detection device and a touch controller.
  • the touch detection device detects the touch orientation of the user, and detects a signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts the touch information into contact coordinates, and sends the touch information.
  • the processor 180 is provided and can receive commands from the processor 180 and execute them.
  • the touch panel 131 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
  • the input device 130 can also include other input devices 132.
  • other input devices 132 may include, but are not limited to, one or more of a physical keyboard, function keys (such as volume control buttons, switch buttons, etc.), trackballs, mice, joysticks, and the like.
  • Display 140 can be used to display information entered by the user or information provided to the user as well as various interfaces of handset 100.
  • the display panel 140 may include a display panel 141.
  • the display panel 141 may be configured in the form of a liquid crystal display (LCD), an organic light-emitting diode (OLED), or the like.
  • the touch panel 131 can cover the display panel 141. When the touch panel 131 detects a touch operation on or near the touch panel 131, the touch panel 131 transmits to the processor 180 to determine the type of the touch event, and then the processor 180 according to the touch event. The type provides a corresponding visual output on display panel 141.
  • the touch panel 131 and the display panel 141 are two independent components to implement the input and input functions of the mobile phone 100 in FIG. 1, in some embodiments, the touch panel 131 may be integrated with the display panel 141.
  • the input and output functions of the mobile phone 100 are implemented.
  • the display screen 140 can be used to display content, including a user interface, such as a boot interface of a mobile phone, a user interface of an application.
  • the content may include information and data in addition to the user interface.
  • Display 140 can be a built-in screen of a mobile phone or other external display device.
  • Sensor 150 includes at least one light sensor, motion sensor, position sensor, and other sensors.
  • the light sensor may include an ambient light sensor that can acquire brightness of ambient light, and a proximity sensor that can turn off the display panel 141 and/or the backlight when the mobile phone 100 moves to the ear.
  • the motion sensor may include an acceleration sensor that can detect the magnitude of acceleration in each direction (generally three axes), and can detect the magnitude and direction of gravity when stationary, and can be used to identify the gesture of the mobile phone (such as horizontal and vertical screen switching, related games, magnetic force). (posture calibration), vibration recognition related functions (such as pedometer, tapping).
  • the position sensor may include a Global Positioning System (GPS), a Beidou system (COMPASS), a GLONASS system (GLONASS), and a Galileo system (GALILEO) for acquiring the geographic location coordinates of the mobile phone.
  • GPS Global Positioning System
  • COMPASS Beidou system
  • GLONASS GLONASS
  • GALILEO Galileo system
  • the location sensor can also be located through a base station of a mobile operation network, a local area network such as Wi-Fi or Bluetooth, or a combination of the above-mentioned positioning methods, thereby obtaining more accurate mobile phone location information.
  • the mobile phone 100 can also be configured with other sensors such as a gyroscope, a barometer, a hygrometer, a thermometer, and an infrared sensor, and will not be described herein.
  • An audio circuit 160, a speaker 161, and a microphone 162 can provide an audio interface between the user and the handset 100.
  • the audio circuit 160 can transmit the converted electrical data of the received audio data to the speaker 161 for conversion to the sound signal output by the speaker 161; on the other hand, the microphone 162 converts the collected sound signal into an electrical signal by the audio circuit 160. After receiving, it is converted into audio data, and then processed by the audio data output processor 180, sent to the mobile phone 110 via the RF circuit 110, or output the audio data to the memory 120 for further processing.
  • Reason the audio data output processor 180
  • the I/O subsystem 170 can be used to input or output various information or data of the system.
  • the I/O subsystem 170 includes an input device controller 171, a sensor controller 172, and a display controller 173.
  • the I/O subsystem 170 receives various data transmitted from the input unit 130, the sensor 150, and the display screen 140 through the above-described controller, and controls the above components by transmitting control commands.
  • the processor 180 is the control center of the handset 100, connecting various portions of the entire handset with various interfaces and lines, by running or executing software programs and/or modules stored in the memory 120, and recalling data stored in the memory 120, The various functions and processing data of the mobile phone 100 are executed to perform overall monitoring of the mobile phone.
  • the processor 180 can be a central processing unit (CPU), a general-purpose processor, a digital signal processor (DSP), an application specific integrated circuit (ASIC), and a field programmable gate array ( Field Programmable Gate Array (FPGA) or other programmable logic device, transistor logic device, hardware component, or any combination thereof.
  • the processor 180 can implement or perform various illustrative logical blocks, modules and circuits described in connection with the present disclosure.
  • Processor 180 may also be a combination of computing functions, such as one or more microprocessor combinations, a combination of a DSP and a microprocessor, and the like. Alternatively, processor 180 may include one or more processor units. Optionally, the processor 180 can also integrate an application processor and a modem processor, wherein the application processor mainly processes an operating system, a user interface, an application, and the like, and the modem processor mainly processes wireless communication. It can be understood that the above modem processor may not be integrated into the processor 180.
  • the application includes any application installed on the mobile phone 100, including but not limited to browsers, emails, instant messaging services, word processing, keyboard virtualization, widgets, encryption, digital rights management, voice recognition, Voice copying, positioning (such as those provided by GPS), music playback, and more.
  • the mobile phone 100 also includes a power source 190 (such as a battery) for powering various components.
  • a power source 190 such as a battery
  • the power source can be logically connected to the processor 180 through the power management system to manage functions such as charging, discharging, and power management through the power management system. .
  • the mobile phone 100 may further include a short-range wireless transmission device such as a Wi-Fi module, thereby implementing short-range wireless communication of the mobile phone 100, and details are not described herein again.
  • a short-range wireless transmission device such as a Wi-Fi module
  • FIG. 2 is a schematic diagram of an application scenario of an embodiment of the present invention.
  • the wearable device 200 can be worn on the wrist of the user through the wrist wearing member 210 and wirelessly communicate with the mobile phone 100.
  • the wearable device 200 is taken out from the wrist wearing member 210, worn on the user's ear by the ear wearing member 220, and wirelessly communicates with the mobile phone 100.
  • the wrist wearing member 210 may be a structure that assists a user in wearing or supporting the wearable device 200, such as a strap, a strap, or a wristband.
  • the wrist wearing member 210 may also be provided with a sensor to detect the wearing state of the wearable device in conjunction with the wearable device 200.
  • the wrist wearing member 210 can also include a power source that can provide power to the wearable device 200 when electrically coupled to the wearable device 200.
  • the ear wearing member 220 may be a structure that assists the user in wearing or supporting the wearable device 200, such as a lanyard or a hook or the like.
  • the wearable device 200 can turn all or part of the functions of the wearable device on or off according to the characteristics of different wear parts, and set the above function states to different working modes, for example, corresponding The earphone mode in which the ear is worn, and the bracelet mode corresponding to the state in which the wrist is worn.
  • the wearable part of the wearable device 200 may be other body parts of the user, in addition to the wrist of the user. For example, the arm, the neck, the leg or the trunk, etc., this application does not limit this.
  • the bracelet mode can be entered.
  • the wearable device 200 can acquire the user's motion data through a motion or position sensor, such as a step, a walking mileage, or a geographic location, and the body sign can also obtain the physical data of the user's wrist, for example, the heart rate. The distribution of the muscles of the wrist or the energy consumed.
  • the screen of the wearable device 200 can display various data as described above, and can also display other information such as time, date, caller information, text message, mail, news, weather information, and the like.
  • the wearable device 200 can also perform a voice call (such as a hands-free function) through an external speaker and a microphone.
  • a voice call such as a hands-free function
  • the headphone mode can be entered.
  • the wearable device 200 can turn on the built-in speaker, play music or voice messages through the built-in speaker, and make voice calls through the built-in speaker and microphone while turning off the screen display.
  • the wearable device 200 may suspend acquisition of data such as motion data or vital sign data.
  • FIG. 3 is a schematic diagram of communication of the first message acquiring method, the method includes:
  • Step 301 Establish a data connection between the wearable device and the terminal.
  • Step 302 The wearable device determines whether the wearable device is in the headset mode.
  • Step 303 when in the headset mode, the wearable device notifies the terminal that the wearable device can receive the voice message;
  • Step 304 The terminal receives a text or voice message sent by an external network.
  • Step 305 The terminal converts the text message into a voice message.
  • Step 306 The terminal sends the voice message to the wearable device.
  • step 307 the wearable device plays a voice message.
  • the data connection can be established by various wireless communication technologies, such as wireless communication networks established by wireless communication technologies such as infrared, Bluetooth, Zigbee, or Wi-Fi.
  • the data connection can be a Bluetooth data connection.
  • a data channel, an audio channel, or a data channel and an audio channel can be established between the wearable device and the terminal.
  • the data channel can be used to transfer various types of data between the wearable device and the terminal, including control commands, application message notifications, and other data.
  • the wearable device can control the terminal to perform corresponding operations, such as answering the phone, starting/pausing/stopping playing music, etc.; the terminal can also control the wearable device to perform corresponding operations, such as turning on or off the sensor of the wearable device. Wait.
  • the audio channel is used to transfer audio data between the wearable device and the terminal, and the content of the audio channel will be described in detail below. It should be understood that the audio channel can also share a data transmission channel with the data channel.
  • the wearable device determines whether the wearable device is in the headset mode by detecting the wear status. Specifically, when the ear wearing state is detected or the wrist wearing state is not detected, determining that the wearable device is in the earphone mode; when the ear wearing state is not detected or the wrist wearing state is detected, determining that the wearable device is not in the earphone mode ( Also known as the bracelet mode).
  • the detection of the wearing state by the wearable device can be done independently by the wearable device or with the wrist wearing member.
  • the wearable device can detect the wear status through the Hall sensor.
  • a Hall sensor 201 may be disposed in the wearable device 200, and a magnet 211 may be disposed at a portion of the wrist wearing member 210 corresponding to the Hall sensor 201.
  • the Hall sensor 201 approaches the magnet 211 and is in a preset closed state, and the wearable device can be considered at this time. 200 is in the wrist wear state.
  • the Hall sensor 201 When the wearable device 200 is taken out from the wrist wearing member 210, the Hall sensor 201 is away from the magnet 211, thus sensing a change in the magnetic field, switching from the preset off state to the on state, at which point the wearable device 200 can be considered not to be in the wrist.
  • the wearable state, or the wearable device 200 is considered to be in an ear wear state. Therefore, the wearable device can determine whether the wearable device 200 is in the earphone mode according to the open/close state of the Hall sensor 201.
  • the Hall sensor 201 When the Hall sensor 201 is turned on, it is determined that the wearable device 200 is in the headphone mode; when the Hall sensor 201 is turned off, it is determined that the wearable device 200 is in the wristband mode.
  • the preset state of the Hall sensor 201 may also be an open state, so that when the Hall sensor 201 is turned off, it is determined that the wearable device 200 is in the earphone mode; when the Hall sensor 201 is turned on, it is determined that the wearable device 200 is in Bracelet mode.
  • the Hall sensor 201 and the magnet 211 can be used as an existing product, and the position thereof can be selected according to actual needs, and details are not described herein again.
  • the wearable device can detect the wear status through a mechanical contact switch.
  • the wearable device 200 may be provided with a mechanical contact switch 202 at a portion in contact with the wrist wearing member 201.
  • the mechanical contact switch 202 is pressed by the wrist wear structure 210 in a preset closed state.
  • the pressing state of the mechanical contact switch 202 is released, and is switched from the preset closed state to the open state.
  • the wearable device 200 is in the earphone mode can be determined according to the open/close state of the mechanical contact switch 202, when the mechanical contact switch 202 is turned on, determining that the wearable device 200 is in the earphone mode; when the mechanical contact switch 202 is off, determining The wearable device 200 is in a bracelet mode.
