WO2019218368A1 - 一种tws耳机、腕带式ai语音交互装置及系统 - Google Patents
一种tws耳机、腕带式ai语音交互装置及系统 Download PDFInfo
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- WO2019218368A1 WO2019218368A1 PCT/CN2018/087575 CN2018087575W WO2019218368A1 WO 2019218368 A1 WO2019218368 A1 WO 2019218368A1 CN 2018087575 W CN2018087575 W CN 2018087575W WO 2019218368 A1 WO2019218368 A1 WO 2019218368A1
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- earphone
- communication module
- voice
- headphone
- wristband
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Definitions
- the present invention relates to a portable communication device, and in particular to a TWS earphone, a wristband type AI voice interaction device and system.
- TWS Abbreviation for True Wireless Stereo, which means true wireless stereo.
- the mobile phone connects to the main speaker, and then connects to the slave speaker through the Bluetooth wireless method from the main speaker to realize the true Bluetooth left and right channel wireless separation.
- the main speaker returns to the single stereo.
- the advantages of TWS headset are: first: true wireless, completely abandon the wired troubles; second: easy to use, one person to use, binaural wireless interconnection, can enjoy the wonderful wireless stereo; can also share music with two people, ten meters Within the scope, two people can listen to one song at the same time; when the left and right ears are used independently, they can be paired with different mobile phones.
- TWS headsets including Apple's irPods
- the TWS headset needs to be matched with a storage box; furthermore, the storage box is also provided with a charging module, so The storage box is also a charging box, which can be charged by the TWS earphone.
- the existing storage box also has the disadvantage of being inconvenient to carry and easily lost.
- the Bluetooth adapter is usually set in the intermediate device (charging box), so that the headset realizes the Bluetooth connection with the mobile phone; when the voice is transmitted specifically, the headset is directly connected with the Bluetooth.
- the TWS headset has no way to leave the phone when it is in use. Since the advent of smart phones, people have become more and more dependent on mobile phones. They can't leave their mobile phones when they call, check information, listen to music and entertainment, and even develop a mobile phone disease. In fact, not everyone needs smartphones with more and more functions and bigger screens. In addition, leaving the mobile phone and letting the eyes leave the glare of the mobile phone screen, a simple lifestyle is also increasing. Human needs.
- the present application provides a TWS earphone, a wristband type AI voice interaction device and a system, which makes the TWS earphone and its charging stand easy to carry, and makes the TWS earphone no longer depends on the mobile phone, and can also make people Reduce your reliance on your phone.
- the present application provides a wristband-type AI voice interaction device, including a body and an earphone detachably coupled to the body, the body including a body casing and a wristband, the wristband being fixedly coupled to the body casing, and the body
- the earphone is provided with a earphone slot for placing the earphone, and the earphone can be placed in the earphone slot to electrically connect with the body for charging, and the first communication module, the second communication module and the body processor are disposed in the body casing.
- the body processor is electrically connected to the first communication module and the second communication module, respectively, the second communication module includes a mobile data network module, a cellular transceiver and a WiFi transceiver; and the earphone comprises an ear soft rubber disposed at the end And a headphone casing, wherein the earphone casing is provided with a headphone communication module, a headphone processor, a speaker and a pickup, and the earphone processor is electrically connected to the earphone communication module, the speaker and the pickup respectively, and the earphone communication module is wirelessly connected with the first communication module.
- a body energy storage circuit electrically connected to the body processor is further disposed in the body casing, and the body energy storage circuit is further connected with a charging module and a power output circuit, wherein the power output circuit is further connected.
- the charging module includes a wireless charging module or a USB interface charging module; the earphone housing is further provided with a headphone energy storage circuit connected to the earphone processor, and the earphone energy storage circuit further Connected to the power input end; wherein the power output end matches the power input end, including but not limited to a metal contact, a metal thin face or a metal male and female plug connector.
- the earphone placed in the earphone slot is detachably connected to the body by magnetic attraction, snapping or snapping; the wristband type AI voice interaction device is further provided with a headset for making the earphone A tilting mechanism that is separated from the earphone slot.
- the second communication module further includes: an e-SIM card module.
- the earphone communication module and the first communication module are wirelessly connected via Bluetooth, and the earphone comprises a TWS earphone or a classic stereo bluetooth earphone or a classic single-sided bluetooth earphone; wherein when the earphone is a TWS earphone, the main Both the earphone and the slave earphone can pick up the user voice signal and send it to the body through the first communication module.
