WO2019024719A1 - 对讲机、电子设备、对讲信息的传输方法及信息传输方法 - Google Patents

对讲机、电子设备、对讲信息的传输方法及信息传输方法 Download PDF

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Publication number
WO2019024719A1
WO2019024719A1 PCT/CN2018/096844 CN2018096844W WO2019024719A1 WO 2019024719 A1 WO2019024719 A1 WO 2019024719A1 CN 2018096844 W CN2018096844 W CN 2018096844W WO 2019024719 A1 WO2019024719 A1 WO 2019024719A1
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WIPO (PCT)
Prior art keywords
signal
module
walkie
talkie
interconnection
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PCT/CN2018/096844
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English (en)
French (fr)
Inventor
孙慧
Original Assignee
深圳市威泰能源有限公司
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Priority to US16/635,004 priority Critical patent/US11012551B2/en
Publication of WO2019024719A1 publication Critical patent/WO2019024719A1/zh

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    • 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
    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10LSPEECH ANALYSIS OR SYNTHESIS; SPEECH RECOGNITION; SPEECH OR VOICE PROCESSING; SPEECH OR AUDIO CODING OR DECODING
    • G10L15/00Speech recognition
    • G10L15/08Speech classification or search
    • G10L15/18Speech classification or search using natural language modelling
    • G10L15/1822Parsing for meaning understanding
    • 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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B17/00Monitoring; Testing
    • H04B17/30Monitoring; Testing of propagation channels
    • H04B17/309Measuring or estimating channel quality parameters
    • H04B17/318Received signal strength
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L69/00Network arrangements, protocols or services independent of the application payload and not provided for in the other groups of this subclass
    • H04L69/14Multichannel or multilink protocols
    • 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
    • H04M1/72418User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality for supporting emergency services
    • H04M1/72424User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality for supporting emergency services with manual activation of emergency-service functions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q5/00Selecting arrangements wherein two or more subscriber stations are connected by the same line to the exchange
    • H04Q5/24Selecting arrangements wherein two or more subscriber stations are connected by the same line to the exchange for two-party-line systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/06Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]; Services to user groups; One-way selective calling services
    • H04W4/10Push-to-Talk [PTT] or Push-On-Call services
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/90Services for handling of emergency or hazardous situations, e.g. earthquake and tsunami warning systems [ETWS]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/253Telephone sets using digital voice transmission
    • H04M1/2535Telephone sets using digital voice transmission adapted for voice communication over an Internet Protocol [IP] network
    • 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
    • H04M1/725Cordless telephones
    • H04M1/72502Cordless telephones with one base station connected to a single line
    • H04M1/72505Radio link set-up procedures
    • H04M1/72513On hold, intercom or transfer communication modes
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2215/00Metering arrangements; Time controlling arrangements; Time indicating arrangements
    • H04M2215/20Technology dependant metering
    • H04M2215/2093Push to talk
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2213/00Indexing scheme relating to selecting arrangements in general and for multiplex systems
    • H04Q2213/13098Mobile subscriber

Definitions

  • the present disclosure relates to the field of wireless transmission technologies, for example, to a walkie-talkie, an electronic device, a method for transmitting intercom information, and an information transmission method.
  • the walkie-talkie is a two-way mobile communication tool. It can talk to each other without any wireless communication network support, and there is no extra call charge. It is suitable for relatively fixed and needs to talk frequently with each other. Application scenario.
  • the communication parameters such as the communication frequency, channel and volume of the walkie-talkie can be set.
  • the walkie-talkie is set to a certain communication channel or frequency, press the PUSH TO TALK (PTT) button. It is possible to implement intercom with other walkie-talkies on the same communication channel or frequency.
  • the way to realize long-distance information interaction between users is usually to use a mobile terminal such as a mobile phone.
  • a mobile terminal such as a mobile phone.
  • communication using a mobile phone or the like needs to be performed to a mobile communication network.
  • the operator pays a certain amount of communication fees.
  • the coverage of mobile communication networks is often insufficient, resulting in mobile phones that are no longer suitable for users in areas where there is no mobile communication network signal coverage.
  • the present invention provides a walkie-talkie, an electronic device, a method for transmitting intercom information, and an information transmission method, to solve the problem of saving communication costs of a mobile communication terminal such as a mobile phone in an application scenario covered by a mobile communication network; or in a mobile communication network without a mobile communication network In the covered application scenario, mobile communication interruptions such as mobile phones cannot provide technical problems for users to provide communication services.
  • the embodiment of the present application provides a walkie-talkie, and the walkie-talkie includes:
  • An interconnection communication module configured to establish short-range communication with the interconnection terminal
  • a radio frequency module configured to establish radio frequency communication with other interphones
  • a processor connected to the interconnect communication module and the radio frequency module by using the internal communication interface; the processor is configured to:
  • the embodiment of the present application further provides a method for transmitting intercom information, including:
  • An embodiment of the present application provides an electronic device, including:
  • An interconnection communication module configured to establish short-range communication with the interconnection terminal
  • a radio frequency module configured to establish radio frequency communication with other electronic devices
  • a processor connected to the interconnect communication module and the radio frequency module by using the internal communication interface; the processor is configured to:
  • the embodiment of the present application further provides an information transmission method, which is applied to a first device, where the first device includes an interconnection communication module and a radio frequency module, and the method includes:
  • FIG. 1A is a schematic structural diagram of a walkie-talkie in the first embodiment of the present application.
  • 1B is a schematic diagram of an application scenario of a walkie-talkie in the first embodiment of the present application
  • 1C is a schematic diagram of an application scenario of multiple walkie-talkies in the first embodiment of the present application
  • 1D is a schematic structural diagram of another walkie-talkie in the first embodiment of the present application.
  • FIG. 2A is a schematic structural diagram of a walkie-talkie in Embodiment 2 of the present application.
  • FIG. 2B is a schematic diagram of an application scenario of a walkie-talkie in Embodiment 2 of the present application;
  • 3A is a schematic structural diagram of a walkie-talkie in Embodiment 3 of the present application.
  • 3B is a schematic diagram of an application scenario of a walkie-talkie in Embodiment 3 of the present application;
  • 3C is a schematic diagram of a plurality of walkie-talkies forming a wireless radio frequency local area network according to Embodiment 3 of the present application;
  • FIG. 4A is a flowchart of a method for transmitting intercom information applied to a transmitting end according to Embodiment 4 of the present application;
  • FIG. 4B is a flow chart of a method for transmitting intercom information applied to a receiving end according to Embodiment 4 of the present application;
  • FIG. 4C is a flowchart of still another method for transmitting intercom information applied to a receiving end according to Embodiment 4 of the present application;
  • 4D is a flowchart of another method for transmitting intercom information applied to a receiving end according to Embodiment 4 of the present application;
  • 5A is a flowchart of a method for transmitting intercom information applied to a transmitting end according to Embodiment 5 of the present application;
  • FIG. 5B is a flowchart of a method for transmitting intercom information applied to a receiving end according to Embodiment 5 of the present application.
  • the embodiment of the present application provides an electronic device.
  • the electronic device provided by the embodiment of the present application includes, but is not limited to, a walkie-talkie.
  • the electronic device provided by the embodiment of the present application may also be another device.
  • the embodiment of the present application provides an information transmission method.
  • the following embodiment uses the intercom information transmission method as an example for description.
  • the information transmission method provided by the embodiment of the present application includes, but is not limited to, an intercom information transmission method.
  • the walkie-talkie 100 includes an intercommunication module 110, a radio frequency module 120, an internal communication interface 130, and a processor 140.
  • the interconnection communication module 110 is configured to establish short-range communication with the interconnection terminal 400;
  • the radio frequency module 120 is configured to establish radio frequency communication with other intercoms 100';
  • the radio frequency module 120 is connected. among them:
  • the processor 140 When the processor 140 is applied to the transmitting intercom 100, it is configured to perform the following method steps S101 to S103.
  • the first signal transmitted by the interconnection terminal 400 to the other intercom 100' is received by the interconnection communication module 110.
  • the first signal is processed to obtain a second signal.
  • the second signal is transmitted to the other walkie-talkie 100' via the radio frequency module 120.
  • the processor 140 When the processor 140 is applied to receive the measured walkie-talkie 100, it is configured to also perform the following method steps S111 to S113.
  • the third signal sent by the other walkie-talkie 100' to the interconnect terminal 400 is received by the radio frequency module 120.
  • the third signal is processed to obtain a fourth signal.
  • the fourth signal is transmitted to the interconnection terminal 400 through the interconnection communication module 110.
  • the interconnection communication module 110 can be a Bluetooth communication module, a Wireless Fidelity (WiFi) communication module, an infrared communication module, or a Near Field Communication (NFC) connection module. As long as the interconnection communication module 110 can perform short-range wireless communication with various interconnection terminals 400. The present application does not limit the interconnection communication module 110. However, for convenience of subsequent description, the interconnection communication module 110 is exemplarily described in the following by taking the Bluetooth communication module as an example.
  • WiFi Wireless Fidelity
  • NFC Near Field Communication
  • the internal communication interface 130 can be, for example, a Serial Peripheral Interface (SPI), an Inter-Integrated Circuit (I2C), or a Universal Asynchronous Receiver/Transmitter (UART). Common inter-chip communication interface.
  • SPI Serial Peripheral Interface
  • I2C Inter-Integrated Circuit
  • UART Universal Asynchronous Receiver/Transmitter
  • Common inter-chip communication interface when the communication interface 130 (such as the I2C interface) is determined, the preset communication protocol (ie, the I2C bus protocol) is determined accordingly.
  • the preset communication protocol ie, the I2C bus protocol
  • the present application does not limit the type and specification of the communication interface 130. However, for the convenience of the following description, the internal communication interface 130 is exemplarily described in the following by taking the I2C interface as an example.
  • the application scenario of the walkie-talkie 100 includes: a plurality of walkie-talkies 100 as shown in FIG. 1A, and an interconnect terminal 400 corresponding thereto.
  • the interconnect terminal 400 and the walkie-talkie 100 are used together. Based on the user's usage habits, the intercommunication between the interconnect terminals 400 can be implemented by using the interconnect terminal 400, and the walkie-talkie 100 can be carried around, for example, can be put into a backpack.
  • the interconnection terminal 400 can be an intelligent terminal such as a mobile phone.
  • the present application does not limit the interconnection terminal 400. However, for the convenience of the following description, the interconnection terminal 400 is exemplarily described in the following by using the mobile phone as an example.
  • an application may be pre-developed for the mobile terminal (ie, the interconnection terminal 400), and then the APP is installed in the mobile phone in advance to provide a friendly user operation interface for use, control, and Configure the walkie-talkie 100.