  • the preset state of the mechanical contact switch 202 may be an open state, such that when the mechanical contact switch 202 is closed, the wearable device 200 is in the earphone mode; when the mechanical contact switch 202 is open, the wearable device 200 is in the wristband mode.
  • the mechanical contact switch 202 can be an existing product, and its position can be selected according to actual needs, and details are not described herein again.
  • the wearable device can detect the wear status through the electrical contact switch.
  • the wearable device 200 may be provided with an electronic contact switch 203 at a portion in contact with the wrist wearing member 201, and the corresponding portion of the wrist wearing structure 201 may be provided with an electrical contact 213.
  • the electronic contact switch 203 is turned on by the electrical contact 213.
  • the electronic contact switch 203 is turned off.
  • the wearable device 200 is in the earphone mode can be determined according to the state of the electronic contact switch 203, when the electronic contact switch 203 is turned off, determining that the wearable device 200 is in the earphone mode; when the electronic contact switch 203 is turned on It is determined that the wearable device 200 is in the bracelet mode.
  • the position of the electronic contact switch 203 and the electronic contact 213 may be exchanged, the electronic contact switch 203 may be disposed on the wrist wearing structure 210, and the electronic contact 213 may be disposed on the wearable device 200.
  • the electronic contact switch 203 can adopt an existing product, and its position can be selected according to actual needs, and details are not described herein again.
  • the wearable device can detect the wear status by a vital sign sensor.
  • the sign sensor may include a photoelectric transmission sensor or an electrical impedance sensor.
  • phototransmission sensors 204 and 214 may be disposed on the wearable device 200 and the wrist wearing structure 210, respectively, and the wearable device 200 and the wrist wearing structure 210 may be electrically connected. Structural connections, such as electrical contact connections. Photoelectric transmission sensors 204 and 214 can determine whether the light transmissive sensor is in contact with the skin by measuring light reflected or transmitted by the skin.
  • the photoelectric transmission sensor 214 on the wrist wearing structure 210 detects contact with the skin, thus determining that the wearable device 200 is in the bracelet mode; when the wearable device 200 is worn in the user's ear
  • the photoelectric transmission sensor 204 on the wearable device 200 detects contact with the skin, and therefore, determines that the wearable device 200 is in the earphone mode. Should It is understood that the photoelectric transmission sensors 204 and 214 can adopt existing products, and the position thereof can be determined according to actual needs, and details are not described herein again.
  • the photo-transmission sensor 204 may be provided only on the wearable device 200.
  • the photoelectric transmission sensor 204 on the wearable device 200 detects contact with the skin, thus determining that the wearable device 200 is in the earphone mode; otherwise, determining that the wearable device 200 is in the wristband mode .
  • electrical impedance sensors 205 and 215 may be respectively disposed on the wearable device 200 and the wrist wearing structure 210, and the wearable device 200 and the wrist wearing structure 210 may pass electricity.
  • Connection structure connections such as electrical contact connections.
  • the electrical impedance sensors 205 and 215 can detect skin contact by measuring skin surface electrical impedance, and can also detect the distribution of biological tissue on the skin surface by obtaining a distribution of electrical impedance, such as muscle tissue distribution or fat tissue distribution, in these biological tissues, Tissues with higher density, such as muscle tissue, have higher electrical impedance, and tissues with lower density, such as adipose tissue, have less electrical impedance.
  • the electrical impedance sensor 215 on the wrist wearing structure 210 detects contact with the skin, thus determining that the wearable device 200 is in the bracelet mode; when the wearable device 200 is worn in the user's ear
  • the electrical impedance sensor 205 on the wearable device 200 detects contact with the skin, thus determining that the wearable device is in the earphone mode. It should be understood that the electrical impedance sensors 205 and 215 can adopt existing products, and the position thereof can be determined according to actual needs, and details are not described herein again.
  • the electrical impedance sensor 205 may be provided only on the wearable device 200.
  • the electrical impedance sensor 205 on the wearable device 200 detects contact with the skin, thus determining that the wearable device is in the headset mode; otherwise, determining that the wearable device is in the bracelet mode.
  • the wearable state of the wearable device can also be detected by other existing methods, and details are not described herein again.
  • the wearable device notifying the terminal that the wearable device is capable of receiving the voice message comprises: establishing an audio channel between the wearable device and the terminal, and transmitting a message currently in the headset mode to the terminal.
  • An audio channel can be used to transfer audio data between the wearable device and the terminal.
  • Audio channels can be built using a variety of wireless communication technologies, such as infrared audio channels, analog audio channels, Bluetooth, Zigbee, or Wi-Fi.
  • the audio channel can be an audio channel based on Bluetooth transmission.
  • the wearable device and the terminal can be connected through the Bluetooth module so that a Bluetooth connection-based audio channel can be established between the wearable device and the terminal.
  • the audio channel may be an audio channel based on an Advanced Audio Distribution Profile (A2DP) or an audio channel based on a Hands-Free Profile (HFP).
  • A2DP Advanced Audio Distribution Profile
  • HFP Hands-Free Profile
  • the audio channel is an A2DP audio channel, it can be used to transmit high quality stereo audio data.
  • the wearable device When an audio channel is established between the wearable device and the terminal, the wearable device can turn on the audio channel and send a request to establish an audio channel to the terminal.
  • the request can be sent via the data connection established in step 301.
  • the terminal After receiving the request for establishing an audio channel, if the terminal agrees to establish an audio channel, the audio channel is turned on, and the response agreeing to establish an audio channel is sent to the wearable device, thereby completing the establishment of the audio channel; otherwise, the terminal does not turn on the audio channel.
  • the rejection response is sent to the wearable device, and the wearable device can turn off the audio channel.
  • the wearable device can open the audio channel when establishing the data connection, and when the wearable device establishes an audio channel with the terminal, the wearable device can send a request for establishing an audio channel to the terminal.
  • the terminal can also open the audio channel when establishing a data connection, and if it agrees to establish an audio channel with the wearable device, the consent response is sent to the wearable device. Thereby, it is possible to avoid turning the audio channel on or off frequently.
  • the wearable device has no order to open the audio channel and send the request to establish the audio channel.
  • the wearable device can send a request for establishing an audio channel to the terminal while opening the audio channel; or can open the audio channel first, and then send a request for establishing an audio channel to the terminal; or send a request for establishing an audio channel to the terminal first
  • the terminal when receiving the consent response of the terminal, turns on the audio channel again.
  • the wearable device can send the message in the headset mode to the terminal through the data connection.
  • the message that the wearable device is in the headset mode may be sent when the wearable device detects the headset mode; or the wearable device detects the wearing state according to the preset time period, and reports the detected result to the terminal, where the preset time period may be Set according to actual needs, for example, 1s, 2s, 5s or 10s.
  • the terminal receives a text message sent by the external network.
  • the terminal receives a text message from an external network, which may be the various wireless networks mentioned above.
  • Text messages can be various types of text messages or notifications, such as short messages, instant messaging application messages, or other application notifications.
  • the conversion of the text message by the terminal can be implemented by a TTS (Text To Speech) function, and the TTS function can convert the text into a natural smooth voice based on the speech synthesis technology.
  • TTS Text To Speech
  • the TTS function can be used to convert a text message into a voice message, and the existing method can be used, and details are not described herein.
  • the wearable device receives the voice message sent by the terminal.
  • Voice messages can be sent over the audio channel.
  • voice messages can be sent over the A2DP audio channel to obtain high quality voice messages.
  • step 307 after the wearable device receives the voice message, the voice message can be played through the built-in speaker.
  • the wearable device can notify the user that the voice message is received by using a voice, and prompt the user to select whether to play.
  • a data channel and an audio channel can be established between the wearable device and the terminal.
  • the wearable device When the wearable device is in the headset mode, the current state is notified to the terminal, and the voice message converted by the text message sent by the terminal is received and played. Therefore, the shortcoming of the screen display capability of the wearable device can be overcome, and the user can conveniently check the content of the text message in time.
  • FIG. 5 is a flowchart of a second message acquisition method, where the method includes:
  • Step 501 Establish a data connection between the wearable device and the terminal.
  • Step 502 The wearable device determines whether the wearable device is in the headset mode.
  • Step 503 when in the headset mode, the wearable device notifies the terminal that the wearable device can receive the voice message;
  • Step 504 The wearable device reads the text message index.
  • Step 505 The wearable device sends a notification for acquiring the voice message corresponding to the text message index to the terminal.
  • Step 506 The terminal converts the corresponding text message into a voice message according to the text message index.
  • Step 507 The terminal sends the voice message to the wearable device.
  • step 508 the wearable device plays a voice message.
  • the steps 501 to 503, 507, and 508 are similar to the steps 301 to 303, 306, and 307 described above, and are not described herein again.
  • the text message index is created by the terminal from the text message.
  • the text message index contains a unique identifier (Uniform Identifier, UID) for each text message.
  • UID Uniform Identifier
  • the terminal After receiving the text message from the external network, the terminal creates a text message index according to the preset rule, stores the text message locally in the terminal, and sends the text message index.
  • the preset rule may be the receiving time of the text message; or may be the creation time of the text message; or may be the type or frequency of the application, for example, the message priority of the short message and the instant messaging application; or the frequency of use High application messages take precedence.
  • the terminal can create a text message index for all received text messages, or can create a text message index only for short messages and instant messaging application messages.
  • the wearable device stores the received text message index locally.
  • the wearable device can store the received text message index in a local voice mailbox.
  • the voicemail box may be a storage area that the wearable device sets to read a voice message or a text message index.
  • the wearable device reads the top ranked one of the text message indexes after notifying the terminal that the wearable device is capable of receiving the voice message.
  • the wearable device can read a top-ranked record in the text message index according to a user operation, such as a user pressing or pressing a control button of the wearable device each time, or according to a user voice instruction.
  • step 506 after receiving the notification of the voice message corresponding to the text message index sent by the wearable device, the terminal queries the text message stored locally by the terminal according to the text message index, and converts the text message into a voice message.
  • the terminal queries the text message stored locally by the terminal according to the text message index, and converts the text message into a voice message.
  • a data channel and an audio channel may be established between the wearable device and the terminal, and the terminal may create a text message index according to the text message when the wearable device is in the wristband mode or the wearable mode of the wearable device cannot be determined.
  • the text message is stored locally and the text message index is sent to the wearable device; when the wearable device is in the headphone mode, the current state is notified to the terminal, and the voice message converted by the text message sent by the terminal is received and played, thereby overcoming the wearable
  • the lack of display capability of the device screen allows the user to check the content of the text message in time.
  • the third message obtaining method provided by the embodiment of the present invention is described below with reference to FIG. 6 is a schematic diagram of communication of a third message acquisition method, the method comprising:
  • Step 601 establishing a data connection between the wearable device and the terminal
  • Step 602 The wearable device determines whether the wearable device is in the headset mode.
  • Step 603 when it is determined that the bracelet mode is not in use, the wearable device notifies the terminal that the wearable device cannot receive the voice message;
  • Step 604 The terminal receives a text or voice message sent by an external network.
  • Step 605 The terminal creates a text message index for the text message.
  • Step 606 The terminal sends the text message index to the wearable device.
  • Step 607 the wearable device determines that it is currently in the headset mode
  • Step 608 when it is determined that the headset mode is in the headset mode, the wearable device notifies the terminal wearable device to receive the voice message;
  • Step 609 the wearable device reads the text message index.
  • Step 610 The wearable device sends a notification for acquiring a voice message corresponding to the text message index to the terminal.
  • Step 611 The terminal converts the corresponding text message into a voice message according to the text message index.
  • Step 612 The terminal sends the voice message to the wearable device through the audio channel.