- the body processor denoises and compares the main earphone and the user voice respectively picked up from the earphone into a voice signal.
- the second communication module can be used to implement a wireless communication connection between the wristband-type AI voice interaction device and the smart home device.
- the body is further provided with a body touch key and a body LED connected to the body processor
- the earphone is further provided with a connection with the earphone processor. Headphones touch keys and headphone LEDs.
- the present application provides a TWS earphone, which is in-ear type, including a main earphone and a slave earphone, the main earphone and the slave earphone structure are symmetrical, and the main earphone and the slave earphone include an ear soft rubber, a earphone casing, and Upper cover
- the earphone housing is provided with a headphone PCB, a headphone battery, a speaker and a headphone magnetic device, and the headphone PCB is provided with a headphone communication module, a headphone processor, a headphone energy storage circuit and a pickup;
- An earphone battery is disposed under the earphone PCB, and the earphone battery is electrically connected to the earphone PCB;
- a headphone magnetic device is disposed under the earphone battery, and a power input end is disposed adjacent to the earphone magnetic device, and the electrical energy is The input end is electrically connected to the earphone energy storage circuit;
- the earphone casing is provided with a corresponding hole position for the end metal head of the power input end to protrude outside the earphone casing; the earphone casing is further provided with a sound collecting hole, and the sound collecting hole position Opposite to the pickup;
- a speaker is disposed at an end of the earphone and behind the ear soft rubber.
- the present application provides a wristband-type AI voice interaction system, comprising: the wristband-type AI voice interaction device according to any one of claims 1-7, and a cloud server, the wristband-type AI voice The interaction device is in communication with the cloud server.
- the system includes: the user voice picked up by the pickup of the wristband-type AI voice interaction device performs analog-to-digital conversion through the earphone processor, and the analog-to-digital conversion obtains a digital voice signal, and then is sent to the first communication through the earphone communication module.
- the module, the body processor is configured to send the digital voice signal to the cloud server through the second communication module, and log in to the interface of the corresponding cloud server to perform voice recognition and semantic analysis on the digital voice signal, and after the analysis is completed,
- the cloud server invokes corresponding network data, and sends the network data to the wristband-type AI voice interaction device, and the earphone of the wristband-type AI voice interaction device performs corresponding voice broadcast according to the network data.
- the wristband type AI voice interactive device of the present application places the TWS earphone in the wristband type charging seat, which can make the TWS earphone and the charging seat thereof convenient to carry; and because the TWS earphone can be used with the calling and sending
- the information is connected to the charging socket of the Internet, so that the TWS earphone is no longer dependent on the mobile phone; and the wristband type AI voice interactive device of the present application has the functions of making a call, sending information and surfing the Internet, and passing AI voice. Interaction replaces the interactive mode of mobile phone screen operation, which can meet people's daily needs, making people reduce their dependence on mobile phones, and can reduce people's eye time and protect eyesight.
- FIG. 1 is a block diagram of a wristband type AI voice interaction device and system according to the present application.
- FIG. 2 is a schematic diagram of a wristband type AI voice interaction device and system according to an embodiment
- FIG. 3 is a schematic structural diagram of a wristband type AI voice interaction device according to an embodiment
- FIG. 4 is a schematic diagram showing a split type of a wristband type AI voice interactive device according to an embodiment
- Figure 5 is a perspective view showing the structure of an earphone of an embodiment
- FIG. 6 is an exploded view of an earphone structure of an embodiment
- Figure 7 is a perspective view of a body structure of an embodiment
- Figure 8 is an exploded view of the body structure of an embodiment
- FIG. 9 is a schematic structural view of a tilting mechanism of an embodiment
- FIG. 10 is a block diagram showing the structure of an earphone according to an embodiment
- 11 is a block diagram of a structure of an embodiment of an embodiment.
- Embodiment 1 is a diagrammatic representation of Embodiment 1:
- the present application provides a wristband-type AI voice interaction device, including a body 10 and an earphone 20 detachably coupled to the body.
- the body 10 includes a body casing 101 and a wristband 102a/102b.
- the wristband 102a/102b is fixedly connected to the body casing 101.
- the body casing 101 is provided with an earphone slot 112 for placing an earphone.
- the earphone 20 can be placed in the earphone slot 112.