  • the user can send a signal or view the received wireless signal or information through the APP on the mobile phone terminal.
  • a pair is implemented between two walkie-talkies (such as walkie-talkies 100A and 100B).
  • the speaking function is described as an example, and the walkie-talkies 100A and 100B are in the same channel or frequency.
  • the user A sends a signal to be sent through the APP at the mobile phone 400A end, and the processor 140 in the walkie-talkie 100A receives the to-be-transmitted signal, that is, the first signal, through the Bluetooth communication module (ie, the interconnection communication module 110).
  • the processor 140 processes the first signal to obtain a second signal, and transmits the second signal to the radio frequency module 120 through the I2C interface (corresponding to the internal communication interface 130), and the radio frequency module 120 receives the second signal and passes the radio frequency.
  • the network sends it to the walkie-talkie 100B.
  • the processor 140 of the walkie-talkie 100B receives the wireless signal transmitted by the walkie-talkie 100A and directed to the mobile phone 400B through the wireless radio frequency module 120, that is, the third signal, and the processor 140 processes the third signal to obtain a fourth signal, and passes the fourth signal.
  • the I2C interface is transmitted to the Bluetooth communication module. After receiving the fourth signal, the Bluetooth communication module sends the fourth signal to the mobile phone 400B through the Bluetooth wireless network, and the user B can view the received fourth signal in the APP in the mobile phone 400B.
  • the walkie-talkie 100A and the walkie-talkie 100B are in the same channel or frequency mobile phone 400A and mobile phone 400B.
  • the intercom function can also be implemented by the walkie-talkie 100A and the walkie-talkie 100B provided in this embodiment, and the communication method is the same as above.
  • any two of the plurality of walkie-talkies 100 can implement the intercom function, and can also implement the group communication function.
  • FIG. 1C a group of four walkie-talkies is taken as an example, wherein the walkie-talkies 100A, 100B, 100C, and 100D are all within the effective communication distance of each other, and are in the same channel or frequency.
  • the user A uses the mobile phone 400A to transmit information to the group through the walkie-talkie 100A (the information may be simple voice intercom information, or may be text, picture, positioning information or video multimedia information), and the sending information is not specifying a walkie-talkie 100.
  • the walkie-talkies 100B, 100C and 100D can receive the information, correspondingly, users B, C, and D can be in the mobile phone 400B, 400C and 400D respectively View this information.
  • users B, C, and D can also send information to other users in the group in the same manner as user A, and the remaining users receive the information on the corresponding mobile phone, thereby realizing communication between groups and Data exchange.
  • the mobile phone 400A and the mobile phone 400B can implement an intercom function similar to the conventional walkie-talkie through the walkie-talkie 100A and the walkie-talkie 100B.
  • the walkie-talkie 100A and the walkie-talkie 100B can enable the mobile phone 400A and the mobile phone 400B to implement the intercom function to perform information interaction.
  • the technical problem that the mobile phone 400A and the mobile phone 400B cannot provide the wireless communication service for the user A and the user B in the application scenario without the coverage of the mobile communication network is solved; in the application scenario with the coverage of the mobile communication network, the user A and the user B uses the mobile phone 400A and the mobile phone 400B to perform information interaction by the walkie-talkie 100A and the walkie-talkie 100B, for example, when a certain group (for example, users A, B, C, and D) needs to communicate frequently and widely with each other. Can save a certain amount of wireless communication costs.
  • a certain group for example, users A, B, C, and D
  • the types of the first signal and the third signal include: voice, text, geographic location, image, or video.
  • the voice, text, geographic location, image or video can be sent via the APP installed in the mobile phones 400A and 400B, either as an instant entry or in advance in the mobile phones 400A and 400B.
  • the geographical location may be map information, and when encountering a danger, sending map information for seeking help can effectively improve the success rate of the rescue.
  • the walkie-talkie 100 provided in this embodiment further has a data transmission function.
  • the pre-developed mobile phone APP can also be installed in the walkie-talkie 100.
  • the information data received by the user A and the user B through the information exchange between the walkie-talkie 100A and the walkie-talkie 100B can be temporarily stored in the mobile phone 100A and the mobile phone 100B.
  • the mobile phone 400A and the mobile phone 400B can access the mobile communication network, and the user A and the user B can synchronize the information data stored in the mobile phone 400A and the mobile phone 400B to the network server corresponding to the APP.
  • the mobile phone communication coverage may be performed before the walkie-talkie 100A or the walkie-talkie 100B end, or the mobile phone 400A end or the mobile phone 400B end is viewed through the APP. Synchronize to the information interaction record in the web server.
  • the processor 140 is also configured to:
  • the system parameters of the walkie-talkie 100 are adjusted according to preset adjustment rules, wherein the system parameters include at least one of the following: country, language, transmission frequency, receiving frequency, channel, and transmitting continuous speech coding squelch system (Continuous Tone) -Coded Squelch System, CTC), Receive CTC, Volume, and Squelch Detector (SQ).
  • system parameters include at least one of the following: country, language, transmission frequency, receiving frequency, channel, and transmitting continuous speech coding squelch system (Continuous Tone) -Coded Squelch System, CTC), Receive CTC, Volume, and Squelch Detector (SQ).
  • the user A can set the above parameters of the walkie-talkie 100A through the APP installed in the mobile phone 100A, wherein the user A sends a related set command signal through the APP installed in the mobile phone 100A, and the command signal is transmitted to the walkie-talkie 100A through the Bluetooth communication module.
  • the processor 140 parses the received command signal, i.e., the seventh signal, and adjusts the system settings of the walkie-talkie 100A.
  • the method for transmitting the intercom and the intercom information provided by the embodiment and the method for adjusting the system setting of the intercom 100A or 100B by using the APP installed in the mobile phone 400A or 400B, compared with the system setting of the push-to-talk radio 100A or 100B. More intuitive and simple.
  • the unified communication protocol is adopted between the walkie-talkie 100 and the various functions implemented between the walkie-talkie 100 and the interconnect terminal 400, that is, the data transmitted between the walkie-talkie 100 and the data transmitted between the walkie-talkie 100 and the interconnect terminal 400 are uniformly encapsulated.
  • Format, the defined data packet encapsulation format is shown in Table 1.
  • Type indicates the type of the packet
  • Length indicates the packet length
  • Data is the content of the packet
  • Verify indicates the check code.
  • Type occupies 1 byte
  • types include: country setting, language setting, transmission frequency setting, receiving frequency setting, channel setting, transmitting CTC setting, receiving CTC setting, volume setting, SQ setting, user ID, text information, and geographic information.
  • Etc. Length occupies 2 bytes
  • Verify takes 1 byte.
  • FIG. 1D is a schematic structural diagram of another walkie-talkie in the first embodiment of the present application.
  • the walkie-talkie 100 includes an interconnect communication module 110, a radio frequency module 120, an internal communication interface 130, and a processor 140.
  • the walkie-talkie 100 further includes a help button 150 and a help function module 160.
  • the help button 150 is configured to generate a pressing operation signal in response to a pressing operation of the user, and send the pressing operation signal to the interconnection terminal 400 through the interconnection communication module 110, so that the interconnection terminal 400 recognizes the pressing operation.
  • Signaling and generating a distress signal the help function module 160 is configured to receive a distress signal from the interconnect terminal 400 through the interconnect communication module 110; send the distress signal to the other interphone through the radio frequency module, and receive A distress signal from the other walkie-talkie.
  • the help signal may be a text message, and the preset distance may be within an effective communication distance between the walkie-talkie and other walkie-talkies.
  • the walkie-talkie adds a Moss code for SOS physical button to the device, it can send a distress signal to all nearby devices.
  • the pressing operation signal is generated by the device button, and the pressing operation signal is wirelessly transmitted to the mobile phone, and the mobile phone receives the pressing operation signal, recognizes the pressing operation signal, generates a distress signal (text), and sends a distress signal to the intercom, and then sends the message to the vicinity through the intercom. device of.
  • the embodiment of the present invention provides a walkie-talkie and a method for transmitting intercom information, wherein the walkie-talkie includes: an interconnect communication module, a processor, an internal communication interface, and a radio frequency module, so that the walkie-talkie can be established with other interconnected terminals through the interconnect communication module.
  • Short-range communication connection; wireless radio connection can be established with other radios through the radio frequency module.
  • the processor Processing, by the processor, the to-be-transmitted signal sent by the interconnecting terminal, and transmitting the processing signal to the other radio through the radio frequency module; or, passing the radio frequency Receiving, by the other transceiver, the signal to be received directed to the interconnection terminal is processed, and the received processing signal is sent to the interconnection terminal through the interconnection communication module, thereby realizing the use of the walkie-talkie, which can make more Between interconnected terminals (such as mobile terminals), it is possible to implement information interaction only by traditional walkie-talkie intercom, without relying on the mobile communication network, to reduce the communication cost of the mobile phone, and to have no common mobile communication network signals at the interconnected terminal. In the case of the wireless radio connection between the walkie-talkie and the other walkie-talkie, the information exchange between the interconnected terminal and other interconnected terminals is realized.
  • the walkie-talkie 200 provided in this embodiment further includes an audio processing module 250.
  • the audio processing module 250 is connected to the wireless radio frequency module 220 and the interconnect communication module 210 through the internal communication interface 230.
  • the processor 240 is further configured to perform the following steps:
  • the audio processing module 250 is controlled to perform audio processing on the third signal to obtain a fourth signal.
  • the processor 240 When the processor 240 is applied to the transmitting walkie-talkie 200, it is configured to perform the following steps S201-S203.
  • the first signal transmitted by the interconnection terminal 400 to the other walkie-talkie 200' is received by the interconnection communication module 210.
  • the audio processing module 250 is controlled to perform audio processing on the first signal to obtain a second signal.
  • the second signal is transmitted to the other walkie-talkie 200' through the radio frequency module 220.
  • the processor 240 When the processor 240 is applied to receive the measured walkie-talkie 200, it is configured to also perform the following method steps S211-S213.
  • the third signal sent by the other walkie-talkie 200' to the interconnect terminal 400 is received by the radio frequency module 220.
  • the audio processing module 250 is controlled to perform audio processing on the third signal to obtain a fourth signal.
  • the fourth signal is transmitted to the interconnection terminal 400 through the interconnection communication module 210.
  • the walkie-talkie 200A and the walkie-talkie 200B are in the same environment.
  • user A uses mobile phone 400A to send a signal to be transmitted through APP, and if processor 240 in walkie-talkie 200A determines the received signal to be transmitted, that is, the type of the first signal is voice, control audio processing module 250 processes the first a signal.
  • the audio processing module 250 processes the first signal to obtain a second signal, and transmits the second signal to the radio frequency module 220 through the I2C interface (corresponding to the internal communication interface 230), and the radio frequency module 220 receives the second signal and passes the wireless signal.