  • step 613 the wearable device plays a voice message.
  • steps 601, 602, and 604 are respectively performed with steps 301, 302, and 304 described above.
  • steps 607 to 613 are similar to steps 502 to 508 described above, and are not described herein again.
  • the wearable device may send a notification that the wearable device cannot receive the voice message through the data connection established in step 601.
  • the terminal In step 605, after receiving the text message from the external network, the terminal creates a text message index according to the preset rule, stores the text message locally, and sends the text message index to the wearable device.
  • the preset rule may be a receiving time of the text message, a creation time of the text message, a type of the application or a frequency of use, for example, a message priority of the short message and the instant messaging application; or a frequency of use High application messages take precedence.
  • the terminal can create a text message index for all received text messages, or can create a text message index only for short messages and instant messaging application messages.
  • the terminal may immediately create a corresponding text message index after receiving each text message.
  • the terminal may store the received text message and create a corresponding text message index every preset time period.
  • the preset time period may be 5 minutes, 15 minutes, 30 minutes, or 60 minutes, etc., and the preset time period may be set according to actual needs, which is not limited in this application.
  • the terminal immediately creates a corresponding text message index for the received short message, the message of the instant communication application, and the like; and creates a text message index for the message of other types of applications every preset time period.
  • step 606 the terminal sends the text message index to the wearable device, and the text message index may be sent to the wearable device immediately after the text message index is created; or the text message may be according to a preset time period.
  • the index is sent to the wearable device.
  • the preset time period can be set according to actual needs, and this application does not limit this.
  • the sending of the control command, the message notification, and the text message index in the foregoing steps may be performed through a data connection established between the terminal and the wearable device, and details are not described herein again.
  • a data channel and an audio channel are established between the wearable device and the terminal through the Bluetooth module, and the terminal may create a text message index according to the text message when the wearable device is in the wristband mode, and store the text message locally and The text message index is sent to the wearable device; when the wearable device is in the headset mode, the current state is notified to the terminal, and the voice message converted by the text message sent by the terminal is received and played, thereby overcoming the insufficient display capability of the wearable device screen, and being convenient The user promptly checks the content of the text message.
  • FIG. 7 is a schematic structural diagram of a wearable device according to an embodiment of the present disclosure.
  • the wearable device provided by the embodiment of the present invention may be used to implement the method implemented by the embodiments of the present invention shown in FIG. 3 to FIG. 6 .
  • the wearable device 700 includes:
  • the determining module 701 is configured to determine whether the wearable device is in the headset mode.
  • the notification module 702 is configured to notify the terminal that the wearable device is capable of receiving a voice message when in the headset mode.
  • the receiving module 703 is configured to receive a voice message sent by the terminal, where the voice message is converted by the terminal from a text message.
  • the determining module 701 is configured to determine, by the Hall sensor, whether the wearable device is in the earphone mode.
  • the wearable device 700 further includes a sending module 704.
  • the sending module 704 is configured to send to the terminal A request to establish an audio channel.
  • the receiving module 703 also establishes a response of the audio channel by receiving an acknowledgment sent by the terminal.
  • the sending module 704 is further configured to send, to the terminal, a request for establishing an audio channel and a text message index.
  • the receiving module 703 is further configured to receive an index of the text message sent by the terminal.
  • a data channel and an audio channel can be established between the wearable device and the terminal.
  • the wearable device When the wearable device is in the headset mode, the current state is notified to the terminal, and the voice message converted by the text message sent by the terminal is received and played;
  • the wearable device When the wearable device is in the bracelet mode, the terminal creates a text message index according to the text message, and when the wearable device is in the headset mode, converts the text message into a voice message according to the text message index and sends the message to the wearable device, thereby overcoming the wearable
  • the lack of display capability of the device screen allows the user to check the content of the text message in time.
  • FIG. 8 is a schematic structural diagram of a terminal according to an embodiment of the present invention.
  • the terminal provided by the embodiment of the present invention may be used to implement the method implemented by the embodiments of the present invention shown in FIG. 3 to FIG.
  • the terminal 800 includes:
  • the receiving module 801 is configured to receive, by the wearable device, the notification that the wearable device is capable of receiving a voice message.
  • the conversion module 802 is configured to convert the text message into a voice message.
  • the sending module 803 is configured to send the voice message to the wearable device.
  • the receiving module 801 is further configured to receive a request for establishing an audio channel sent by the wearable device.
  • the sending module 803 is further configured to send a response confirming the establishment of the audio channel to the wearable device.
  • the receiving module 801 is further configured to receive a request for establishing an audio channel and a text message index sent by the wearable device.
  • the sending module 803 is further configured to send a text message index to the wearable device.
  • a data channel and an audio channel can be established between the terminal and the wearable device.
  • the wearable device When the wearable device is in the headset mode, the current state is notified to the terminal, and the terminal converts the text message into a voice message and sends the message to the wearable device.
  • the terminal When the wearable device is in the bracelet mode, the terminal creates a text message index according to the text message, and when the wearable device is in the headset mode, converts the text message into a voice message according to the text message index and sends the message to the wearable device, thereby overcoming the The lack of display capability of the wearable device screen allows the user to check the content of the text message in time.
  • FIG. 9 is a schematic structural diagram of a wearable device according to an embodiment of the present invention.
  • the wearable device provided by the embodiment of the present invention may be used to implement the method implemented by the embodiments of the present invention shown in FIG. 3 to FIG. 6 .
  • the wearable device 900 includes a processor 910, a Bluetooth module 920, an input device 930, a display screen 940, a memory 950, a sensor 960, and an audio circuit 970.
  • the wearable device 900 includes a processor 910, a Bluetooth module 920, an input device 930, a display screen 940, a memory 950, a sensor 960, and an audio circuit 970.
  • the wearable device 900 includes a processor 910, a Bluetooth module 920, an input device 930, a display screen 940, a memory 950, a sensor 960, and an audio circuit 970.
  • the wearable device 900 includes a processor 910, a Bluetooth module 920, an input device 930
  • the processor 910 can be the processor 180 shown in FIG. 1.
  • the processor 910 is connected to the Bluetooth module 920, the input device 930, the display screen 940, the memory 950, the sensor 960, and the audio circuit 970 via one or more buses for processing.
  • Various types of data Various types of data.
  • the Bluetooth module 920 can be the Bluetooth module 116 shown in FIG. 1 for establishing a data connection with the terminal, receiving and transmitting message notifications, control commands, and audio data (including voice messages), and transmitting them to the processor 910 for processing or storage. On the memory 950.
  • the input device 930 can be the input device 130 shown in FIG. 1, and the input device 930 can further include a touch button or a physical button for receiving control commands.
  • the control command is triggered by a touch operation acquired by a touch button or by pressing a physical button.
  • the control instruction may be a text message instruction corresponding to the text message index.
  • Display 940 can be display 140 shown in FIG. Display 940 can display various data acquired by sensor 960, as well as other information such as time, date, caller information, text messages, mail, news, and weather information.
  • the sensor 960 can be the sensor 150 shown in FIG. 1 and can be used to acquire the motion data of the user and the vital sign data of the wearing part, so that the wearing state of the wearable device can be determined.
  • the audio circuit 970 can be the audio circuit 160 shown in Figure 1, which can be used to decode a voice message and play the voice message. The decoding of the voice message may be completed by the processor 910 or by the audio codec chip provided by the audio circuit 970.
  • the audio circuit 970 can also include a speaker and a microphone that can be used to play voice messages as well as other audio information, and the microphone can be used to accept audio messages or voice commands.
  • the speaker can also include a built-in speaker and an external speaker, wherein the built-in speaker can be used in the headset mode and the external speaker can be used in the bracelet mode.
  • a data channel and an audio channel can be established between the wearable device and the terminal.
  • the wearable device When the wearable device is in the headset mode, the current state is notified to the terminal, and the voice message converted by the text message sent by the terminal is received and played;
  • the wearable device When the wearable device is in the bracelet mode, the terminal creates a text message index according to the text message, and when the wearable device is in the headset mode, converts the text message into a voice message according to the text message index and sends the message to the wearable device, thereby overcoming the wearable
  • the lack of display capability of the device screen allows the user to check the content of the text message in time.
  • FIG. 10 is a schematic structural diagram of a terminal according to an embodiment of the present invention.
  • the terminal provided by the embodiment of the present invention may be used to implement the method implemented by the embodiments of the present invention shown in FIG. 3 to FIG.
  • the terminal 1000 includes a processor 1010, a Bluetooth module 1020, an RF circuit 1030, and a memory 1040.
  • the terminal 1000 includes a processor 1010, a Bluetooth module 1020, an RF circuit 1030, and a memory 1040.
  • the terminal 1000 includes a processor 1010, a Bluetooth module 1020, an RF circuit 1030, and a memory 1040.
  • the parts related to the embodiments of the present invention are shown. Without the specific technical details, please refer to the embodiments of the present invention and other parts of the application documents.
  • the processor 1010 may be the processor 180 shown in FIG. 1.
  • the processor 1010 is connected to the Bluetooth module 1020, the RF circuit 1030, and the memory 1040 via one or more buses for processing various types of data.
  • the Bluetooth module 1020 may be the Bluetooth module 116 shown in FIG. 1 for establishing a data connection with the wearable device, receiving and transmitting message notifications, control commands, and audio data (including voice messages), and transmitting them to the processor 1010 for processing. Or stored in the memory 1040.
  • the RF circuit 1030 may be the RF circuit 110 shown in FIG. 1 for receiving text messages and calls from an external wireless network.
  • a data channel and an audio channel can be established between the terminal and the wearable device.
  • the wearable device When the wearable device is in the headset mode, the current state is notified to the terminal, and the terminal converts the text message into a voice message and sends the message to the wearable device.
  • the terminal When the wearable device is in the bracelet mode, the terminal creates a text message index according to the text message, and when the wearable device is in the headset mode, converts the text message into a voice message according to the text message index and sends the message to the wearable device, thereby overcoming the The lack of display capability of the wearable device screen allows the user to check the content of the text message in time.
  • the computer program product includes one or more computer instructions.
  • the computer can be a general purpose computer, a special purpose computer, a computer network, or other programmable device.
  • the computer instructions can be stored in a computer readable storage medium or transferred from one computer readable medium to another computer readable medium, for example, the computer instructions can be wired from a website site, computer, server or data center (for example, coaxial cable, fiber, Digital Subscriber Line (DSL)) or wireless (such as infrared, wireless, microwave, etc.) to another website, computer, server or data center.
  • the computer readable storage medium can be any available media that can be accessed by a computer or a data storage device such as a server, data center, or the like that includes one or more available media.
  • the usable medium may be a magnetic medium (eg, a floppy disk, a hard disk, a magnetic tape), an optical medium (eg, a DVD), or a semiconductor medium (eg, a Solid State Disk (SSD)) or the like.
  • a magnetic medium eg, a floppy disk, a hard disk, a magnetic tape
  • an optical medium eg, a DVD
  • a semiconductor medium eg, a Solid State Disk (SSD)
  • the functions described herein can be implemented in hardware, software, firmware, or any combination thereof.
  • the functions may be stored in a computer readable medium or transmitted as one or more instructions or code on a computer readable medium.
  • Computer readable media includes both computer storage media and communication media including any medium that facilitates transfer of a computer program from one location to another.
  • a storage medium may be any available media that can be accessed by a general purpose or special purpose computer.