- the body 10 is electrically connected for charging.
- a first communication module 11, a second communication module 12, and a body processor 19 are disposed in the main body casing 101.
- the body processor 19 is electrically connected to the first communication module 11 and the second communication module 12, respectively, and the second communication module 12 includes a mobile unit.
- Data internet module, cellular transceiver and WiFi transceiver are disposed in the main body casing 101.
- the earphone 20 includes an ear soft rubber 202 and an earphone casing 201 disposed at the end.
- the earphone casing 201 is provided with a headphone communication module 21, a headphone processor 29, a speaker 28 and a pickup 27, and the earphone processor 29 and the earphone communication module 21, respectively.
- the speaker 28 and the pickup 27 are electrically connected, and the headphone communication module 21 is wirelessly connected to the first communication module 11.
- the pickup 27 is used to pick up a voice signal spoken by the user, and the voice signal is processed by the headphone processor 29 (analog-to-digital conversion), and then converted into a corresponding digital voice signal and sent out through the headphone communication module 21.
- the main processor 19 obtains the digital voice signal sent by the earphone communication module 21 through the first wireless communication module 11, and responds to the digital voice signal, and can communicate with the cloud server 8 through the mobile data network module or the WiFi transceiver to access the cloud server. 8 speech recognition and semantic analysis of digital speech signals.
- the process of data interaction is specifically: the processor 19 responds to the digital voice signal transmitted by the first wireless communication module 11, and sends the digital voice signal to the cloud server 8 through the second wireless communication module 12, and logs in to the corresponding cloud server. 8 interface, the server 8 performs voice recognition and semantic analysis on the digital voice signal; after the analysis is completed, if the result of the analysis is related to making a call or sending a short message, the analysis result is sent back to the body 10, and then the body 10 is utilized by the cellular transceiver.
- the prior art realizes the functions of making a call, sending a short message, etc.
- the server 8 performs corresponding Internet data processing, calls corresponding network data, and sends the network data back to the wristband type AI voice interaction device, and the wristband type AI voice interaction After receiving the network data, the device causes the headset to perform corresponding voice broadcast according to the network data.
- the device After receiving the network data, the device causes the headset to perform corresponding voice broadcast according to the network data.
- the cloud server 8 can launch a program for Internet search (such as Baidu search) and send the search result back to the wristband-type AI voice interaction device and broadcast it in voice, or start a program to call the network music player resource for music playback, or start Road navigation applications (such as Gaud ⁇ maps) navigate, or launch programs to order audio programs and more.
- a program for Internet search such as Baidu search
- start Road navigation applications such as Gaud ⁇ maps
- the main body casing 101 is further provided with a body energy storage circuit 13 electrically connected to the body processor 19, and a charging module 138 and a power output circuit 14 electrically connected to the body energy storage circuit 13.
- the power output circuit 14 is further connected with a charging module 138.
- the power output terminal 15 and the body energy storage circuit 13 are also connected to the body battery 130 (see FIG. 11).
- the first communication module 11, the second communication module 12, the body processor 19, the body energy storage circuit 13, the power output circuit 14, the power output terminal 15, and the charging module 138 constitute the basic composition of the body 10.
- the first communication module 11 , the second communication module 12 , the body processor 19 , the body energy storage circuit 13 , the power output circuit 14 , and the power output terminal 15 are disposed on the body.
- the PCB100 On the PCB100.
- the earphone housing 201 is further provided with a headphone energy storage circuit 23 electrically connected to the earphone processor 19, and a power input terminal 25 electrically connected to the earphone energy storage circuit 23.
- the earphone energy storage circuit 23 is further connected with the earphone battery 230 (as shown in the figure). 10).
- the power input end 25 of the earphone is matched with the power output end 15 of the body, and may include, but is not limited to, a metal contact, a thin metal surface or a metal male and female plug connector, and the metal contact form is shown in FIG. 6 and FIG. .
- the headphone communication module 21, the headphone processor 29, the speaker 28, the pickup 27, the headphone energy storage circuit 23, and the power input terminal 25 constitute a basic composition of the earphone 20.
- the headphone communication module 21, the headphone processor 29, the pickup 27, and the headphone energy storage circuit 23 are disposed on the headphone PCB 200.
- the charging module 138 includes an existing wireless charging module or a conventional USB interface charging module.