  • the radio network sends it to the walkie-talkie 200B.
  • the control audio processing module 250 processes the third signal.
  • the audio processing module 250 processes the third signal to obtain a fourth signal, and transmits the fourth signal to the Bluetooth communication module through the I2C interface.
  • the Bluetooth communication module sends the fourth signal to the mobile phone 400B through the Bluetooth wireless network. User B can view the received voice signal in the APP of mobile phone 400B.
  • the processor of the mobile phone 400B can acquire the rights of the speaker and the sound collector, and after receiving the fourth signal, can be in the state of being turned off or locked.
  • the voice content carried by the fourth signal is played in real time, and after the voice playback ends, the user voice is collected in real time to achieve real-time voice and real-time intercom effect.
  • the processor of the mobile phone 400B can display the prompt box of the voice message in real time in the state of being turned off or locked.
  • the mobile phone interface and after the end of the voice playback, a reply button or a reply box is provided for the user to make a voice reply or a text reply.
  • the user can perform voice playback and reply operations in a state where the mobile phone 400B is off or locked.
  • the user may perform an unlocking operation and then open the APP to play the voice and reply.
  • the present application does not limit it.
  • the walkie-talkie 200 further includes:
  • a power module configured to supply power to a plurality of modules included in the walkie-talkie 200;
  • the power module further includes an external power supply interface, and is configured to supply power to other portable devices.
  • the power module in the walkie-talkie 200 provided in this embodiment can charge the lithium battery in the walkie-talkie 200, and can also boost the voltage of the lithium battery to 5V, and provide an external power supply interface to output 5V voltage for charging other portable devices, and Provides functions such as undervoltage, overcurrent, overtemperature, and short circuit protection. For example, it can replace other charging treasures to charge mobile terminals such as mobile phone 400A or 400B.
  • the walkie-talkie 300 provided in this embodiment further includes a relay module 360.
  • the relay module 360 is connected to the radio frequency module 320 through the internal communication interface 330.
  • the processor 340 is also configured to perform the following steps.
  • the relay module 360 is controlled to perform relay processing on the fifth signal to obtain a sixth signal, and pass the radio frequency module 320.
  • the sixth signal is sent to the other walkie-talkie 300B.
  • the processor 340 When the processor 340 is applied to the walkie-talkie 300 serving as a relay station, it is configured to perform the following steps S301 and S302.
  • the relay module 360 is controlled to perform relay processing on the fifth signal to obtain a sixth signal.
  • the sixth signal is sent to the other intercom 300B through the radio frequency module 320.
  • the effective communication distance of radio frequency signals transmitted through the walkie-talkie 300 is about 3 kilometers, which is shorter in cities with more buildings. If the radio frequency signal is forwarded through the relay station, the effective communication distance of the intercom 300 can be increased.
  • the walkie-talkie 300A automatically relays a signal to the walkie-talkie 300B through the walkie-talkie 300C.
  • the walkie-talkie 300A and the walkie-talkie 300B are not in the effective communication distance of each other, and the walkie-talkie 300C is effective in the walkie-talkie 300A and the walkie-talkie 300B.
  • the walkie-talkies 300A, 300B, and 300C are in the same channel or frequency.
  • Any one of the walkie-talkies 300 provided in this embodiment can implement a relay function.
  • Each of the walkie-talkies 300 has a dedicated user identification (ID) number. If the signal sent by the walkie-talkie 300 is received by a certain walkie-talkie 300A, the data packet of the signal is marked with the ID number of the designated walkie-talkie 300A. Only the walkie-talkie 300A corresponding to the ID number can obtain the content of the data packet, and the remaining walkie-talkies The packet can be received (for example, 300B), but the content of the packet cannot be obtained because the ID number does not match. Thereby, the confidentiality of the transmitted signal can be achieved.
  • ID user identification
  • the walkie-talkie 300 sends a signal in the form of a broadcast, and the data packet does not contain any walkie-talkie ID number, the walkie-talkie (for example, the walkie-talkie 300A and the walkie-talkie 300B) within the effective communication distance can acquire the content of the data packet.
  • the walkie-talkie for example, the walkie-talkie 300A and the walkie-talkie 300B
  • the user A sends a signal to be transmitted to the walkie-talkie 300B through the APP at the mobile phone 400A, that is, the first signal, and the walkie-talkie 300A transmits the second signal obtained by processing the first signal to the walkie-talkie 300B through the wireless radio frequency module 320, because the walkie-talkie 300B is not in the walkie-talkie 300A.
  • the walkie-talkie 300A does not receive a return message indicating that the walkie-talkie 300B has successfully received the signal.
  • the walkie-talkie 300A will again transmit the second signal through the radio frequency module 320 and request relay.
  • the walkie-talkie within the effective communication distance of the walkie-talkie 300A can receive the relay request, and the walkie-talkie 300C is exemplified.
  • the walkie-talkie 300C receives the signal sent by the walkie-talkie 300A through its wireless radio frequency module 320. If the processor 340 determines that the received signal is transmitted by the walkie-talkie 300A and points to the to-be-relayed signal of the walkie-talkie 300B, that is, the fifth signal, the control relay module is controlled. 360 processes the fifth signal. The relay module 360 of the walkie-talkie 300C relays the fifth signal received by the radio frequency module 320 to obtain a sixth signal, and sends the sixth signal through the radio frequency module 320.
  • the walkie-talkie 300B receives the signal relayed by the walkie-talkie 300C through the wireless radio frequency module 320, that is, the third signal, and the processor 340 sends the fourth signal obtained by processing the third signal to the mobile phone 400B through the Bluetooth communication module, and the user B can be in the mobile phone.
  • the received fourth signal is viewed in the APP of the 400B end.
  • the intercom 300A may ask whether the intercom 300C is available. If the intercom 300C is available, the intercom 300C is designated to be relayed. If the intercom 300C is not available. If it is empty, then another intercom is asked; or more than one intercom can be relayed, the intercom 300B recognizes the same data packet signal, and only one of them is selected for reception, and the remaining data packets are discarded.
  • the former inquiry method can avoid waste of radio frequency network resources.
  • the mobile phone 400A and the 400B can also perform automatic relay forwarding through the above-mentioned walkie-talkie to implement the intercom function, and the method is the same as above.
  • the walkie-talkie provided by the embodiment has a relay function, and the walkie-talkies 300A and 300B that are not within the effective communication distance of each other can automatically perform relay signal forwarding through the walkie-talkie 300C, thereby overcoming the fact that the traditional walkie-talkie must be carried out through the relay station.
  • the shortcomings have provided convenience for the walkie-talkie users to remove the restrictions imposed by the repeater.
  • multiple walkie-talkies 300 are set on the same channel or frequency, and multiple walkie-talkies 300 can form a wireless radio frequency local area network to realize arbitrary exchange of data between the networks.
  • the data exchange method may be that the two walkie-talkies 300 within the effective communication distance directly exchange data, or two walkie-talkies 300 that are not within the effective communication distance are relayed and forwarded by the third walkie-talkie 300 for data exchange.
  • the walkie-talkies 300A, 300B, 300C, 300D, 300E, 300F, 300G, 300H, and 300I are set in the same manner by the mobile phone APPs respectively matched with them.
  • a channel or frequency is set in the same manner by the mobile phone APPs respectively matched with them.
  • the signal of the walkie-talkie 300A can be directly transmitted to the walkie-talkie 300B, 300D or 300E.
  • the signal of the walkie-talkie 300A can be relayed to the walkie-talkie 300C through the walkie-talkie 300B, 300E.
  • the walkie-talkie 300A is relayed by the walkie-talkie 300B, it is first checked whether the walkie-talkie 300B is available. If the walkie-talkie 300B is available, the signal is transmitted to the walkie-talkie 300C. If the walkie-talkie 300B is not empty, the walkie-talkie 300A should check whether the nearby walkie-talkie 300E is available. If the walkie-talkie 300E is available, the walkie-talkie 300E relays the data to the walkie-talkie 300C. Similarly, the walkie-talkie 300C can be relayed to the walkie-talkie 300B, 300E. Walkie-talkie 300A.
  • the walkie-talkie 300B can transmit the signal to the walkie-talkie 300G through the walkie-talkie 300D, 300E, or transmit the signal to the walkie-talkie 300H, 300F, 300I through the walkie-talkie 300E, so that the signal of the walkie-talkie 300A can be transmitted to any of the other 8 walkie-talkies. .
  • the signal of the walkie-talkie 300D can be directly transmitted to the walkie-talkies 300A, 300G, 300B, 300E and 300H; or can be transmitted to the walkie-talkie 300C, 300F or 300I through the walkie-talkie 300B, 300E or 300H relay, so that the signal of the walkie-talkie 300D can be transmitted. Go to any of the other 8 walkie-talkies.
  • walkie-talkies 300A, 300D Similar to the walkie-talkies 300A, 300D, other devices can also implement any exchange of signals within the network.
  • the walkie-talkie 300 provided in this embodiment has a self-relay function, and a plurality of walkie-talkies 300 can form a wireless radio frequency local area network.
  • the walkie-talkie 300 can realize the intercom function to perform information interaction.
  • the plurality of walkie-talkies 300 form a wireless radio frequency local area network, it is more for a specific user group. Frequent and wide-ranging information interaction provides great convenience; even when there is coverage of a mobile communication network, information exchange between a specific user group using a radio frequency local area network composed of multiple walkie-talkies 300 can save a certain wireless communication cost.
  • This embodiment is applicable to an application scenario in which information interaction is implemented between the interconnection terminals without the coverage of the mobile network.
  • the method may be implemented by the walkie-talkie provided in the embodiment of the present application, and may be deployed in hardware and software in the walkie-talkie. At least one of them is implemented.
  • the method for transmitting the intercom information applied to the transmitting end includes the following steps S401 to S403.
  • the first signal is processed to obtain a second signal.
  • the second signal is transmitted to the other walkie-talkie 200' through the radio frequency module 220.
  • transmitting the second signal to the other intercom 200' via the radio frequency module 220 includes transmitting the second signal to the other intercom 200' in an analog communication mode or a digital communication mode.
  • the method for transmitting the intercom information applied to the receiving end includes the following steps S411 to S413.
  • the third signal sent by the other walkie-talkie 200' to the interconnect terminal 400 is received by the radio frequency module 220.
  • the third signal is processed to obtain a fourth signal.
  • the fourth signal is transmitted to the interconnection terminal 400 through the interconnection communication module 210.
  • the interconnection terminal 400 establishes a short-distance communication connection with the interconnection communication module 210 in advance.