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Abstract

本申请实施例提供了一种消息获取方法,其中,可穿戴设备确定所述可穿戴设备是否处于耳机模式;当处于耳机模式时,所述可穿戴设备通知终端所述可穿戴设备能够接收语音消息;所述可穿戴设备接收所述终端发送的语音消息,所述语音消息是由所述终端从文本消息转换来的。本发明实施例中,可穿戴设备与终端之间可以建立数据通道和音频通道,当可穿戴设备处于耳机模式时,将当前的状态通知终端,接收并播放终端发送的由文本消息转换的语音消息,从而克服可穿戴设备屏幕显示能力的不足,方便用户及时查收文本消息的内容。

Description

消息获取方法和装置 技术领域
本申请涉及通信技术领域,尤其涉及一种终端的消息获取方法和装置。
背景技术
随着电子技术的发展,可穿戴设备的硬件配置不断提升,功能也越来越丰富,从起初的记步和振动提醒功能,发展到现今具有显示屏和智能操作系统,除了传统的功能外,还能够通过智能手机或家庭网络与互联网相连,显示时间、来电信息、短信、邮件、新闻和天气信息等内容,并支持语音通话。
然而,一方面,由于可穿戴设备需要轻便小巧,因此可穿戴设备的显示屏较小,每屏显示能力有限,不便于文本消息的显示和阅读。另一方面,对于开车等不方便阅读文本消息的场景,用户无法及时浏览智能手机或可穿戴设备的文本消息的内容。因此,需要一种既能克服可穿戴设备显示能力不足,又能及时查阅文本消息的方法。
发明内容
本申请描述了一种消息获取方法和装置,用于解决现有技术中存在的上述问题。
第一方面,提供了一种消息获取方法,所述方法包括:可穿戴设备确定所述可穿戴设备是否处于耳机模式;当处于耳机模式时,所述可穿戴设备通知终端所述可穿戴设备能够接收语音消息;所述可穿戴设备接收所述终端发送的语音消息,所述语音消息是由所述终端从文本消息转换来的。通过接收并播放终端发送的由文本消息转换的语音消息,可穿戴设备可以克服屏幕显示能力的不足,方便用户及时查收文本消息的内容。
在第一方面的一个可能的设计中,所述可穿戴设备确定是否处于耳机模式包括:所述可穿戴设备通过霍尔传感器确定所述可穿戴设备是否处于耳机模式。由此,可以检测可穿戴设备的穿戴状态。
在第一方面的一个可能的设计中,所述方法还包括:所述可穿戴设备向所述终端发送建立音频通道的请求;所述可穿戴设备接收所述终端发送的确认建立音频通道的响应。由此,可穿戴设备可以与终端建立音频通道,并通过音频通道接收终端发送的语音信息。
在第一方面的一个可能的设计中,所述方法还包括:所述可穿戴设备向所述终端发送建立音频通道的请求;所述可穿戴设备接收所述终端发送的确认建立音频通道的响应;所述可穿戴设备将文本消息索引发送给所述终端。由此,可穿戴设备可以与终端建立音频通道,并通过音频通道接收文本消息索引对应的语音信息。
在第一方面的一个可能的设计中,所述文本消息是与所述文本消息索引相对应的文本消息。由此,可穿戴设备可以在由非耳机模式转为耳机模式时,通过文本消息索引查收终端接收的文本消息。
在第一方面的一个可能的设计中,所述文本消息包括所述终端接收或者预先存储的文本消息。由此,终端可以将接收或者预先存储的文本消息转换为语音消息。
在第一方面的一个可能的设计中,所述方法还包括:所述可穿戴设备接收所述终端发送的文本消息索引,所述文本消息索引是由所述终端根据文本消息创建的。通过接收终端发送的文本消息索引,可穿戴设备可以在非耳机模式时存储文本消息索引,并在转 为耳机模式时获取该文本消息索引对应的语音消息。
在第一方面的一个可能的设计中,所述音频通道包括高级音频分发协议A2DP音频通道。通过A2DP音频通道,可穿戴设备可以接收高质量的语音消息。
第二方面,提供一种消息获取方法,所述方法包括:所述终端接收可穿戴设备发送的所述可穿戴设备能够接收语音消息的通知;所述终端将文本消息转换为语音消息;所述终端将所述语音消息发送给所述可穿戴设备。通过将文本消息转换为语音消息,可穿戴设备可以克服屏幕显示能力的不足,方便用户及时查收文本消息的内容。
在第二方面的一个可能的设计中,所述可穿戴设备能够接收语音消息的通知是当所述可穿戴设备确定所述可穿戴设备处于耳机模式时发送的。由此,终端可以获取可穿戴设备处于耳机穿戴状态。
在第二方面的一个可能的设计中,所述方法还包括:所述终端接收所述可穿戴设备发送的建立音频通道的请求;所述终端将确认建立音频通道的响应发送给所述可穿戴设备。由此,终端可以与可穿戴设备建立音频通道,并通过音频通道向可穿戴设备发送语音信息。
在第二方面的一个可能的设计中,所述方法还包括:所述终端接收所述可穿戴设备发送的建立音频通道的请求;所述终端将确认建立音频通道的响应发送给所述可穿戴设备;所述终端接收所述可穿戴设备发送的文本消息索引。由此,终端可以与可穿戴设备建立音频通道,根据文本消息索引将对应的文本消息转换为语音消息,并通过音频通道向可穿戴设备发送语音信息。
在第二方面的一个可能的设计中,所述文本消息是与所述文本消息索引对应的文本消息。由此,可穿戴设备可以在由非耳机模式转为耳机模式时,通过文本消息索引查收终端接收的文本消息。
在第二方面的一个可能的设计中,所述文本消息包括所述终端接收或者预先存储的文本消息。由此,终端可以将接收或者预先存储的文本消息转换为语音消息。
在第二方面的一个可能的设计中,所述方法还包括:所述终端将文本消息索引发送给所述可穿戴设备,所述文本消息索引是由所述终端根据所述文本消息创建的。通过将文本消息转换为文本消息索引,终端可以在可穿戴设备处于非耳机模式时存储文本消息,并在可穿戴设备转为耳机模式时,将该文本消息索引对应的语音消息发送给可穿戴设备。
在第二方面的一个可能的设计中,所述音频通道包括高级音频分发协议A2DP音频通道。通过A2DP音频通道,可穿戴设备可以接收高质量的语音消息。
第三方面,提供一种可穿戴设备,所述可穿戴设备包括:确定模块,用于确定所述可穿戴设备是否处于耳机模式;通知模块,用于当处于耳机模式时,所述可穿戴设备通知终端所述可穿戴设备能够接收语音消息;接收模块,用于接收所述终端发送的语音消息,所述语音消息是由所述终端从文本消息转换来的。通过接收并播放终端发送的由文本消息转换的语音消息,可穿戴设备可以克服屏幕显示能力的不足,方便用户及时查收文本消息的内容。
在第三方面的一个可能的设计中,所述确定模块用于通过霍尔传感器确定所述可穿戴设备是否处于耳机模式。由此,可以检测可穿戴设备的穿戴状态。
在第三方面的一个可能的设计中,所述可穿戴设备还包括:发送模块,用于向所述 终端发送建立音频通道的请求;所述接收模块,还用于接收所述终端发送的确认建立音频通道的响应。由此,可穿戴设备可以与终端建立音频通道,并通过音频通道接收终端发送的语音信息。
在第三方面的一个可能的设计中,可穿戴设备还包括:发送模块,用于向所述终端发送建立音频通道的请求和文本消息索引;所述接收模块,还用于接收所述终端发送的确认建立音频通道的响应。由此,可穿戴设备可以与终端建立音频通道,并通过音频通道接收文本消息索引对应的语音信息。
在第三方面的一个可能的设计中,所述文本消息是与所述文本消息索引相对应的文本消息。由此,可穿戴设备可以在由非耳机模式转为耳机模式时,通过文本消息索引查收终端接收的文本消息。
在第三方面的一个可能的设计中,所述文本消息包括所述终端接收或者预先存储的文本消息。由此,终端可以将接收或者预先存储的文本消息转换为语音消息。通过接收终端发送的文本消息索引,可穿戴设备可以在非耳机模式时存储文本消息索引,并在转为耳机模式时获取该文本消息索引对应的语音消息。
在第三方面的一个可能的设计中,所述可穿戴设备还包括:所述接收模块,还用于接收所述终端发送的文本消息索引,所述文本消息索引是由所述终端根据文本消息创建的。
在第三方面的一个可能的设计中,所述音频通道包括高级音频分发协议A2DP音频通道。通过A2DP音频通道,可穿戴设备可以接收高质量的语音消息。
第四方面,提供一种终端,所述终端包括:接收模块,用于接收可穿戴设备发送的所述可穿戴设备能够接收语音消息的通知;转换模块,用于将文本消息转换为语音消息;发送模块,用于将所述语音消息发送给所述可穿戴设备。通过将文本消息转换为语音消息,可穿戴设备可以克服屏幕显示能力的不足,方便用户及时查收文本消息的内容。
在第四方面的一个可能的设计中,所述可穿戴设备能够接收语音消息的通知是当所述可穿戴设备确定所述可穿戴设备处于耳机模式时发送的。由此,终端可以获取可穿戴设备处于耳机穿戴状态。
在第四方面的一个可能的设计中,所述终端还包括:所述接收模块,还用于接收所述可穿戴设备发送的建立音频通道的请求;所述发送模块,还用于将确认建立音频通道的响应发送给所述可穿戴设备。由此,终端可以与可穿戴设备建立音频通道,并通过音频通道向可穿戴设备发送语音信息。
在第四方面的一个可能的设计中,所述终端还包括:所述接收模块,还用于接收所述可穿戴设备发送的建立音频通道的请求和文本消息索引;所述发送模块,还用于将确认建立音频通道的响应发送给所述可穿戴设备。由此,终端可以与可穿戴设备建立音频通道,根据文本消息索引将对应的文本消息转换为语音消息,并通过音频通道向可穿戴设备发送语音信息。
在第四方面的一个可能的设计中,所述文本消息是与所述文本消息索引对应的文本消息。由此,可穿戴设备可以在由非耳机模式转为耳机模式时,通过文本消息索引查收终端接收的文本消息。
在第四方面的一个可能的设计中,所述文本消息包括所述终端接收或者预先存储的 文本消息。由此,终端可以将接收或者预先存储的文本消息转换为语音消息。
在第四方面的一个可能的设计中,所述终端还包括:所述发送模块,用于将文本消息索引发送给所述可穿戴设备,所述文本消息索引是由所述终端根据所述文本消息创建的。通过将文本消息转换为文本消息索引,终端可以在可穿戴设备处于非耳机模式时存储文本消息,并在可穿戴设备转为耳机模式时,将该文本消息索引对应的语音消息发送给可穿戴设备。
在第四方面的一个可能的设计中,所述音频通道包括高级音频分发协议A2DP音频通道。通过A2DP音频通道,可穿戴设备可以接收高质量的语音消息。
第五方面,提供一种可穿戴设备,所述可穿戴设备包括一个或多个处理器、存储器、发送器、接收器以及一个或多个程序,所述一个或多个程序存储在存储器中并被配置为被一个或多个处理器执行,所述一个或多个程序包括用于执行第一方面所述的方法的指令。
第六方面,提供一种终端,所述可穿戴设备包括一个或多个处理器、存储器、发送器、接收器以及一个或多个程序,所述一个或多个程序存储在存储器中并被配置为被一个或多个处理器执行,所述一个或多个程序包括用于执行第二方面所述的方法的指令。
第五方面,提供一种包含指令的计算机程序产品,当所述指令在计算机上运行时,使得计算机执行第一方面或第二方面所述的方法。
第六方面,提供一种计算机可读存储介质,所述计算机可读存储介质中存储有指令,当所述指令在计算机上运行时,使得计算机执行第一方面或第二方面所述的方法。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍。显而易见地,下面附图中反映的仅仅是本发明的一部分实施例,而非全部。对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他实施方式。而所有这些实施例或实施方式都在本申请的保护范围之内。
图1为本发明实施例的第一终端的结构示意图;
图2为本发明实施例的一种应用场景示意图;
图3为本发明实施例的第一消息获取方法的通信示意图;
图4为本发明实施例的可穿戴设备检测穿戴状态的实施方案示意图;