- the body 10 When the earphone 10 is charged, when the earphone 10 is placed in the earphone slot, if the charging module 138 is not connected to the external power source, the body 10 transmits power to the power input terminal 25 through the body battery 130, the power output circuit 14 and the power output terminal 15, so that The earphone 20 is charged; if the charging module 138 is connected to the external power source, the body 10 preferentially uses the power output circuit 14 and the power output terminal 15 to transmit power to the power input terminal 25, and after the charging of the earphone 20 is completed, the body is stored again.
- the energy circuit 13 charges the body battery 130.
- the wristband-type AI voice interactive device picks up the user's voice through the pickup 27, converts it into a digital voice signal through the earphone processor 29, and then passes through the earphone communication module 21.
- the device is sent to the first communication module 11.
- the body processor 19 can communicate with the cloud server 8 through the mobile data network module or the WiFi transceiver, and send the voice signal to the cloud server 8 in response to the digital voice signal.
- the cloud server 8 performs voice recognition and semantic analysis. After the analysis is completed, if the result of the analysis is related to making a call or sending a short message, the analysis result is sent back to the portable intelligent voice interaction.
- the server performs corresponding Internet data processing, calls the corresponding network data, and sends the network data back to the wristband-type AI voice interactive device.
- the band AI voice interaction device After receiving the network data, the band AI voice interaction device causes the earphone to perform corresponding voice broadcast according to the network data.
- the belt type AI voice interaction device enables the wristband type AI voice interaction device to not require a processor with powerful computing power, nor an expensive display screen, but only needs better communication capability, and can save not only the mobile phone but also the mobile phone.
- the hardware cost of the wristband-type AI voice interactive device, and the use of more convenient and intelligent, can make people leave the dependence on the mobile phone.
- the earphone 20 placed in the earphone slot 112 is detachably connected to the body 10 by magnetic attraction, snapping or snapping, and the magnetic attraction shown in FIG. 5 to FIG.
- the headphone magnetic device 205 and the body magnetizing device 105 are attracted to each other.
- a position sensor electrically connected to the body processor 19 is further disposed in the body casing 101.
- the position sensor is configured to detect whether the position of the earphone 20 in the earphone slot 112 is accurate, and avoid the power input end 25 and the body of the earphone.
- the power output terminal 15 is "virtually connected", which affects the charging effect of the earphone.
- the wristband-type AI voice interactive device is also provided with a tilting mechanism for separating the earphone 20 from within the earphone slot 112.
- the lifting structure 30 is a T-shaped structure, and the lifting structure 30 includes an active lever 31, a left linkage 32b and a right linkage 32a, and the left linkage 32b is provided with a left cross.
- the lever 34b and the right linkage rod 32a are provided with a right crossbar 34a.
- the left linkage lever 32b and the right linkage lever 32a are bolted to the active lever 31 via the linkage shaft 33, and the active lever 31 is pressed.
- the left linkage lever 32b and the right linkage lever 32a can be Up and down activities. Referring to FIG. 4 and FIG.
- the end of the active lever 31 of the lifting structure 30 protrudes from the through hole 111 provided in the body casing 101, and the left linkage bar 32b and the right linkage bar 32a are respectively disposed in the left earphone slot 112a and the right earphone slot 112b.
- the active lever 31 is pressed downward, the left interlocking lever 32b and the right interlocking lever 32a lift the earphone 20 provided in the earphone slot 112.
- the second communication module 12 further includes an e-SIM card module 120.
- the e-SIM card module 120 is embedded in the internal body 10, and the user does not need to purchase the device and insert the card himself.
- the user's network and the package can be used directly by software registration or direct purchase.
- a separate SIM card slot is required to be designed so that the body 10 has a lighter, thinner body and is also less expensive to manufacture.
- a communication antenna 107 is further disposed in the wristband 102a/102b, and the communication antenna 107 is electrically connected to the second communication module 12.
- the wristband 102a and the wristband 102b are buckled to the left and right by the button 106, so that the body 10 can be comfortably worn on the wrist.
- the earphone communication module 21 and the first communication module 11 can be wirelessly connected through a wireless connection such as WiFi, Bluetooth, or infrared.
- the earphone communication module 21 and the first communication module 11 can be wirelessly connected by Bluetooth, that is, the earphone communication module 21 and the first communication module 11 include a Bluetooth module.
- the earphone 20 can be a TWS earphone.