  • the method for transmitting the intercom information enables the mobile phone 400A and the mobile phone 400B to implement the intercom function similar to the intercom 200A and the intercom 200B.
  • the user A and the user B cannot use the mobile phone 400A and the mobile phone 400B to perform remote information exchange.
  • the mobile phone 400A and the mobile phone 400B can implement the intercom function to perform information interaction.
  • the technical problem that the mobile phone 400A and the mobile phone 400B cannot provide the wireless communication service for the user A and the user B in the application scenario without the coverage of the mobile communication network is solved; in the application scenario with the coverage of the mobile communication network, the user A and the user
  • the information exchange between the walkie-talkie 200A and the walkie-talkie 200B is performed between B, for example, when a certain group needs frequent and wide-range communication with each other, a certain wireless communication fee can be saved.
  • the types of the first signal and the third signal include: voice, text, geographic location, image, or video.
  • the interconnection communication module 210 includes at least one of the following: a Bluetooth communication module, a wifi communication module, an infrared communication module, and a short-range wireless communication NFC connection module.
  • the method may further include steps S414 and S415.
  • the signal strength of the third signal is sent to the interconnect terminal 400 through the interconnect communication module 210, and displayed, so that the interconnect terminal 400 uses a compass to detect the signal strength according to the third signal.
  • the direction of emission of the third signal is sent to the interconnect terminal 400 through the interconnect communication module 210, and displayed, so that the interconnect terminal 400 uses a compass to detect the signal strength according to the third signal. The direction of emission of the third signal.
  • the walkie-talkie and the intercommunication information transmission method provided by the embodiment can realize signal recognition, the other party transmits a signal, can identify the signal strength, and transmit the signal to the mobile phone, display the mobile phone through the APP, and use the mobile phone compass to detect the APP.
  • This embodiment is also applicable to the case where the radio frequency module 220 is set to multi-channel communication.
  • the method for transmitting intercom information applied to the receiving end provided by this embodiment further includes the following steps S421 to S422.
  • the intercom and the intercommunication information transmission method provided by the embodiment adopt multi-channel communication, and the device (interphone) can simultaneously receive multiple signals, and in the communication process between the device and one of the devices, the signals transmitted by other devices can be received and saved. Transfer it to your phone. Or, when multiple device groups communicate, they can receive information at the same time, avoiding the situation that a single channel can only receive information of one of the devices.
  • step S402 in the fourth embodiment the step of processing the first signal to obtain the second signal may be: if the type of the first signal is determined to be voice, then the audio processing is controlled.
  • the module performs audio processing on the first signal to obtain the second signal.
  • the step S412 in the fourth embodiment may be: if it is determined that the type of the third signal is voice, controlling the audio processing module to perform audio on the third signal Processing to obtain a fourth signal.
  • the method for transmitting the intercom information applied to the transmitting end includes the following steps S501 to S503.
  • the first signal transmitted by the interconnection terminal 400 to the other walkie-talkie 200' is received by the interconnection communication module 210.
  • the audio processing module 250 is controlled to perform audio processing on the first signal to obtain a second signal.
  • the second signal is transmitted to the other walkie-talkie 200' via the radio frequency module 220.
  • the method for transmitting the intercom information applied to the receiving end includes the following steps S511 to S513.
  • the third signal sent by the other walkie-talkie 200' to the interconnect terminal 400 is received by the radio frequency module 210.
  • the audio processing module 250 is controlled to perform audio processing on the third signal to obtain a fourth signal.
  • the fourth signal is transmitted to the interconnection terminal 400 through the interconnection communication module 210.
  • the method for transmitting intercom information further includes the following steps:
  • the relay module 360 is controlled to perform relay processing on the fifth signal to obtain a sixth signal. And transmitting the sixth signal to the other walkie-talkie 300B through the wireless radio frequency module 320.
  • the method for transmitting intercom information further includes the following steps:
  • the seventh signal sent by the interconnect terminal 400 to the walkie-talkie 100 is received;