图5为本发明实施例的第二消息获取方法的通信示意图;
图6为本发明实施例的第三消息获取方法的通信示意图;
图7为本发明实施例的第一可穿戴设备的结构示意图;
图8为本发明实施例的第二终端的结构示意图;
图9为本发明实施例的第二可穿戴设备的结构示意图;
图10为本发明实施例的第三终端的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例的技术方案进行进一步描述。
本发明实施例的消息获取方法和装置,可应用于具有屏幕及多个应用程序的任何终 端中,所述装置可以是安装于终端中的具有处理能力的硬件、软件或者软件与硬件的结合,其中,所述终端可以是手机或移动电话、平板电脑(Tablet Personal Computer,TPC)、膝上型电脑(Laptop Computer)、数码相机、数字摄影机、投影设备、可穿戴式设备(Wearable Device)、个人数字助理(Personal Digital Assistant,PDA)、电子书阅读器(e-book reader)、虚拟现实智能设备、数字广播终端,消息收发设备,游戏控制台,医疗设备,健身设备或扫描仪等终端,所述终端可以通过2G、3G、4G、5G或无线局域网(wireless locale access network,WLAN)与网络建立通信。为了方便和简明起见,对此本发明实施例不做进一步限定,在以下的实施例中,以移动终端为例进行说明。
本发明实施例提供一种终端,可用于执行本发明实施例的所述方法,以该终端为手机为例,图1示出了一种手机100的结构示意图,下面结合图1对手机100的各个构成部件进行具体的介绍。手机100包括射频(Radio Frequency,RF)电路110、蓝牙模块116、存储器120、输入设备130、显示屏140、传感器150、音频电路160、输入/输出(Input/Output,I/O)子系统170、处理器180、以及电源190等部件。本领域技术人员可以理解,图1中示出的手机结构只做实现方式的举例,并不构成对手机的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
RF电路110可用于收发信息或通话过程中,信号的接收和发送,特别地,将基站的下行信息接收后,给处理器180处理;另外,将设计上行的数据发送给基站。通常,RF电路包括但不限于天线、至少一个放大器、收发信机、耦合器、低噪声放大器(Low NoiseAmplifier,LNA)、双工器等。此外,RF电路110还可以通过无线通信与网络和其他设备通信。所述无线通信可以使用任一通信标准或协议,包括但不限于全球移动通讯系统(Global System of Mobile communication,GSM)、通用分组无线服务(General Packet Radio Service,GPRS)、码分多址(Code Division Multiple Access,CDMA)、宽带码分多址(Wideband Code Division Multiple Access,WCDMA)、长期演进(Long Term Evolution,LTE)、电子邮件、短消息服务(Short Messaging Service,SMS)等。
蓝牙模块116可用于短距离的无线数据传输和语音传输。当手机100与其它设备建立蓝牙连接时,蓝牙模块116通过数据通道,可以接收其他设备发送的控制指令或消息,发送处理器180处理;也可以将控制指令或消息发送给其他设备。另外,通过音频通道,手机100可以接收或发送音频,例如,语音通话或收听音乐。
存储器120可用于存储软件程序以及模块,处理器180通过运行存储在存储器120的软件程序以及模块,从而执行手机100的各种功能应用以及数据处理。存储器120可包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序(比如声音播放功能、图像播放功能等)等;存储数据区可存储根据手机100的使用所创建的数据(比如音频数据、视频数据、电话本等)等。此外,存储器120可以包括易失性存储器,例如非挥发性动态随机存取内存(Nonvolatile Random Access Memory,NVRAM)、相变化随机存取内存(Phase Change RAM,PRAM)、磁阻式随机存取内存(Magetoresistive RAM,MRAM)等,还可以包括非易失性存储器,例如至少一个磁盘存储器件、电子可擦除可编程只读存储器(Electrically Erasable Programmable Read-Only Memory,EEPROM)、闪存器件,例如反或闪存(NOR flash memory)或是反及闪存(NAND flash memory)、半导体器件,例如固态硬盘(Solid State Disk,SSD)等。
输入设备130可用于接收输入的数字或字符信息,以及产生与手机100的用户设置以及功能控制有关的键信号输入。具体地,输入设备130可包括触控面板131以及其他输入设备132。触控面板131,也称为触摸屏,可收集用户在其上或附近的触摸操作(比如用户使用手指、触笔等任何适合的物体或附件在触控面板131上或在触控面板131附近的操作),并根据预先设定的程序驱动相应的连接装置。可选的,触控面板131可包括触摸检测装置和触摸控制器两个部分。其中,触摸检测装置检测用户的触摸方位,并检测触摸操作带来的信号,将信号传送给触摸控制器;触摸控制器从触摸检测装置上接收触摸信息,并将它转换成触点坐标,再送给处理器180,并能接收处理器180发来的命令并加以执行。此外,可以采用电阻式、电容式、红外线以及表面声波等多种类型实现触控面板131。除了触控面板131,输入设备130还可以包括其他输入设备132。具体地,其他输入设备132可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆等中的一种或多种。
显示屏140可用于显示由用户输入的信息或提供给用户的信息以及手机100的各种界面。显示屏140可包括显示面板141,可选的,可以采用液晶显示器(Liquid Crystal Display,LCD)、有机发光二极管(Organic Light-Emitting Diode,OLED)等形式来配置显示面板141。进一步的,触控面板131可覆盖显示面板141,当触控面板131检测到在其上或附近的触摸操作后,传送给处理器180以确定触摸事件的类型,随后处理器180根据触摸事件的类型在显示面板141上提供相应的视觉输出。虽然在图1中,触控面板131与显示面板141是作为两个独立的部件来实现手机100的输入和输入功能,但是在某些实施例中,可以将触控面板131与显示面板141集成而实现手机100的输入和输出功能。显示屏140可用于显示内容,所述内容包括用户界面,比如手机的开机界面,应用程序的用户界面。所述内容除了用户界面,还可以包括信息和数据。显示屏140可以是手机的内置屏幕或者其它外部显示设备。
传感器150包括至少一个光传感器、运动传感器、位置传感器以及其他传感器。具体地,光传感器可包括环境光传感器及接近传感器,其中,环境光传感器可以获取周围环境光线的亮度,接近传感器可在手机100移动到耳边时,关闭显示面板141和/或背光。运动传感器可以包括加速度传感器,可检测各个方向上(一般为三轴)加速度的大小,静止时可检测出重力的大小及方向,可用于识别手机姿态的应用(比如横竖屏切换、相关游戏、磁力计姿态校准)、振动识别相关功能(比如计步器、敲击)等。位置传感器可包括全球定位系统(Global Positioning System,GPS)、北斗系统(COMPASS)、格洛纳斯系统(GLONASS)和伽利略系统(GALILEO),用于获取手机的地理位置坐标。位置传感器还可以通过移动运营网络的基站、以及Wi-Fi或蓝牙等局域网络进行定位,或者综合使用上述定位方式,从而获得更精确的手机位置信息。手机100还可配置的陀螺仪、气压计、湿度计、温度计和红外线传感器等其他传感器,在此不再赘述。
音频电路160、扬声器161,和传声器162(也称麦克风)可提供用户与手机100之间的音频接口。音频电路160可将接收到的音频数据转换后的电信号,传输到扬声器161,由扬声器161转换为声音信号输出;另一方面,传声器162将收集的声音信号转换为电信号,由音频电路160接收后转换为音频数据,再将音频数据输出处理器180处理后,经RF电路110以发送给比如另一手机,或者将音频数据输出至存储器120以便进一步处 理。
I/O子系统170可用于输入或输出系统的各种信息或数据。I/O子系统170包括输入设备控制器171、传感器控制器172和显示控制器173。I/O子系统170通过上述控制器,接收输入单元130、传感器150和显示屏140发送的各种数据,并通过发送控制指令实现对上述部件的控制。
处理器180是手机100的控制中心,利用各种接口和线路连接整个手机的各个部分,通过运行或执行存储在存储器120内的软件程序和/或模块,以及调用存储在存储器120内的数据,执行手机100的各种功能和处理数据,从而对手机进行整体监控。处理器180可以是中央处理器(Central Processing Unit,CPU)、通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现场可编程门阵列(Field Programmable Gate Array,FPGA)或者其他可编程逻辑器件、晶体管逻辑器件,硬件部件或者其任意组合。处理器180可以实现或执行结合本申请公开内容所描述的各种示例性的逻辑方框,模块和电路。处理器180也可以是实现计算功能的组合,例如包含一个或多个微处理器组合,DSP和微处理器的组合等等。可选的,处理器180可包括一个或多个处理器单元。可选的,处理器180还可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作系统、用户界面和应用程序等,调制解调处理器主要处理无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器180中。
所述应用程序包括安装在手机100上的任何应用,包括但不限于浏览器、电子邮件、即时消息服务、文字处理、键盘虚拟、窗口小部件(Widget)、加密、数字版权管理、语音识别、语音复制、定位(例如由全球定位系统提供的功能)、音乐播放等等。
手机100还包括给各个部件供电的电源190(比如电池),可选的,电源可以通过电源管理系统与处理器180逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。
需要说明的是,尽管未示出,手机100还可以包括Wi-Fi模块等短距离无线传输器件,从而实现手机100的短距离无线通信,在此不再赘述。
图2示出了本发明实施例的一种应用场景示意图。其中,在图2的(A)中,可穿戴设备200可以通过腕部穿戴构件210穿戴在用户手腕上,并与手机100进行无线通信。在图2的(B)中,可穿戴设备200从腕部穿戴构件210中取出,通过耳部穿戴构件220穿戴在用户耳朵上,并与手机100进行无线通信。腕部穿戴构件210可以是辅助用户在手腕穿戴或支撑可穿戴设备200的结构,例如,绑带、带子或护腕等。腕部穿戴构件210也可以设置传感器,配合可穿戴设备200检测可穿戴设备的穿戴状态。腕部穿戴构件210还可以包括电源,当与可穿戴设备200电连接时,可以为可穿戴设备200提供电力。耳部穿戴构件220可以是辅助用户在耳朵穿戴或支撑可穿戴设备200的结构,例如,挂绳或挂钩等。
为了更好地适应不同身体部位的需要,可穿戴设备200可以根据不同穿戴部位的特点,开启或关闭可穿戴设备的全部或部分功能,并将上述功能状态设置为不同的工作模式,例如,对应耳朵穿戴状态的耳机模式,以及对应手腕穿戴状态的手环模式。应当理解,可穿戴设备200的穿戴部位除用户的手腕之外,也可以是用户的其它身体部位,例 如,手臂、脖子、腿部或躯干等,本申请对此不作限制。
当可穿戴设备200穿戴在用户手腕时,可以进入手环模式。在手环模式下,可穿戴设备200可以通过运动或位置传感器获取用户的运动数据,例如,记步、行走里程或地理位置等;也可以通过体征传感器获取用户腕部的体征数据,例如,心率、腕部肌肉分布或消耗的能量等。可穿戴设备200的屏幕可以显示上述各种数据,也可以显示其他信息,例如时间、日期、来电信息、文本消息、邮件、新闻和天气信息等内容。此外,可穿戴设备200还可以通过外置扬声器和麦克风进行语音通话(例如免提功能)等。
当可穿戴设备200穿戴在用户耳朵时,可以进入耳机模式。在耳机模式下,可穿戴设备200可以开启内置扬声器,通过内置扬声器播放音乐或语音消息,以及通过内置扬声器和麦克风进行语音通话,同时关闭屏幕显示。可选的,可穿戴设备200可以暂停对运动数据或体征数据等数据的获取。
实施例1
下面结合图3和图4,对本发明实施例提供的第一消息获取方法进行说明。图3为所述第一消息获取方法的通信示意图,该方法包括:
步骤301,可穿戴设备与终端之间建立数据连接;
步骤302,可穿戴设备确定可穿戴设备是否处于耳机模式;
步骤303,当处于耳机模式时,可穿戴设备通知终端可穿戴设备能够接收语音消息;
步骤304,终端接收外部网络发来的文本或语音消息;
步骤305,终端将文本消息转换为语音消息;
步骤306,终端将语音消息发送给可穿戴设备;
步骤307,可穿戴设备播放语音消息。
在步骤301中,数据连接可以通过各种无线通信技术建立,例如,红外线、蓝牙、Zigbee或Wi-Fi等无线通信技术建立的无线通信网络。可选的,数据连接可以是蓝牙数据连接。基于该蓝牙数据连接,可穿戴设备与终端之间可以建立数据通道、音频通道或者数据通道和音频通道。该数据通道可用于在可穿戴设备与终端之间传输各类数据,所述各类数据包括控制指令、应用程序消息通知以及其它数据。通过控制指令,可穿戴设备可以控制终端执行相应的操作,例如,接听电话、开始/暂停/停止播放音乐等;终端也可以控制可穿戴设备执行相应的操作,例如开启或关闭可穿戴设备的传感器等。该音频通道用于在可穿戴设备与终端之间传输音频数据,有关音频通道的内容将在下文详细说明。应当理解,音频通道也可以与数据通道共用数据传输通道。
在步骤302中,可穿戴设备通过检测穿戴状态,确定可穿戴设备是否处于耳机模式。具体的,当检测到耳朵穿戴状态或未检测到手腕穿戴状态时,确定可穿戴设备处于耳机模式;当未检测到耳朵穿戴状态或检测到手腕穿戴状态时,确定可穿戴设备不处于耳机模式(也可称为手环模式)。可穿戴设备对穿戴状态的检测,可以由可穿戴设备独立完成,也可以与手腕穿戴构件配合完成。
在一个示例中,可穿戴设备可以通过霍尔传感器检测穿戴状态。作为一个例子,如图4的(A)所示,可穿戴设备200内可以设置霍尔传感器201,手腕穿戴构件210对应该霍尔传感器201的部位可以设置磁体211。当可穿戴设备200置于手腕穿戴构件210中时,霍尔传感器201接近磁体211,处于预设的关闭状态,此时可以认为可穿戴设备 200处于手腕穿戴状态。当可穿戴设备200从手腕穿戴构件210中取出时,霍尔传感器201远离磁体211,因此感应到磁场变化,由预设的关闭状态切换到开启状态,此时可以认为可穿戴设备200不处于手腕穿戴状态,或者认为可穿戴设备200处于耳朵穿戴状态。因此,可穿戴设备可以根据霍尔传感器201的开闭状态,确定可穿戴设备200是否处于耳机模式。当霍尔传感器201开启时,确定可穿戴设备200处于耳机模式;当霍尔传感器201关闭时,确定可穿戴设备200处于手环模式。应当理解,霍尔传感器201的预设状态也可以是开启状态,从而,当霍尔传感器201关闭时,确定可穿戴设备200处于耳机模式;当霍尔传感器201开启时,确定可穿戴设备200处于手环模式。霍尔传感器201和磁体211可以采用已有的产品,其位置可以根据实际需要选择,在此不再赘述。
在另一个示例中,可穿戴设备可以通过机械接触开关检测穿戴状态。作为一个例子,如图4的(B)所示,可穿戴设备200可以在与手腕穿戴构件201接触的部位设置机械接触开关202。当可穿戴设备200置于手腕穿戴结构210中时,机械接触开关202受手腕穿戴结构210按压,处于预设的关闭状态。当可穿戴设备200从腕部穿戴结构210中取出时,机械接触开关202的按压状态解除,由预设的关闭状态切换到开启状态。因此,可以根据机械接触开关202的开闭状态,确定可穿戴设备200是否处于耳机模式,当机械接触开关202开启时,确定可穿戴设备200处于耳机模式;当机械接触开关202关闭时,确定可穿戴设备200处于手环模式。应当理解,机械接触开关202的预设状态可以是开启状态,从而,当机械接触开关202关闭时,可穿戴设备200处于耳机模式;当机械接触开关202开启时,可穿戴设备200处于手环模式。机械接触开关202可以采用已有的产品,其位置可以根据实际需要选择,在此不再赘述。
在另一个示例中,可穿戴设备可以通过电子触点开关检测穿戴状态。作为一个例子,如图4的(C)所示,可穿戴设备200可以在与手腕穿戴构件201接触的部位设置电子触点开关203,腕部穿戴结构201的对应部位可以设置电子触点213,当可穿戴设备200置于腕部穿戴结构201中时,电子触点开关203通过电子触点213导通。当可穿戴设备从腕部穿戴结构中取出时,电子触点开关203关断。因此,可以根据电子触点开关203的状态,确定可穿戴设备200是否处于耳机模式,当电子触点开关203关断时,确定可穿戴设备200处于耳机模式;当电子触点开关203导通时,确定可穿戴设备200处于手环模式。应当理解,电子触点开关203和电子触点213的位置可以交换,电子触点开关203可以设置在腕部穿戴结构210上,电子触点213可以设置在可穿戴设备200上。电子触点开关203可以采用已有的产品,其位置可以根据实际需要选择,在此不再赘述。
在另一个示例中,可穿戴设备可以通过体征传感器检测穿戴状态。体征传感器可以包括光电透射传感器或电阻抗传感器。
作为一个例子,如图4的(D)所示,可以在可穿戴设备200和腕部穿戴结构210上分别设置光电透射传感器204和214,可穿戴设备200与腕部穿戴结构210可以通过电连接结构连接,例如电子触点连接。光电透射传感器204和214可以通过测量皮肤反射或透射的光,确定光透射传感器是否与皮肤接触。当可穿戴设备200穿戴在用户手腕上时,腕部穿戴结构210上的光电透射传感器214检测到与皮肤接触,因此,确定可穿戴设备200处于手环模式;当可穿戴设备200穿戴在用户耳朵上时,可穿戴设备200上的光电透射传感器204检测到与皮肤接触,因此,确定可穿戴设备200处于耳机模式。应 当理解,光电透射传感器204和214可以采用现有的产品,其位置可以根据实际需要确定,在此不再赘述。
可选的,可以仅在可穿戴设备200上设置光电透射传感器204。当可穿戴设备200穿戴在用户耳朵上时,可穿戴设备200上的光电透射传感器204检测到与皮肤接触,因此,确定可穿戴设备200处于耳机模式;否则,确定可穿戴设备200处于手环模式。
作为另一个例子,如图4的(E)所示,可以在可穿戴设备200和腕部穿戴结构210上分别设置电阻抗传感器205和215,可穿戴设备200与腕部穿戴结构210可以通过电连接结构连接,例如电子触点连接。电阻抗传感器205和215可以通过测量皮肤表面电阻抗检测与皮肤接触,还可以通过获取电阻抗的分布检测皮肤表面生物组织的分布情况,例如肌肉组织分布或脂肪组织分布,在这些生物组织中,密度较大的组织例如肌肉组织电阻抗较大,密度较小的组织例如脂肪组织电阻抗较小。当可穿戴设备200穿戴在用户手腕上时,腕部穿戴结构210上的电阻抗传感器215检测到与皮肤接触,因此,确定可穿戴设备200处于手环模式;当可穿戴设备200穿戴在用户耳朵上时,可穿戴设备200上的电阻抗传感器205检测到与皮肤接触,因此,确定可穿戴设备处于耳机模式。应当理解,电阻抗传感器205和215可以采用现有的产品,其位置可以根据实际需要确定,在此不再赘述。
可选的,可以仅在可穿戴设备200上设置电阻抗传感器205。当可穿戴设备200穿戴在用户耳朵上时,可穿戴设备200上的电阻抗传感器205检测到与皮肤接触,因此,确定可穿戴设备处于耳机模式;否则,确定可穿戴设备处于手环模式。
此外,还可以采用已有的其它方法检测可穿戴设备的穿戴状态,此处不再赘述。
在步骤303中,可穿戴设备通知终端所述可穿戴设备能够接收语音消息包括:可穿戴设备与终端之间建立音频通道,并将当前处于耳机模式的消息发送给终端。
音频通道可用于在可穿戴设备与终端之间传输音频数据。音频通道可以通过各种无线通信技术建立,例如,红外音频通道、模拟音频通道、蓝牙、Zigbee或Wi-Fi等。可选的,音频通道可以是基于蓝牙传输的音频通道。可穿戴设备和终端可以通过蓝牙模块配对连接,从而可以在可穿戴设备和终端之间建立基于蓝牙连接的音频通道。可选的,音频通道可以是基于高级音频分发协议(Advanced Audio Distribution Profile,A2DP)的音频通道,也可以是基于免提规格协议(Hands-free Profile,HFP)的音频通道。具体的,当音频通道为A2DP音频通道时,可以用于传输高质量的立体声音频数据。
当在可穿戴设备和终端之间建立音频通道时,可穿戴设备可以开启音频通道,并将建立音频通道的请求发送给终端。该请求可以通过步骤301建立的所述数据连接发送。
终端接收到建立音频通道的请求之后,如果同意建立音频通道,则开启音频通道,并将同意建立音频通道的响应发送给可穿戴设备,从而完成音频通道的建立;否则,终端不开启音频通道,并将拒绝响应发送给可穿戴设备,此时可穿戴设备可以关闭音频通道。
可选的,可穿戴设备可以在建立数据连接时开启音频通道,当可穿戴设备与终端建立音频通道时,可穿戴设备可以将建立音频通道的请求发送给终端。终端也可以在建立数据连接时开启音频通道,如果同意与可穿戴设备建立音频通道,则将同意响应发送给可穿戴设备。由此,可以避免频繁地开启或关闭音频通道。
需要说明的是,可穿戴设备开启音频通道和发送建立音频通道的请求没有先后顺序。可穿戴设备可以在开启音频通道的同时,将建立音频通道的请求发送给终端;也可以先开启音频通道,再将建立音频通道的请求发送给终端;还可以先将建立音频通道的请求发送给终端,当接收到终端的同意响应时,再开启音频通道。
可穿戴设备可以将处于耳机模式的消息通过数据连接发送给终端。可穿戴设备处于耳机模式的消息可以在可穿戴设备检测到耳机模式时发送;也可以是可穿戴设备根据预设时间周期检测佩戴状态,并将检测的结果报告终端,所述预设时间周期可以根据实际需要设置,例如,1s,2s、5s或10s等。
在步骤304中,终端接收外部网络发来的文本消息。终端从外部网络接收文本消息,所述外部网络可以是前文提到的各种无线网络。文本消息可以是各种类型的文本消息或通知,例如短消息、即时通信应用程序的消息或者其它应用程序通知等。