  • the system parameters of the walkie-talkie 100 Adjusting, according to the analysis result, the system parameters of the walkie-talkie 100 according to a preset adjustment rule, where the system parameter includes at least one of the following: country, language, transmission frequency, receiving frequency, channel, transmitting CTC, receiving CTC, volume, and SQ.
  • the walkie-talkie provided in any embodiment of the present application may perform the method provided by any embodiment of the present application, and the method provided in any embodiment of the present application has the beneficial effects of the walkie-talkie provided in the corresponding embodiment of the present application.
  • the beneficial effects of the method refer to the interphone provided in the corresponding embodiment of the present application, and details are not described herein again.

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Abstract

公开了一种对讲机及对讲信息的传输方法。该对讲机包括:互联通信模块,设置为与互联终端建立短距离通信;无线射频模块,设置为与其它对讲机建立无线射频通信;内部通信接口;处理器,通过内部通信接口与互联通信模块及无线射频模块相连;处理器配置为:通过互联通信模块接收互联终端发送的指向其它对讲机的第一信号;对第一信号进行处理,得到第二信号;通过无线射频模块发送所述第二信号至所述其它对讲机;或者,通过无线射频模块接收其它对讲机发送的指向互联终端的第三信号;对所述第三信号进行处理,得到第四信号;通过互联通信模块,发送第四信号至互联终端。

Description

对讲机、电子设备、对讲信息的传输方法及信息传输方法
本申请要求在2017年8月2日提交中国专利局、申请号为201710651605.0的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本公开涉及无线传输技术领域,例如涉及一种对讲机、电子设备、对讲信息的传输方法及信息传输方法。
背景技术
对讲机是一种双向移动通信工具,在不需要任何无线通信网络支持的情况下,就可以在相互之间通话,且没有额外的话费产生,较为适用于相对固定,且需要相互之间频繁通话等应用场景。通过传统对讲机上的按键,可对对讲机的通信频率、频道和音量等通信参数进行设置,将对讲机设置于某个通信频道或频率后,按下一键通(PUSH TO TALK,PTT)键后,即可实现与处于相同通信频道或频率的其它对讲机实现对讲。
目前,在有移动通信网络信号覆盖的情况下,用户之间实现远距离信息交互的方式,通常是使用手机之类的移动终端,但是,第一方面,使用手机等进行通信需向移动通信网络运营商缴纳一定数额的通信费用;第二方面,在一些地广人稀的国家或地区,移动通信网络覆盖率往往不够,导致在没有移动通信网络信号覆盖的地域,手机将不再适合为用户提供通信服务;第三方面,考虑到手机仅适用于两者之间,常规的主叫方先拨打,被叫方选择接通后,才可以进行正常一对一(即主叫方和被叫方)之间的无线通信,对于一些喜欢以成群结队的形式到某些这些地区进行运动或娱乐的户外运动爱好者、极限运动爱好者,之间需要一对多的即呼即通情况下的集群通信,仅凭借手机进行一对一通信,将带来了极大的不便。
发明内容
本申请提供一种对讲机、电子设备、对讲信息的传输方法及信息传输方法,以解决在有移动通信网络覆盖的应用场景下,节省手机等移动通信终端的通信费用;或者在无移动通信网络覆盖的应用场景下,手机等移动通信中断不能为 用户提供通信服务的技术问题。
本申请实施例提供了一种对讲机,该对讲机包括:
互联通信模块,设置为与互联终端建立短距离通信;
无线射频模块,设置为与其它对讲机建立无线射频通信;
内部通信接口;
处理器,通过所述内部通信接口与所述互联通信模块及所述无线射频模块相连;所述处理器配置为:
通过所述互联通信模块,接收所述互联终端发送的,指向所述其它对讲机的第一信号;
对所述第一信号进行处理,得到第二信号;
通过所述无线射频模块,发送所述第二信号至所述其它对讲机;或者,
通过所述无线射频模块,接收其它对讲机发送的,指向所述互联终端的第三信号;
对所述第三信号进行处理,得到第四信号;
通过所述互联通信模块,发送所述第四信号至所述互联终端。
本申请实施例还提供了一种对讲信息的传输方法,该方法包括:
通过互联通信模块,接收由互联终端发送的,指向其它对讲机的第一信号,其中,所述互联终端预先与所述互联通信模块建立短距离通信连接;
对所述第一信号进行处理,得到第二信号;
通过无线射频模块,发送所述第二信号至所述其它对讲机;或者,
通过无线射频模块,接收所述其它对讲机发送的,指向所述互联终端的第三信号;
对所述第三信号进行处理,得到第四信号;
通过所述互联通信模块,发送所述第四信号至所述互联终端。
本申请实施例提供了一种电子设备,其包括:
互联通信模块,设置为与互联终端建立短距离通信;
无线射频模块,设置为与其它电子设备建立无线射频通信;
内部通信接口;
处理器,通过所述内部通信接口与所述互联通信模块及所述无线射频模块相连;所述处理器配置为:
通过所述互联通信模块,接收所述互联终端发送的,指向所述其它电子设 备的第一信号;
对所述第一信号进行处理,得到第二信号;
通过所述无线射频模块,发送所述第二信号至所述其它电子设备;或者,
通过所述无线射频模块,接收其它电子设备中的每一个发送的,指向所述互联终端的第三信号;
对所述第三信号进行处理,得到第四信号;
通过所述互联通信模块,发送所述第四信号至所述互联终端。
本申请实施例还提供了一种信息传输方法,应用于第一设备,其中所述第一设备包括互联通信模块、无线射频模块,所述方法包括:
通过互联通信模块,接收由互联终端发送的,指向第二设备的第一信号,其中,所述互联终端预先与所述互联通信模块建立短距离通信连接;
对所述第一信号进行处理,得到第二信号;
通过无线射频模块,发送所述第二信号至所述第二设备;或者,
通过无线射频模块,接收所述第二设备发送的,指向所述互联终端的第三信号;
对所述第三信号进行处理,得到第四信号;
通过所述互联通信模块,发送所述第四信号至所述互联终端。
附图概述
图1A是本申请实施例一中的一种对讲机的结构示意图;
图1B是本申请实施例一中的一种对讲机的应用场景示意图;
图1C是本申请实施例一中的一种多台对讲机的应用场景示意图;
图1D是本申请实施例一中的另一种对讲机的结构示意图;
图2A是本申请实施例二中的一种对讲机的结构示意图;
图2B是本申请实施例二中的一种对讲机的应用场景示意图;
图3A是本申请实施例三中的一种对讲机的结构示意图;
图3B是本申请实施例三中的一种对讲机的应用场景示意图;
图3C是本申请实施例三中的一种多台对讲机组成无线射频局域网的示意图;
图4A为本申请实施例四中的一种应用于发送端的对讲信息的传输方法的流程图;
图4B为本申请实施例四中的一种应用于接收端的对讲信息的传输方法的流 程图;
图4C为本申请实施例四中的又一种应用于接收端的对讲信息的传输方法的流程图;
图4D为本申请实施例四中的另一种应用于接收端的对讲信息的传输方法的流程图;
图5A为本申请实施例五中的一种应用于发送端的对讲信息的传输方法的流程图;
图5B为本申请实施例五中的一种应用于接收端的对讲信息的传输方法的流程图。
具体实施方式
另外还需要说明的是,为了便于描述,附图中仅示出了与本申请相关的部分而非全部内容。在更加详细地讨论示例性实施例之前应当提到的是,一些示例性实施例被描述成作为流程图描绘的处理或方法。虽然流程图将各项操作(或步骤)描述成顺序的处理,但是其中的许多操作可以被并行地、并发地或者同时实施。此外,各项操作的顺序可以被重新安排。当其操作完成时所述处理可以被终止,但是还可以具有未包括在附图中的附加步骤。所述处理可以对应于方法、函数、规程、子例程、子程序等。
本申请实施例提供了一种电子设备,为了便于理解,下述实施例以对讲机为例进行说明。但是,本申请实施例提供的电子设备包含但不限于对讲机,本申请实施例提供的电子设备还可以为其他设备。同样,本申请实施例提供了一种信息传输方法,下述实施例以对讲信息传输方法为例进行说明。本申请实施例提供的信息传输方法包含但不限于对讲信息传输方法。
实施例一
本实施例可适用于互联终端之间,在没有移动通信网络信号覆盖的情况下的实现信息交互的应用场景。如图1A所示,对讲机100包括互联通信模块110、无线射频模块120、内部通信接口130以及处理器140。其中,互联通信模块110,设置为与互联终端400建立短距离通信;无线射频模块120,设置为与其它对讲机100’建立无线射频通信;处理器140,通过内部通信接口130与互联通信模块110及无线射频模块120相连。其中:
当处理器140应用于发送测的对讲机100时,配置为可以执行如下方法步 骤S101至S103。
在S101中,通过互联通信模块110,接收互联终端400发送的,指向其它对讲机100’的第一信号。
在S102中,对第一信号进行处理,得到第二信号。
在S103中,通过无线射频模块120,发送第二信号至其它对讲机100’。
当处理器140应用于接收测的对讲机100时,配置为还可以执行如下方法步骤S111至S113。
在S111中,通过无线射频模块120,接收其它对讲机100’发送的,指向互联终端400的第三信号。
在S112中,对第三信号进行处理,得到第四信号。
在S113中,通过互联通信模块110,发送第四信号至互联终端400。
其中,互联通信模块110可以为蓝牙通信模块、无线保真(Wireless Fidelity,wifi)通信模块、红外通信模块或者近距离无线通讯(Near Field Communication,NFC)连接模块。只要互联通信模块110能与各种互联终端400进行短距离无线通信即可。本申请对互联通信模块110不做任何限定,但为了后续说明方便,本申请后续以蓝牙通信模块为例对互联通信模块110进行示例性说明。
内部通信接口130例如可以是,串行外设接口(Serial Peripheral Interface,SPI)、两线式串行总线(Inter-Integrated Circuit,I2C)或异步收发传输器(Universal Asynchronous Receiver/Transmitter,UART)等常用芯片间通信接口。在一实施例中,当通信接口130(如I2C接口)确定后,预设通信协议(即I2C总线协议)也就相应确定了。本申请对通信接口130的类型和规格不做任何限定,但是,为了后续说明方便,本申请后续仅以I2C接口为例对内部通信接口130进行示例性说明。
在一实施例中,对讲机100的应用场景包括:由若干个如图1A所示的对讲机100,以及与其一一对应的互联终端400。其中,互联终端400和对讲机100是配套使用的,基于用户的使用习惯,可以使用互联终端400实现互联终端400之间的对讲,将对讲机100随身携带,例如可以放进背包中。其中,互联终端400可以是手机等智能终端,本申请对互联终端400不做任何限定,但为了后续说明方便,本申请后续以手机为例对互联终端400进行示例性地说明。
在一实施例中,可以为手机端(即互联终端400)预先开发一个应用程序(Application,APP),然后提前将该APP安装于手机中,用于提供友好的用户 操作界面来使用、控制和配置对讲机100。通过蓝牙通信模块建立对讲机100与手机之间的短距离通信连接后,用户可在手机端通过该APP发送信号或查看接收的无线信号或信息。
在一实施例中,在没有移动通信网络覆盖、且对讲机100处于彼此有效通信距离内的应用场景下,如图1A和1B所示,以两个对讲机(如对讲机100A和100B)之间实现对讲功能为例进行说明,对讲机100A和100B处于同一个频道或频率。例如,用户A在手机400A端通过APP发送待发送信号,对讲机100A中的处理器140通过蓝牙通信模块(即互联通信模块110)接收该待发送信号,即第一信号。处理器140对第一信号进行处理后得到第二信号,并将第二信号通过I2C接口(对应内部通信接口130)传输给无线射频模块120,无线射频模块120接收第二信号,并通过无线射频网络将其发送至对讲机100B。对讲机100B的处理器140通过无线射频模块120接收对讲机100A发送的,指向手机400B的无线信号,即第三信号,处理器140对第三信号进行处理后得到第四信号,并将第四信号通过I2C接口传输给蓝牙通信模块,蓝牙通信模块接收第四信号后,通过蓝牙无线网络将第四信号发送至手机400B,用户B可在手机400B中的APP中查看接收到的第四信号。
在一实施例中,在有移动通信网络覆盖、且对讲机100A和对讲机100B均处于彼此有效通信距离内的应用场景下,其中,对讲机100A和对讲机100B处于同一个频道或频率手机400A和手机400B之间同样可以通过本实施例提供的对讲机100A和对讲机100B实现对讲功能,通信方法同上。
在无论是否有移动通信网络覆盖,多台对讲机100均处于彼此有效通信距离内的应用场景下,多台对讲机100中的任意两台均可实现对讲功能,还可实现群组通讯功能。如图1C所示,以4台对讲机构成一个群组为例,其中,对讲机100A、100B、100C和100D均处于彼此的有效通信距离内,且处于同一个频道或频率。用户A利用手机400A通过对讲机100A向群组内发送信息(该信息可以是简单的语音对讲信息,也可以是文字、图片、定位信息或者视频多媒体信息),该发送信息不是指定某一对讲机100专门发送的,而是针对该频道或者频率的群发信息,则对讲机100B、100C和100D均可接收到该信息,相应的,用户B、C、以及D均可分别在手机400B、400C和400D端查看到该信息。
同样的,用户B、C、以及D也可以通过与用户A相同的方式向群组内的其余用户发送信息,其余用户在相应的手机端接收该信息,由此实现了群组间 的通讯以及数据交换。
本实施例提供的对讲机100,在对讲机100A、对讲机100B、手机400A以及手机400B配合使用的场景下,手机400A和手机400B可通过该对讲机100A和对讲机100B实现类似于传统对讲机的对讲功能。在没有移动通信网络覆盖时,用户A和用户B分别利用手机400A和手机400B无法进行远距离信息交互时,借助对讲机100A和对讲机100B可以让手机400A和手机400B实现对讲功能以此进行信息交互,进而解决了在没有移动通信网络覆盖的应用场景下,手机400A和手机400B不能为用户A和用户B提供无线通信服务的技术问题;在有移动通信网络覆盖的应用场景下,用户A和用户B之间利用手机400A和手机400B,借助对讲机100A和对讲机100B进行信息交互,例如是当某一特定群体(例如用户A、B、C、以及D)之间需要彼此频繁且大范围通信时,可节省一定的无线通信费用。
在一实施例中,第一信号以及第三信号的类型包括:语音、文字、地理位置、图像或者视频。
语音、文字、地理位置、图像或者视频均可通过手机400A和400B中安装的APP进行发送,可以是即时录入的,也可以是预先保存在手机400A和400B中的。其中,地理位置可以是地图信息,当遭遇危险时,发送地图信息进行求救可有效提高救助成功率。
除此之外,本实施例提供的一种对讲机100还具有数据传输功能。其中,预先开发的手机APP也可安装于对讲机100中。在没有移动通信网络覆盖的应用场景下,用户A和用户B通过对讲机100A和对讲机100B进行信息交互接收到的信息数据,可以暂时保存在手机100A和手机100B中。在有移动通信网络覆盖后,手机400A和手机400B可接入移动通信网络,用户A和用户B可以将保存在手机400A和手机400B中的信息数据同步到上述APP对应的网络服务器中。当后期用户A或用户B想查看之前的信息交互记录时,可在有移动网络通信覆盖的情况下,在对讲机100A或对讲机100B端,或手机400A端或手机400B端通过所述APP进行查看之前同步至网络服务器中的信息交互记录。
本实施例提供的对讲机及对讲信息的传输方法,手机400A和手机400B通过对讲机100A和对讲机100B实现对讲功能,其传输信号的类型包括语音、文字、地理位置、图像或者视频,克服了传统对讲机之间无法发送文字信息、图像信息及视频信息的缺陷。
处理器140还配置为:
通过互联通信模块110,接收互联终端400发送的,指向自身对讲机100的第七信号;
解析第七信号,得到解析结果;
根据解析结果,按照预设调整规则,调整对讲机100的系统参数,其中,系统参数包括下述至少一项:国家、语言、发射频率、接收频率、频道、发射连续语音编码静噪系统(Continuous Tone-Coded Squelch System,CTC)、接收CTC、音量以及静噪检测器(Squelch Detector,SQ)。
用户A可通过手机100A中安装的APP对对讲机100A的上述参数进行设置,其中,用户A通过手机100A中安装的APP发送相关设置的命令信号,命令信号通过蓝牙通信模块被传输至对讲机100A后,处理器140解析接收的该命令信号,即第七信号,并对对讲机100A的系统设置进行调整。
本实施例提供的对讲机及对讲信息的传输方法,与通过一键通调整对讲机100A或100B的系统设置相比,利用手机400A或400B中安装的APP调整对讲机100A或100B的系统设置的操作方法更加直观简单。
其中,对讲机100之间,以及对讲机100与互联终端400之间实现各种功能均采用统一的通信协议,即对讲机100之间,以及对讲机100与互联终端400之间传输的数据采用统一的数据封装格式,所定义的数据报文封装格式如表1所示。
表1 数据包封装格式
Type Length Data Verify
在表1中,Type表示数据包的类型,Length表示数据包长度,Data就是数据包的内容,Verify表示校验码。Type占用1个字节,类型包括:国家设置、语言设置、发射频率设置、接收频率设置、频道设置、发射CTC设置、接收CTC设置、音量设置、SQ设置、用户ID、文字信息、以及地理信息等;Length占用2个字节;Verify占用1个字节。
图1D是本申请实施例一中的另一种对讲机的结构示意图。如图1D所示,对讲机100包括互联通信模块110、无线射频模块120、内部通信接口130以及处理器140,对讲机100还包括求救按键150和求救功能模块160。
其中,求救按键150设置为响应用户的按压操作产生按压操作信号,通过 所述互联通信模块110将所述按压操作信号发送至所述互联终端400,以使所述互联终端400识别所述按压操作信号并生成求救信号;求救功能模块160设置为通过所述互联通信模块110接收来自所述互联终端400的求救信号;通过所述无线射频模块将所述求救信号发送到所述其他对讲机,并接收来自所述其他对讲机的求救信号。其中,求救信号可以是文字消息,预设距离可以是对讲机和其他对讲机能够进行通信的有效通信距离内。例如,对讲机在设备上增加莫斯电码求救信号SOS物理按键,就能够发出求救信号到附近所有的设备。通过设备按键产生按压操作信号,按压操作信号通过无线传输到手机,手机收到按压操作信号,识别按压操作信号,产生求救信号(文字),并发出求救信号到对讲机,再通过对讲机发到附近所有的设备。
本申请实施例提供的一种对讲机及对讲信息的传输方法,其中,该对讲机包括:互联通信模块、处理器、内部通信接口以及无线射频模块,使得对讲机可以通过互联通信模块与其它互联终端建立短距离通信连接;可以通过无线射频模块与其他对讲机建立无线射频连接。通过处理器将通过所述互联通信模块接收的,由所述互联终端发送的待发送信号进行处理,并将发送处理信号通过所述无线射频模块发送至其他对讲机;或者,将通过所述无线射频模块接收的,由其他对讲机发送的,指向所述互联终端的待接收信号进行处理,并将接收处理信号通过所述互联通信模块发送至所述互联终端,从而实现了利用该对讲机,可以使得多个互联终端(如移动终端)之间,能够不依赖于移动通信网络,仅以传统对讲机式的对讲实现信息交互,以降低手机的通信费用,并可以在互联终端没有任何常用移动通信网络信号的情况下,通过该对讲机与其他对讲机之间的无线射频连接,实现该互联终端与其他互联终端的信息交互。
实施例二
如图2A所示,本实施例提供的对讲机200还包括音频处理模块250,音频处理模块250通过内部通信接口230分别与无线射频模块220和互联通信模块210相连。其中,处理器240,还配置为可以执行如下步骤:
如果判断第一信号的类型为语音,则控制音频处理模块250,对第一信号进行音频处理,得到第二信号;或者
如果判断第三信号的信号类型为语音,则控制音频处理模块250,对第三信号进行音频处理,得到第四信号。
当处理器240应用于发送测的对讲机200时,配置为可以执行如下步骤S201-S203。
在S201中,通过互联通信模块210,接收互联终端400发送的,指向其它对讲机200’的第一信号。
在S202中,如果判断第一信号的类型为语音,则控制音频处理模块250,对第一信号进行音频处理,得到第二信号。
在S203中,通过无线射频模块220,发送第二信号至其它对讲机200’。
当处理器240应用于接收测的对讲机200时,配置为还可以执行如下方法步骤S211-S213。
在S211中,通过无线射频模块220,接收其它对讲机200’发送的,指向互联终端400的第三信号。
在S212中,如果判断第三信号的类型为语音,则控制音频处理模块250,对第三信号进行音频处理,得到第四信号。
在S213中,通过互联通信模块210,发送第四信号至互联终端400。
如图2A和2B所示,在用户A和用户B分别利用手机400A和手机400B,通过本实施例提供的对讲机200A和200B发送语音信号的应用场景下,其中,对讲机200A和对讲机200B处于同一个频道或频率,用户A使用手机400A通过APP发送待发送信号,如果对讲机200A中的处理器240确定接收的待发送信号,即第一信号的类型为语音,则控制音频处理模块250处理所述第一信号。音频处理模块250对第一信号进行处理后得到第二信号,并将第二信号通过I2C接口(对应内部通信接口230)传输给无线射频模块220,无线射频模块220接收第二信号,并通过无线射频网络将其发送至对讲机200B。
如果对讲机200B中的处理器240确定接收的待接收信号,即第三信号的类型为语音,则控制音频处理模块250处理第三信号。音频处理模块250对第三信号进行处理后得到第四信号,并将第四信号通过I2C接口传输给蓝牙通信模块,蓝牙通信模块接收第四信号后,通过蓝牙无线网络将其发送至手机400B,用户B可在手机400B的APP中查看接收到的语音信号。
在一实施例中,当第四信号的类型为语音时,手机400B的处理器可以获取扬声器以及声音收集器的权限,在接收到第四信号后,能够在熄屏或者锁屏的状态下,实时播放第四信号所携带的语音内容,并在语音播放结束后,实时采集用户声音,以达到实时发声以及实时对讲的效果。
在另一实施例中,当第四信号的类型为语音时,在接收到第四信号后,手机400B的处理器能够在熄屏或者锁屏的状态下,实时将语音消息的提示框显示于手机界面,并且在语音播放结束后,提供回复按钮或回复框,以供用户进行语音回复或文字回复。在本实施例中,用户能够在手机400B为熄屏或者锁屏的状态下,进行语音播放以及回复操作。在其他实施例中,用户也可以先进行解锁操作,再打开APP进行播放语音以及回复的操作,本申请对其不作任何限定。
在上述各实施例的基础上,所述对讲机200还包括:
电源模块,设置为为对讲机200中包括的多个模块进行供电;
其中,电源模块还包括对外供电接口,设置为为其它便携设备供电。
本实施例提供的对讲机200中电源模块,可以对对讲机200中的锂电池进行充电,同时还可以将锂电池的电压升压至5V,提供一个对外供电接口输出5V电压为其它便携设备充电,并提供欠压、过流、过温、以及短路保护等功能,例如,可以代替其它充电宝为手机400A或400B等移动终端充电。
实施例三
如图3A所示,本实施例提供的对讲机300还包括中继模块360,中继模块360通过内部通信接口330与无线射频模块320相连。其中,处理器340还配置为可以执行如下步骤。
如果判断接收到的信号为其它对讲机300A发送的,指向其他终端400B的第五信号,则控制中继模块360,对第五信号进行中继处理,得到第六信号,并通过无线射频模块320,发送第六信号至其它对讲机300B。
当处理器340,应用于充当中继台的对讲机300时,配置为可以执行如下步骤S301和S302。
在S301中,如果判断接收到的信号为其它对讲机300A发送的,指向其他互联终端400B的第五信号,则控制中继模块360,对第五信号进行中继处理,得到第六信号。
在S302中,通过无线射频模块320,发送第六信号至其它对讲机300B。