在步骤305中,终端对文本消息的转换,可以通过TTS(Text To Speech,从文本到语音)功能实现,TTS功能可以基于语音合成技术将文本转换成自然流畅的语音。利用TTS功能将文本消息转换成语音消息可以采用已有的方法,在此不再赘述。
在步骤306中,可穿戴设备接收终端发送的语音消息。语音消息可以通过音频通道发送。可选的,语音消息可以通过A2DP音频通道发送,从而获取高质量的语音消息。
在步骤307中,可穿戴设备收到语音消息之后,可以通过内置扬声器播放该语音消息。可选的,可穿戴设备可以通过语音的方式,通知用户接收到语音消息,提示用户选择是否播放。
本发明实施例中,可穿戴设备与终端之间可以建立数据通道和音频通道,当可穿戴设备处于耳机模式时,将当前的状态通知终端,接收并播放终端发送的由文本消息转换的语音消息,从而能够克服可穿戴设备屏幕显示能力的不足,方便用户及时查收文本消息的内容。
实施例2
下面结合图5具体说明本发明实施例提供的第二消息获取方法。图5为第二消息获取方法的流程图,该方法包括:
步骤501,可穿戴设备与终端之间建立数据连接;
步骤502,可穿戴设备确定可穿戴设备是否处于耳机模式;
步骤503,当处于耳机模式时,可穿戴设备通知终端可穿戴设备能够接收语音消息;
步骤504,可穿戴设备读取文本消息索引;
步骤505,可穿戴设备将获取文本消息索引对应的语音消息的通知发送给终端;
步骤506,终端根据文本消息索引将对应的文本消息转换为语音消息;
步骤507,终端将语音消息发送至可穿戴设备;
步骤508,可穿戴设备播放语音消息。
其中,步骤501至503、507和508分别与前文所述的步骤301至303、306和307相似,在此不再赘述。
在步骤504中,文本消息索引是终端从文本消息创建的。文本消息索引包含了每条文本消息的唯一标识符(Unique Identifier,UID)。终端从外部网络接收到文本消息之后,根据预设规则创建文本消息索引,将文本消息存储在终端本地,并将文本消息索引发送 给可穿戴设备。所述预设规则可以是文本消息的接收时间;也可以是文本消息的创建时间;还可以是应用程序的类型或使用频率,例如,短消息和即时通信类应用程序的消息优先;或者使用频率高的应用程序的消息优先。此外,终端可以对接收到的所有文本消息都创建文本消息索引,也可以只针对短消息和即时通信应用程序消息等创建文本消息索引。
可穿戴设备将接收到的文本消息索引存储在本地。可选的,可穿戴设备可以将接收到的文本消息索引存储在本地的语音信箱中。该语音信箱可以是可穿戴设备为读取语音消息或文本消息索引而设置的存储区。可穿戴设备在通知终端可穿戴设备能够接收语音消息之后,读取文本消息索引中排序最靠前的一条记录。可选的,可穿戴设备可以根据用户操作,例如用户每次触摸或按下可穿戴设备的控制按钮,或者根据用户语音指令,读取文本消息索引中排序最靠前的一条记录。
在步骤506中,终端接收到可穿戴设备发送的获取文本消息索引对应的语音消息的通知之后,根据该文本消息索引查询终端本地存储的文本消息,并将该文本消息转换为语音消息。文本消息转换为语音消息可以参照前文步骤305的说明,此处不再赘述。
本发明实施例中,可穿戴设备与终端之间可以建立数据通道和音频通道,终端可以在可穿戴设备处于手环模式或者无法确定可穿戴设备的穿戴模式时,根据文本消息创建文本消息索引,将文本消息存储在本地并将文本消息索引发送给可穿戴设备;当可穿戴设备处于耳机模式时,将当前状态通知终端,接收并播放终端发送的由文本消息转换的语音消息,从而克服可穿戴设备屏幕显示能力的不足,方便用户及时查收文本消息的内容。
实施例3
下面结合图6,对本发明实施例提供的第三消息获取方法进行说明。图6为第三消息获取方法的通信示意图,该方法包括:
步骤601,可穿戴设备与终端之间建立数据连接
步骤602,可穿戴设备确定可穿戴设备是否处于耳机模式;
步骤603,当确定不在手环模式时,可穿戴设备通知终端可穿戴设备不能接收语音消息;
步骤604,终端接收外部网络发来的文本或语音消息;
步骤605,终端为文本消息创建文本消息索引;
步骤606,终端将文本消息索引发送给可穿戴设备;
步骤607,可穿戴设备确定当前处于耳机模式;
步骤608,当确定处于耳机模式时,可穿戴设备通知终端可穿戴设备能够接收语音消息;
步骤609,可穿戴设备读取文本消息索引;
步骤610,可穿戴设备将获取文本消息索引对应的语音消息的通知发送给终端;
步骤611,终端根据文本消息索引将对应的文本消息转换为语音消息;
步骤612,终端通过音频通道将语音消息发送至可穿戴设备;
步骤613,可穿戴设备播放语音消息。
在本发明实施例中,步骤601、602和604分别与前文所述的步骤301、302和304 相似,步骤607至613分别与前文所述的步骤502至508相似,在此不再赘述。
在步骤603中,可穿戴设备可以通过步骤601中建立的数据连接发送可穿戴设备无法接收语音消息的通知。
在步骤605中,终端从外部网络接收到文本消息之后,根据预设规则创建文本消息索引,将文本消息存储在本地,并将文本消息索引发送给可穿戴设备。所述预设规则可以是文本消息的接收时间,也可以是文本消息的创建时间,还可以是应用程序的类型或使用频率,例如,短消息和即时通信类应用程序的消息优先;或者使用频率高的应用程序的消息优先。此外,终端可以对接收到的所有文本消息都创建文本消息索引,也可以只针对短消息和即时通信应用程序消息等创建文本消息索引。
可选的,终端可以在收到每条文本消息之后,立即创建对应的文本消息索引。
可选的,终端可以存储收到的文本消息,每隔预设的时间周期创建对应的文本消息索引。所述预设的时间周期可以是5分钟、15分钟、30分钟或60分钟等,预设的时间周期可以根据实际需要设定,本申请对此不作限制。
可选的,终端对接收到的短消息、即时通信类应用程序的消息等,立即创建对应的文本消息索引;对其它类型应用程序的消息,每隔预设的时间周期创建文本消息索引。
在步骤606中,终端将该文本消息索引发送给可穿戴设备,可以在创建文本消息索引完成之后,立即将该文本消息索引发送给可穿戴设备;也可以根据预设的时间周期将该文本消息索引发送给可穿戴设备。预设的时间周期可以根据实际需要设定,本申请对此不作限制。
上述各个步骤中的控制指令、消息通知和文本消息索引的发送,可以通过终端与可穿戴设备之间建立的数据连接进行,此处不再赘述。
本发明实施例,可穿戴设备与终端之间通过蓝牙模块建立数据通道和音频通道,终端可以在可穿戴设备处于手环模式时,根据文本消息创建文本消息索引,将文本消息存储在本地并将文本消息索引发送给可穿戴设备;当可穿戴设备处于耳机模式时,将当前状态通知终端,接收并播放终端发送的由文本消息转换的语音消息,从而克服可穿戴设备屏幕显示能力的不足,方便用户及时查收文本消息的内容。
实施例4
图7为本发明实施例提供的一种可穿戴设备的结构示意图,本发明实施例提供的可穿戴设备可以用于实施上述图3至图6所示的本发明各实施例实现的方法。如图7所示,该可穿戴设备700包括:
确定模块701、通知模块702和接收模块703。
确定模块701,用于确定所述可穿戴设备是否处于耳机模式。
通知模块702,用于当处于耳机模式时,所述可穿戴设备通知终端所述可穿戴设备能够接收语音消息。
接收模块703,用于接收所述终端发送的语音消息,所述语音消息是由所述终端从文本消息转换来的。
进一步的,确定模块701用于通过霍尔传感器确定所述可穿戴设备是否处于耳机模式。
进一步的,可穿戴设备700还包括发送模块704。发送模块704用于向所述终端发送 建立音频通道的请求。接收模块703还用接收所述终端发送的确认建立音频通道的响应。
可选的,发送模块704还用于向所述终端发送建立音频通道的请求和文本消息索引。
进一步的,接收模块703还用于接收所述终端发送的文本消息索引。
本发明实施例,可穿戴设备与终端之间可以建立数据通道和音频通道,当可穿戴设备处于耳机模式时,将当前的状态通知终端,接收并播放终端发送的由文本消息转换的语音消息;当可穿戴设备处于手环模式时,终端根据文本消息创建文本消息索引,并在可穿戴设备处于耳机模式时,根据文本消息索引将文本消息转换成语音消息发送给可穿戴设备,从而克服可穿戴设备屏幕显示能力的不足,方便用户及时查收文本消息的内容。实施例5
图8为本发明实施例提供的一种终端的结构示意图,本发明实施例提供的终端可以用于实施上述图3至图6所示的本发明各实施例实现的方法。如图8所示,该终端800包括:
接收模块801、转换模块802和发送模块803。
接收模块801,用于接收可穿戴设备发送的所述可穿戴设备能够接收语音消息的通知。
转换模块802,用于将文本消息转换为语音消息。
发送模块803,用于将所述语音消息发送给所述可穿戴设备。
进一步的,接收模块801还用于接收所述可穿戴设备发送的建立音频通道的请求。发送模块803还用于将确认建立音频通道的响应发送给所述可穿戴设备。
可选的,接收模块801还用于接收所述可穿戴设备发送的建立音频通道的请求和文本消息索引。
进一步的,发送模块803还用于将文本消息索引发送给所述可穿戴设备。
本发明实施例,终端与可穿戴设备之间可以建立数据通道和音频通道,当可穿戴设备处于耳机模式时,将当前的状态通知终端,终端将文本消息转换为语音消息并发送给可穿戴设备;当可穿戴设备处于手环模式时,终端根据文本消息创建文本消息索引,并在可穿戴设备处于耳机模式时,根据文本消息索引将文本消息转换成语音消息发送给可穿戴设备,从而克服可穿戴设备屏幕显示能力的不足,方便用户及时查收文本消息的内容。
实施例6
图9为本发明实施例提供的一种可穿戴设备的结构示意图,本发明实施例提供的可穿戴设备可以用于实施上述图3至图6所示的本发明各实施例实现的方法。如图9所示,该可穿戴设备900包括:处理器910、蓝牙模块920、输入设备930、显示屏940、存储器950、传感器960和音频电路970。为了便于说明,仅示出了与本发明实施例相关的部分,具体技术细节未揭示的,请参照本发明各实施例及申请文件其他部分。
处理器910可以是图1所示的处理器180,处理器910与蓝牙模块920、输入设备930、显示屏940、存储器950、传感器960和音频电路970通过一条或多条总线连接,用于处理各类数据。
蓝牙模块920可以是图1所示的蓝牙模块116,用于与终端之间建立数据连接,接收和发送消息通知、控制指令和音频数据(包括语音消息),并发送给处理器910处理或者存储在存储器950上。
输入设备930可以是图1所示的输入设备130,输入设备930还可以包括触控按键或物理按键,用于接收控制指令。该控制指令由触摸按键获取的触摸操作触发,或者由按下物理按键触发。该控制指令可以是获取文本消息索引对应的文本消息指令。
显示屏940可以是图1所示的显示屏140。显示屏940可以显示传感器960获取的各种数据,也可以显示其他信息,例如时间、日期、来电信息、文本消息、邮件、新闻和天气信息等内容。
传感器960可以是图1所示的传感器150,可以用于获取用户的运动数据以及穿戴部位的体征数据,从而可以确定可穿戴设备的佩戴状态。
音频电路970可以是图1所示的音频电路160,可以用于解码语音消息,并播放将该语音消息。对语音消息的解码,可以通过处理器910完成,也可由音频电路970自带的音频编码解码芯片完成。音频电路970还可以包括扬声器和麦克风,扬声器可用于播放语音消息以及其它音频信息,麦克风可用于接受音频消息或语音指令。可选的,扬声器还可以包括内置扬声器和外置扬声器,其中,内置扬声器可以在耳机模式下使用,外置扬声器可以在手环模式下使用。