通常,通过对讲机300传播的无线射频信号的有效通信距离约为3公里,在建筑物多的城市中还会更短一些。如果无线射频信号通过中继台转发,可以增长对讲机300的有效通信距离。
在没有移动通信网络覆盖、且多个对讲机300均未处于彼此有效通信距离 内的应用场景下。如图3A和3B所示,以对讲机300A向对讲机300B通过对讲机300C自动中继发送信号为例,其中,对讲机300A和对讲机300B不在彼此的有效通信距离内,对讲机300C处于对讲机300A和对讲机300B的有效通信距离内,对讲机300A、300B和300C处于同一个频道或频率。
本实施例提供的任意一个对讲机300均可实现中继功能。其中,每一个对讲机300具有一个专门的用户身份识别(Identification,ID)号。如果对讲机300发出的信号是指定某一对讲机300A接收的,则该信号的数据包中会标有指定对讲机300A的ID号,只有此ID号对应的对讲机300A可以获取该数据包的内容,其余对讲机(例如300B)可以接收到该数据包,但由于ID号不匹配而无法获取该数据包的内容。由此,可实现传输信号的保密性。如果对讲机300以广播的形式发出的信号,数据包中不含有任何对讲机的ID号,则有效通信距离内的对讲机(例如对讲机300A和对讲机300B)均可获取数据包的内容。
用户A在手机400A端通过APP发送指向对讲机300B的待发送信号,即第一信号,对讲机300A通过无线射频模块320将处理第一信号得到的第二信号向对讲机300B发送,由于对讲机300B不在对讲机300A的有效通信距离内,因此对讲机300A接收不到代表对讲机300B已成功接收到信号的回执消息。对讲机300A会再次通过无线射频模块320发送第二信号,并请求中继。在对讲机300A的有效通信距离内的对讲机均可接收到中继请求,以对讲机300C进行举例说明。
对讲机300C通过其无线射频模块320接收到对讲机300A发出的信号,如果其处理器340确定接收的信号为对讲机300A发送的,指向对讲机300B的待中继信号,即第五信号,则控制中继模块360处理第五信号。对讲机300C的中继模块360将通过无线射频模块320接收的第五信号进行中继处理后得到第六信号,并将第六信号通过无线射频模块320发出。对讲机300B通过无线射频模块320接收到对讲机300C中继转发的信号,即第三信号,处理器340将处理第三信号后得到的第四信号通过蓝牙通信模块发送至手机400B,用户B可在手机400B端的APP中查看接收到的第四信号。
在对讲机300A发送中继请求时,可能存在多个对讲机均能实现中继的情况,可以是对讲机300A询问对讲机300C是否有空,若对讲机300C有空则指定对讲机300C进行中继,若对讲机300C没空,则再询问其他对讲机;也可以是多个对讲机都进行中继转发,对讲机300B识别到相同的数据包信号,只选取其中 一个进行接收,丢弃其余的数据包。前种询问方式,可避免无线射频网络资源的浪费。
在有移动通信网络覆盖、且对讲机300A和300B未均处于彼此有效通信距离内的应用场景下,手机400A和400B之间同样可以通过上述对讲机进行自动中继转发进而实现对讲功能,方法同上。
本实施例提供的一种对讲机,自身带有中继功能,未在彼此有效通信距离内的对讲机300A和300B可以通过对讲机300C自动进行中继信号转发,克服了传统对讲机必须通过中继台进行中继的缺点,为对讲机用户去除了中继台带来的限制,提供了便利。
在多台对讲机组成无线射频局域网的应用场景下,将多台对讲机300设置在同一频道或频率上,多台对讲机300可组成无线射频局域网,实现数据在网间的任意交换。其中,数据交换的方式可以是两台在有效通信距离内的对讲机300直接进行数据交换,也可以是两台不在有效通信距离内的对讲机300通过第三台对讲机300中继转发进行数据交换。
如图3C所示,以9台对讲机300组成无线射频局域网为例,将对讲机300A、300B、300C、300D、300E、300F、300G、300H、以及300I通过与之分别匹配的手机端APP设置在同一个频道或频率。
对讲机300A的信号可以直接传递给对讲机300B、300D或300E。
对讲机300A的信号可以通过对讲机300B、300E中继传递给对讲机300C,对讲机300A通过对讲机300B中继时,先检查对讲机300B是否有空,如果对讲机300B有空则通过它将信号传递给对讲机300C,如果对讲机300B没有空,则对讲机300A要检查附近的对讲机300E是否有空,如果对讲机300E有空则通过对讲机300E中继将数据传给对讲机300C;同理对讲机300C可以通过对讲机300B、300E中继传递给对讲机300A。
类似地,对讲机300B可以通过对讲机300D、300E将信号传递给对讲机300G,或通过对讲机300E将信号传递给对讲机300H、300F、300I,从而实现对讲机300A的信号可以传递到其它8台对讲机的任意一台。
同理,对讲机300D的信号可以直接传递给对讲机300A、300G、300B、300E和300H;也可以通过对讲机300B、300E或300H中继传递给对讲机300C、300F或300I,从而实现对讲机300D的信号可以传递到其它8台对讲机的任意一台。
与对讲机300A、300D类似,其他设备也可以实现信号在网内的任意交换。
本实施例提供的对讲机300,自带中继功能,多台对讲机300之间可以组成无线射频局域网。在没有移动通信网络覆盖时,用户无法利用手机进行信息交互时,借助对讲机300可以实现对讲功能以此进行信息交互,当多台对讲机300组成无线射频局域网后,更是为特定用户群体之间频繁且大范围的信息交互提供了极大的便利;即使在有移动通信网络覆盖时,特定用户群体之间利用多台对讲机300组成的无线射频局域网进行信息交互,可节省一定的无线通信费用。
实施例四
本实施例可适用于互联终端之间,没有移动网络信号覆盖的情况下实现信息交互的应用场景,该方法可以本申请实施例提供的对讲机来执行,可以有部署在对讲机中的硬件和软件中的至少一项来实施。如图2A、图2B和图4A所示,应用于发送端的对讲信息的传输方法包括如下步骤S401至S403。
在S401中,通过互联通信模块210,接收由互联终端400发送的,指向其它对讲机200’的第一信号。
在S402中,对第一信号进行处理,得到第二信号。
在S403中,通过无线射频模块220,发送第二信号至其它对讲机200’。
在一实施例中,通过无线射频模块220,发送所述第二信号至所述其它对讲机200’,包括:采用模拟通信模式或数字通信模式发送所述第二信号至所述其它对讲机200’。
如图4B所示,应用于接收端的对讲信息的传输方法包括如下步骤S411至S413。
在S411中,通过无线射频模块220,接收其它对讲机200’发送的,指向互联终端400的第三信号。
在S412中,对第三信号进行处理,得到第四信号。
在S413中,通过互联通信模块210,发送第四信号至互联终端400。
其中,互联终端400预先与互联通信模块210建立短距离通信连接。
本实施例提供的一种对讲信息的传输方法,使手机400A和手机400B可通过该方法实现类似于对讲机200A和对讲机200B的对讲功能。在没有移动通信网络覆盖时,用户A和用户B利用手机400A和手机400B无法进行远距离信息交互,借助所述对讲机200A和对讲机200B可以让手机400A和手机400B实现对讲功能以此进行信息交互,进而解决了在没有移动通信网络覆盖的应用场景 下,手机400A和手机400B不能为用户A和用户B提供无线通信服务的技术问题;在有移动通信网络覆盖的应用场景下,用户A和用户B之间利用对讲机200A和对讲机200B进行信息交互,例如是当某一特定群体之间需要彼此频繁且大范围通信时,可节省一定的无线通信费用。
在一实施例中,第一信号以及第三信号的类型包括:语音、文字、地理位置、图像或者视频。
在一实施例中,互联通信模块210包括下述至少一项:蓝牙通信模块、wifi通信模块、红外通信模块以及近距离无线通讯NFC连接模块。
在一实施例中,如图4C所示,在接收其它对讲机发送的,指向所述互联终端的第三信号之后,所述方法还可包括步骤S414和S415。
在S414中,识别所述第三信号的信号强度。
在S415中,通过所述互联通信模块210,发送所述第三信号的信号强度至所述互联终端400并显示,以使所述互联终端400使用指南针,根据所述第三信号的信号强度检测所述第三信号的发射方向。
本实施例提供的对讲机及对讲信息的传输方法,能够实现信号识别,对方发射信号来了,可以识别信号强度,并将信号传输到手机,通过APP在手机显示,APP上通过手机指南针配合检测出信号的发射方向。
本实施例还可适用于无线射频模块220设置为多通道通信的情况。如图4D所示,本实施例提供的应用于接收端的对讲信息的传输方法还包括如下步骤S421至S422。
在S421中,通过所述无线射频模块220,同时接收其它对讲机100’发送的,指向所述互联终端400的多个第三信号。
在S422中,当在第一通道接收第一对讲机发送的指向所述互联终端400的一个第三信号时,保存从其他通道同时接收的其他第三信号,并传输至所述互联终端400。
本实施例提供的对讲机及对讲信息的传输方法,采用多通道通信,设备(对讲机)可以同时接收多路信号,在设备与其中一台通信过程中,可以将其他设备发射的信号接收并保存下来传输到手机。或者在多台设备群体通信时能够同时接收信息,避免单通道只能接收其中一台设备的信息的情况。
实施例五
在实施例四的基础上,其中,实施例四中的步骤S402,即对第一信号进行处理,得到第二信号的步骤,可以为:如果判断第一信号的类型为语音,则控制音频处理模块,对第一信号进行音频处理,得到所述第二信号。
其中,实施例四中的步骤S412,即对第三信号进行处理,得到第四信号的步骤,可以为:如果判断第三信号的类型为语音,则控制音频处理模块,对第三信号进行音频处理,得到第四信号。
如图2A、图2B和图5A所示,应用于发送端的对讲信息的传输方法包括如下步骤S501至S503。
在S501中,通过互联通信模块210,接收互联终端400发送的,指向其它对讲机200’的第一信号。
在S502中,如果判断第一信号的类型为语音,则控制音频处理模块250,对第一信号进行音频处理,得到第二信号。
在S503中,通过无线射频模块220,发送第二信号至其它对讲机200’。
如图2A、图2B和图5B所示,应用于接收端的对讲信息的传输方法包括如下步骤S511至S513。
在S511中,通过无线射频模块210,接收其它对讲机200’发送的,指向互联终端400的第三信号。
在S512中,如果判断第三信号的信号类型为语音,则控制音频处理模块250,对第三信号进行音频处理,得到第四信号。
在S513中,通过互联通信模块210,发送第四信号至互联终端400。
在上述各实施例的基础上,本实施例提供的一种对讲信息的传输方法还包括如下步骤:
参照图3A和图3B,如果判断接收到的信号为其它对讲机300A发送的,指向其他终端400B的第五信号,则控制中继模块360,对第五信号进行中继处理,得到第六信号,并通过无线射频模块320,发送所述第六信号至其它对讲机300B。
在上述各实施例的基础上,本实施例提供的一种对讲信息的传输方法还包括如下步骤:
参照图1A,通过互联通信模块110,接收互联终端400发送的,指向自身对讲机100的第七信号;
解析第七信号,得到解析结果;
根据解析结果,按照预设调整规则,调整对讲机100的系统参数,其中,所述系统参数包括下述至少一项:国家、语言、发射频率、接收频率、频道、发射CTC、接收CTC、音量以及SQ。
本申请任意实施例提供的对讲机可执行本申请任意实施例所提供的方法,考虑到本申请任意实施例提供的方法具备本申请对应实施例提供的对讲机的有益效果,所以,对本申请实施例提供的方法的有益效果请参考本申请对应实施例提供的对讲机,在此不再赘述。

Claims (34)

  1. 一种对讲机,其包括:
    互联通信模块,设置为与互联终端建立短距离通信;
    无线射频模块,设置为与其它对讲机建立无线射频通信;
    内部通信接口;
    处理器,通过所述内部通信接口与所述互联通信模块及所述无线射频模块相连;所述处理器配置为:
    通过所述互联通信模块,接收所述互联终端发送的,指向所述其它对讲机的第一信号;
    对所述第一信号进行处理,得到第二信号;
    通过所述无线射频模块,发送所述第二信号至所述其它对讲机;或者,
    通过所述无线射频模块,接收其它对讲机中的每一个发送的,指向所述互联终端的第三信号;
    对所述第三信号进行处理,得到第四信号;
    通过所述互联通信模块,发送所述第四信号至所述互联终端。
  2. 根据权利要求1所述的对讲机,其中,所述第一信号以及所述第三信号的类型包括:
    语音、文字、地理位置、图像或者视频。
  3. 根据权利要求2所述的对讲机,还包括:
    音频处理模块,通过所述内部通信接口,分别与所述无线射频模块和所述互联通信模块相连;
    其中所述处理器还配置为:
    如果判断所述第一信号的类型为语音,则控制所述音频处理模块,对所述第一信号进行音频处理,得到所述第二信号;或者
    如果判断所述第三信号的信号类型为语音,则控制所述音频处理模块,对所述第三信号进行音频处理,得到所述第四信号。
  4. 根据权利要求1~3任一项所述的对讲机,还包括:
    中继模块,通过所述内部通信接口,与所述无线射频模块相连;
    所述处理器还配置为:
    如果判断接收到的信号为所述其它对讲机中的第一对讲机发送的,指向与所述其它对讲机中的第二对讲机对应的互联终端的第五信号,则控制所述中继模块,对所述第五信号进行中继处理,得到第六信号,并通过所述无线射频模 块,发送所述第六信号至所述其它对讲机中的所述第二对讲机。
  5. 根据权利要求1所述的对讲机,还包括:
    电源模块,设置为为所述对讲机中包括的多个模块进行供电,其中,所述电源模块还包括对外供电接口,设置为为与所述对外供电接口连接的便携设备供电。
  6. 根据权利要求1所述的对讲机,其中,所述处理器还配置为:
    通过所述互联通信模块,接收所述互联终端发送的,指向所述对讲机的第七信号;
    解析所述第七信号,得到解析结果;
    根据所述解析结果,按照预设调整规则,调整所述对讲机的系统参数,其中,所述系统参数包括下述至少一项:国家、语言、发射频率、接收频率、频道、发射连续语音编码静噪系、接收连续语音编码静噪系、音量以及静噪检测器。
  7. 根据权利要求1所述的对讲机,其中,所述互联通信模块包括下述至少一项:
    蓝牙通信模块、wifi通信模块、红外通信模块以及近距离无线通讯NFC连接模块。
  8. 根据权利要求1所述的对讲机,还包括:
    求救按键,设置为响应用户的按压操作产生按压操作信号,通过所述互联通信模块将所述按压操作信号发送至所述互联终端,以使所述互联终端识别所述按压操作信号并生成求救信号;
    求救功能模块,设置为通过所述互联通信模块接收来自所述互联终端的求救信号;通过所述无线射频模块将所述求救信号发送到所述其他对讲机,并接收来自所述其他对讲机的求救信号。
  9. 一种对讲信息的传输方法,应用于第一对讲机,其中所述第一对讲机包括互联通信模块、无线射频模块,所述方法包括:
    通过互联通信模块,接收由互联终端发送的,指向第二对讲机的第一信号,其中,所述互联终端预先与所述互联通信模块建立短距离通信连接;
    对所述第一信号进行处理,得到第二信号;
    通过无线射频模块,发送所述第二信号至所述第二对讲机;或者,
    通过无线射频模块,接收所述第二对讲机发送的,指向所述互联终端的第 三信号;
    对所述第三信号进行处理,得到第四信号;
    通过所述互联通信模块,发送所述第四信号至所述互联终端。
  10. 根据权利要求9所述的方法,其中,所述第一信号以及所述第三信号的类型包括:语音、文字、地理位置、图像或者视频。
  11. 根据权利要求10所述的方法,其中,所述对所述第一信号进行处理,得到第二信号,包括:
    如果判断所述第一信号的类型为语音,则控制音频处理模块,对所述第一信号进行音频处理,得到所述第二信号;
    所述对所述第三信号进行处理,得到第四信号,包括:
    如果判断所述第三信号的类型为语音,则控制所述音频处理模块,对所述第三信号进行音频处理,得到所述第四信号。
  12. 根据权利要求9-11任一项所述的方法,还包括:
    如果判断接收到的信号为所述第二对讲机发送的,指向与第三对讲机对应的另一互联终端的第五信号,则控制所述第一对讲机的中继模块,对所述第五信号进行中继处理,得到第六信号,并通过所述无线射频模块,发送所述第六信号至所述第三对讲机。
  13. 根据权利要求9所述的方法,还包括:
    通过所述互联通信模块,接收所述互联终端发送的,指向所述第一对讲机的第七信号;
    解析所述第七信号,得到解析结果;
    根据所述解析结果,按照预设调整规则,调整所述第一对讲机的系统参数,其中,所述系统参数包括下述至少一项:国家、语言、发射频率、接收频率、频道、发射连续语音编码静噪系、接收连续语音编码静噪系、音量以及静噪检测器。
  14. 根据权利要求9所述的方法,其中,所述无线射频模块设置为进行多通道通信,所述方法还包括:
    通过所述无线射频模块,同时接收多个第二对讲机发送的,指向所述互联终端的多个第三信号;
    当在第一通道接收所述多个第二对讲机中的一个发送的指向所述互联终端的一个第三信号时,保存从其他通道同时接收的其他第三信号,并传输至所述 互联终端。
  15. 根据权利要求9所述的方法,还包括:
    识别所述第三信号的信号强度;
    通过所述互联通信模块,发送所述第三信号的信号强度至所述互联终端并显示,以使所述互联终端使用指南针,根据所述第三信号的信号强度检测所述第三信号的发射方向。
  16. 根据权利要求9所述的方法,其中,通过无线射频模块,发送所述第二信号至所述第二对讲机,包括:
    通过无线射频模块,采用模拟通信模式或数字通信模式发送所述第二信号至所述第二对讲机。
  17. 根据权利要求9所述的方法,还包括:
    响应用户在求救按键的按压操作产生按压操作信号,通过所述互联通信模块将所述按压操作信号发送至所述互联终端,以使所述互联终端识别所述按压操作信号并生成求救信号;
    通过所述互联通信模块接收来自所述互联终端的求救信号;通过所述无线射频模块将所述求救信号发送到多个第二对讲机,并接收来自所述多个第二对讲机的求救信号。
  18. 一种电子设备,其包括:
    互联通信模块,设置为与互联终端建立短距离通信;
    无线射频模块,设置为与其它电子设备建立无线射频通信;
    内部通信接口;
    处理器,通过所述内部通信接口与所述互联通信模块及所述无线射频模块相连;所述处理器配置为:
    通过所述互联通信模块,接收所述互联终端发送的,指向所述其它电子设备的第一信号;
    对所述第一信号进行处理,得到第二信号;
    通过所述无线射频模块,发送所述第二信号至所述其它电子设备;或者,
    通过所述无线射频模块,接收其它电子设备中的每一个发送的,指向所述互联终端的第三信号;
    对所述第三信号进行处理,得到第四信号;
    通过所述互联通信模块,发送所述第四信号至所述互联终端。
  19. 根据权利要求18所述的电子设备,其中,所述第一信号以及所述第三信号的类型包括:
    语音、文字、地理位置、图像或者视频。
  20. 根据权利要求19所述的电子设备,还包括:
    音频处理模块,通过所述内部通信接口,分别与所述无线射频模块和所述互联通信模块相连;
    其中所述处理器还配置为:
    如果判断所述第一信号的类型为语音,则控制所述音频处理模块,对所述第一信号进行音频处理,得到所述第二信号;或者
    如果判断所述第三信号的信号类型为语音,则控制所述音频处理模块,对所述第三信号进行音频处理,得到所述第四信号。
  21. 根据权利要求18~20任一项所述的电子设备,还包括:
    中继模块,通过所述内部通信接口,与所述无线射频模块相连;
    所述处理器还配置为:
    如果判断接收到的信号为所述其它电子设备中的第一电子设备发送的,指向与所述其它电子设备中的第二电子设备对应的互联终端的第五信号,则控制所述中继模块,对所述第五信号进行中继处理,得到第六信号,并通过所述无线射频模块,发送所述第六信号至所述其它电子设备中的所述第二电子设备。
  22. 根据权利要求18所述的电子设备,还包括:
    电源模块,设置为为所述电子设备中包括的多个模块进行供电,其中,所述电源模块还包括对外供电接口,设置为为与所述对外供电接口连接的便携设备供电。
  23. 根据权利要求18所述的电子设备,其中,所述处理器还配置为:
    通过所述互联通信模块,接收所述互联终端发送的,指向所述电子设备的第七信号;
    解析所述第七信号,得到解析结果;
    根据所述解析结果,按照预设调整规则,调整所述电子设备的系统参数,其中,所述系统参数包括下述至少一项:国家、语言、发射频率、接收频率、频道、发射连续语音编码静噪系、接收连续语音编码静噪系、音量以及静噪检测器。
  24. 根据权利要求18所述的电子设备,其中,所述互联通信模块包括下述 至少一项:
    蓝牙通信模块、wifi通信模块、红外通信模块以及近距离无线通讯NFC连接模块。
  25. 根据权利要求18所述的电子设备,还包括:
    求救按键,设置为响应用户的按压操作产生按压操作信号,通过所述互联通信模块将所述按压操作信号发送至所述互联终端,以使所述互联终端识别所述按压操作信号并生成求救信号;
    求救功能模块,设置为通过所述互联通信模块接收来自所述互联终端的求救信号;通过所述无线射频模块将所述求救信号发送到所述其他电子设备,并接收来自所述其他电子设备的求救信号。
  26. 一种信息传输方法,应用于第一电子设备,其中所述第一电子设备包括互联通信模块、无线射频模块,所述方法包括:
    通过互联通信模块,接收由互联终端发送的,指向第二电子设备的第一信号,其中,所述互联终端预先与所述互联通信模块建立短距离通信连接;
    对所述第一信号进行处理,得到第二信号;
    通过无线射频模块,发送所述第二信号至所述第二电子设备;或者,
    通过无线射频模块,接收所述第二电子设备发送的,指向所述互联终端的第三信号;
    对所述第三信号进行处理,得到第四信号;
    通过所述互联通信模块,发送所述第四信号至所述互联终端。
  27. 根据权利要求26所述的方法,其中,所述第一信号以及所述第三信号的类型包括:语音、文字、地理位置、图像或者视频。
  28. 根据权利要求27所述的方法,其中,所述对所述第一信号进行处理,得到第二信号,包括:
    如果判断所述第一信号的类型为语音,则控制音频处理模块,对所述第一信号进行音频处理,得到所述第二信号;
    所述对所述第三信号进行处理,得到第四信号,包括:
    如果判断所述第三信号的类型为语音,则控制所述音频处理模块,对所述第三信号进行音频处理,得到所述第四信号。
  29. 根据权利要求26-28任一项所述的方法,还包括:
    如果判断接收到的信号为所述第二电子设备发送的,指向与第三电子设备 对应的另一互联终端的第五信号,则控制所述第一电子设备的中继模块,对所述第五信号进行中继处理,得到第六信号,并通过所述无线射频模块,发送所述第六信号至所述第三电子设备。
  30. 根据权利要求26所述的方法,还包括:
    通过所述互联通信模块,接收所述互联终端发送的,指向所述第一电子设备的第七信号;
    解析所述第七信号,得到解析结果;
    根据所述解析结果,按照预设调整规则,调整所述第一电子设备的系统参数,其中,所述系统参数包括下述至少一项:国家、语言、发射频率、接收频率、频道、发射连续语音编码静噪系、接收连续语音编码静噪系、音量以及静噪检测器。
  31. 根据权利要求26所述的方法,其中,所述无线射频模块设置为进行多通道通信,所述方法还包括:
    通过所述无线射频模块,同时接收多个第二电子设备发送的,指向所述互联终端的多个第三信号;
    当在第一通道接收所述多个第二电子设备中的一个发送的指向所述互联终端的一个第三信号时,保存从其他通道同时接收的其他第三信号,并传输至所述互联终端。
  32. 根据权利要求26所述的方法,还包括:
    识别所述第三信号的信号强度;
    通过所述互联通信模块,发送所述第三信号的信号强度至所述互联终端并显示,以使所述互联终端使用指南针,根据所述第三信号的信号强度检测所述第三信号的发射方向。
  33. 根据权利要求26所述的方法,其中,通过无线射频模块,发送所述第二信号至所述第二电子设备,包括:
    通过无线射频模块,采用模拟通信模式或数字通信模式发送所述第二信号至所述第二电子设备。
  34. 根据权利要求26所述的方法,还包括:
    响应用户在求救按键的按压操作产生按压操作信号,通过所述互联通信模块将所述按压操作信号发送至所述互联终端,以使所述互联终端识别所述按压操作信号并生成求救信号;
    通过所述互联通信模块接收来自所述互联终端的求救信号;通过所述无线射频模块将所述求救信号发送到多个第二电子设备,并接收来自所述多个第二电子设备的求救信号。
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