本发明实施例,可穿戴设备与终端之间可以建立数据通道和音频通道,当可穿戴设备处于耳机模式时,将当前的状态通知终端,接收并播放终端发送的由文本消息转换的语音消息;当可穿戴设备处于手环模式时,终端根据文本消息创建文本消息索引,并在可穿戴设备处于耳机模式时,根据文本消息索引将文本消息转换成语音消息发送给可穿戴设备,从而克服可穿戴设备屏幕显示能力的不足,方便用户及时查收文本消息的内容。实施例7
图10为本发明实施例提供的一种终端的结构示意图,本发明实施例提供的终端可以用于实施上述图3至图6所示的本发明各实施例实现的方法。如图10所示,该终端1000包括:处理器1010、蓝牙模块1020、RF电路1030和存储器1040。为了便于说明,仅示出了与本发明实施例相关的部分,具体技术细节未揭示的,请参照本发明各实施例及申请文件其他部分。
处理器1010可以是图1所示的处理器180,处理器1010与蓝牙模块1020、RF电路1030和存储器1040通过一条或多条总线连接,用于处理各类数据。
蓝牙模块1020可以是图1所示的蓝牙模块116,用于与可穿戴设备之间建立数据连接,接收和发送消息通知、控制指令和音频数据(包括语音消息),并发送给处理器1010处理或者存储在存储器1040上。
RF电路1030可以是图1所示的RF电路110,用于从外部无线网络接收文本消息和通话。
本发明实施例,终端与可穿戴设备之间可以建立数据通道和音频通道,当可穿戴设备处于耳机模式时,将当前的状态通知终端,终端将文本消息转换为语音消息并发送给可穿戴设备;当可穿戴设备处于手环模式时,终端根据文本消息创建文本消息索引,并在可穿戴设备处于耳机模式时,根据文本消息索引将文本消息转换成语音消息发送给可穿戴设备,从而克服可穿戴设备屏幕显示能力的不足,方便用户及时查收文本消息的内容。
在上述各个本发明实施例中,可以全部或部分地通过软件、硬件、固件或者其任意 组合来实现。当使用软件实现时,可以全部或部分地以计算机程序产品的形式实现。所述计算机程序产品包括一个或多个计算机指令。在计算机上加载和执行所述计算机程序指令时,全部或部分地产生按照本发明实施例所述的流程或功能。所述计算机可以是通用计算机、专用计算机、计算机网络、或者其他可编程装置。所述计算机指令可以存储在计算机可读存储介质中,或者从一个计算机可读介质向另一个计算机可读介质传输,例如,所述计算机指令可以从一个网站站点、计算机、服务器或数据中心通过有线(例如同轴电缆、光纤、数字用户线(Digital Subscriber Line,DSL))或无线(例如红外、无线、微波等)方式向另一个网站站点、计算机、服务器或数据中心进行传输。所述计算机可读存储介质可以是计算机能够存取的任何可用介质或者是包含一个或多个可用介质集成的服务器、数据中心等数据存储设备。所述可用介质可以是磁性介质(例如,软盘、硬盘、磁带)、光介质(例如,DVD)、或者半导体介质(例如,固态硬盘(Solid State Disk,SSD))等。
本领域技术人员应该可以意识到,在上述一个或多个示例中,本发明所描述的功能可以用硬件、软件、固件或它们的任意组合来实现。当使用软件实现时,可以将这些功能存储在计算机可读介质中或者作为计算机可读介质上的一个或多个指令或代码进行传输。计算机可读介质包括计算机存储介质和通信介质,其中通信介质包括便于从一个地方向另一个地方传送计算机程序的任何介质。存储介质可以是通用或专用计算机能够存取的任何可用介质。
以上所述的具体实施方式,对本发明的目的、技术方案和有益效果进行了进一步详细说明,应当理解的是,以上所述仅为本发明技术方案的较佳实施例而已,并非用于限定本发明的保护范围。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (36)

  1. 一种消息获取方法,其特征在于,所述方法包括:
    可穿戴设备确定所述可穿戴设备是否处于耳机模式;
    当处于耳机模式时,所述可穿戴设备通知终端所述可穿戴设备能够接收语音消息;
    所述可穿戴设备接收所述终端发送的语音消息,所述语音消息是由所述终端从文本消息转换来的。
  2. 根据权利要求1所述的方法,其特征在于,所述可穿戴设备确定是否处于耳机模式包括:
    所述可穿戴设备通过霍尔传感器确定所述可穿戴设备是否处于耳机模式。
  3. 根据权利要求1或2所述的方法,其特征在于,还包括:
    所述可穿戴设备向所述终端发送建立音频通道的请求;
    所述可穿戴设备接收所述终端发送的确认建立音频通道的响应。
  4. 根据权利要求1或2所述的方法,其特征在于,还包括:
    所述可穿戴设备向所述终端发送建立音频通道的请求;
    所述可穿戴设备接收所述终端发送的确认建立音频通道的响应;
    所述可穿戴设备将文本消息索引发送给所述终端。
  5. 根据权利要求4所述的方法,其特征在于,
    所述文本消息是与所述文本消息索引相对应的文本消息。
  6. 根据权利要求1-5任一项所述的方法,其特征在于,
    所述文本消息包括所述终端接收或者预先存储的文本消息。
  7. 根据权利要求1-6任一项所述的方法,其特征在于,所述方法还包括:
    所述可穿戴设备接收所述终端发送的文本消息索引,所述文本消息索引是由所述终端根据所述文本消息创建的。
  8. 根据权利要求1-7任一项所述的方法,其特征在于,
    所述音频通道包括高级音频分发协议A2DP音频通道。
  9. 一种消息获取方法,其特征在于,所述方法包括:
    所述终端接收可穿戴设备发送的所述可穿戴设备能够接收语音消息的通知;
    所述终端将文本消息转换为语音消息;
    所述终端将所述语音消息发送给所述可穿戴设备。
  10. 根据权利要求9所述的方法,其特征在于,
    所述可穿戴设备能够接收语音消息的通知是当所述可穿戴设备确定所述可穿戴设备处于耳机模式时发送的。
  11. 根据权利要求9或10所述的方法,其特征在于,所述方法还包括:
    所述终端接收所述可穿戴设备发送的建立音频通道的请求;
    所述终端将确认建立音频通道的响应发送给所述可穿戴设备。
  12. 根据权利要求9或10所述的方法,其特征在于,还包括:
    所述终端接收所述可穿戴设备发送的建立音频通道的请求;
    所述终端将确认建立音频通道的响应发送给所述可穿戴设备;
    所述终端接收所述可穿戴设备发送的文本消息索引。
  13. 根据权利要求12所述的方法,其特征在于,
    所述文本消息是与所述文本消息索引对应的文本消息。
  14. 根据权利要求9-13任一项所述的方法,其特征在于,
    所述文本消息包括所述终端接收或者预先存储的文本消息。
  15. 根据权利要求9-14任一项所述的方法,其特征在于,所述方法还包括:
    所述终端将文本消息索引发送给所述可穿戴设备,所述文本消息索引是由所述终端根据所述文本消息创建的。
  16. 根据权利要求9-15任一项所述的方法,其特征在于,
    所述音频通道包括高级音频分发协议A2DP音频通道.
  17. 一种可穿戴设备,其特征在于,所述可穿戴设备包括:
    确定模块,用于确定所述可穿戴设备是否处于耳机模式;
    通知模块,用于当处于耳机模式时,所述可穿戴设备通知终端所述可穿戴设备能够接收语音消息;
    接收模块,用于接收所述终端发送的语音消息,所述语音消息是由所述终端从文本消息转换来的。
  18. 根据权利要求17所述的可穿戴设备,其特征在于,
    所述确定模块用于通过霍尔传感器确定所述可穿戴设备是否处于耳机模式。
  19. 根据权利要求17或18所述的可穿戴设备,其特征在于,还包括:
    发送模块,用于向所述终端发送建立音频通道的请求;
    所述接收模块,还用于接收所述终端发送的确认建立音频通道的响应。
  20. 根据权利要求17或18所述的可穿戴设备,其特征在于,还包括:
    发送模块,用于向所述终端发送建立音频通道的请求和文本消息索引;
    所述接收模块,还用于接收所述终端发送的确认建立音频通道的响应。
  21. 根据权利要求20所述的可穿戴设备,其特征在于,
    所述文本消息是与所述文本消息索引相对应的文本消息。
  22. 根据权利要求17-21任一项所述的可穿戴设备,其特征在于,
    所述文本消息包括所述终端接收或者预先存储的文本消息。
  23. 根据权利要求17-22任一项所述的可穿戴设备,其特征在于,所述可穿戴设备还包括:
    所述接收模块,还用于接收所述终端发送的文本消息索引,所述文本消息索引是由所述终端根据所述文本消息创建的。
  24. 根据权利要求17-23任一项所述的可穿戴设备,其特征在于,
    所述音频通道包括高级音频分发协议A2DP音频通道。
  25. 一种终端,其特征在于,所述终端包括:
    接收模块,用于接收可穿戴设备发送的所述可穿戴设备能够接收语音消息的通知;
    转换模块,用于将文本消息转换为语音消息;
    发送模块,用于将所述语音消息发送给所述可穿戴设备。
  26. 根据权利要求25所述的终端,其特征在于,
    所述可穿戴设备能够接收语音消息的通知是当所述可穿戴设备确定所述可穿戴 设备处于耳机模式时发送的。
  27. 根据权利要求25或26所述的终端,其特征在于,所述终端还包括:
    所述接收模块,还用于接收所述可穿戴设备发送的建立音频通道的请求;
    所述发送模块,还用于将确认建立音频通道的响应发送给所述可穿戴设备。
  28. 根据权利要求25或26所述的终端,其特征在于,还包括:
    所述接收模块,还用于接收所述可穿戴设备发送的建立音频通道的请求和文本消息索引;
    所述发送模块,还用于将确认建立音频通道的响应发送给所述可穿戴设备。
  29. 根据权利要求28所述的终端,其特征在于,
    所述文本消息是与所述文本消息索引对应的文本消息。
  30. 根据权利要求25-29任一项所述的终端,其特征在于,
    所述文本消息包括所述终端接收或者预先存储的文本消息。
  31. 根据权利要求25-30任一项所述的终端,其特征在于,所述终端还包括:
    所述发送模块,用于将文本消息索引发送给所述可穿戴设备,所述文本消息索引是由所述终端根据所述文本消息创建的。
  32. 根据权利要求25-31任一项所述的终端,其特征在于,
    所述音频通道包括高级音频分发协议A2DP音频通道.
  33. 一种可穿戴设备,其特征在于,所述可穿戴设备包括一个或多个处理器、存储器、发送器、接收器以及一个或多个程序,所述一个或多个程序存储在存储器中并被配置为被一个或多个处理器执行,所述一个或多个程序包括用于执行如权利要求1-8任一项所述的方法的指令。
  34. 一种终端,其特征在于,所述可穿戴设备包括一个或多个处理器、存储器、发送器、接收器以及一个或多个程序,所述一个或多个程序存储在存储器中并被配置为被一个或多个处理器执行,所述一个或多个程序包括用于执行如权利要求9-16任一项所述的方法的指令。
  35. 一种计算机可读存储介质,包括指令,当其在计算机上运行时,使得计算机执行如权利要求1-16任一项所述的方法。
  36. 一种包含指令的计算机程序产品,当其在计算机上运行时,使得计算机执行如权利要求1-16任一项所述的方法。
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