- the main earphone is placed in the left earphone slot 112a, and the earphone is placed in the right earphone slot 112b.
- the main earphone obtains the voice signal (including the call voice, the text message voice signal, and the network data sent back by the cloud server 8) sent by the body 10 through the earphone communication module 21 to obtain the voice signal.
- the main earphone sends the voice signal to the main earphone speaker for playback, and forwards the voice signal to the slave earphone by means of near field communication such as microwave communication.
- the main earphone or the slave earphone can pick up the user voice signal and send it to the body 10 through the first communication module 11, and the body processor 19 denoises the main earphone and the user voice respectively picked up from the earphone. , compare, merge into a voice signal.
- the second communication module 12 can also be used for wireless communication connection between the wristband type AI voice interaction device and the existing smart home device, thereby further implementing control of the smart home device through AI voice, so that the wristband type
- the AI voice interactive device becomes a "remote control" for smart homes.
- the earphone 20 picks up a voice command spoken by the user, and the earphone processor 29 sends a voice command to the first communication module 11 of the body through the earphone communication module 21 in response to the voice command, and the body processor 19 responds to the voice command.
- the second communication module 12 is sent to the smart home device, so that the smart home performs operations such as power on, power off, or temperature adjustment.
- the body 10 is further provided with a body touch key 104 and a body LED 103 connected to the body processor 19, and the body LED 103 includes a power indicator light, a SIM card light, a WiFi light, and a voice light.
- a body touch key 104 and a body LED 103 connected to the body processor 19, and the body LED 103 includes a power indicator light, a SIM card light, a WiFi light, and a voice light.
- the battery indicator light is set to 4 grids, when the battery is displayed.
- the power is greater than 75% and less than or equal to 100%, and the four grid lights are all bright;
- the power is greater than 50% and less than or equal to 75%, and the three-cell lamp is lit;
- the power is greater than 25% and less than or equal to 50%, and the two lights are lit;
- the power is greater than 10% and less than or equal to 25%, and one grid is lit;
- the power is less than or equal to 10%, and one lamp breathes.
- a green light indicates a signal, a flashing indicates a search, and a non-light indicates no service;
- a green light indicates a signal, a flashing indicates a search, and a non-light indicates no service;
- WiFi traffic indicates that the green light of the WiFi is breathing
- SIM card traffic indicates that the green card of the SIM card is breathing
- WiFi is preferentially used.
- the earphone 20 is also provided with an earphone touch key 204 and an earphone LED 203 that are coupled to the earphone processor 29.
- the wristband-type AI voice interaction device of the present application includes three modes, a charging mode, a standby mode, and a voice interaction mode.
- the earphone 20 is placed on the body 10, and the power output terminal 15 is electrically connected to the power input terminal 25.
- the body 10 only charges the earphone 20, and is turned off after being fully charged;
- the voice interaction mode the earphone 20 is taken out from the earphone slot 112, and is separated from the body 10.
- the earphone communication module 21 is wirelessly connected to the first communication module 11, and the earphone 20 and the body 10 are automatically turned on to perform voice interaction.
- Standby mode If the preset time is exceeded, the earphone 20 fails to interact with the body 10, the earphone 20 performs a sleep mode, the body 10 enters a standby mode, and the earphone touch key 204 can be touched to wake up the earphone 20 and the body 10.
- the earphone 20 can send a signal for searching the body 10 through the earphone communication module 21.
- the indicator light of the body LED 103 will be made.
- the high frequency flickering is convenient for the user to retrieve the lost body 20;
- the main body 10 can send a signal for searching for the earphone through the first communication module 11, and when the earphone 20 receives the search signal through the earphone communication module 21,
- the indicator light of the headphone LED 204 will be flashed at a high frequency and the speaker 28 will emit a prompt tone, thereby facilitating the user to retrieve the lost earphone.
- the wristband AI voice interactive device of the present application has a retrieval function to avoid loss of the earphone or the charging stand (body 10). Therefore, compared with the existing earphone charging stand (including the existing TWS earphone charging stand), the wristband type AI voice interactive device is not only convenient to carry, but also has a retrieving function, so that the earphone and the charging stand are not easily lost.
- the wristband type AI voice interactive device of the present application places the TWS earphone in the wristband type charging stand (body), which can make the TWS earphone and its charging stand easy to carry; and because the TWS earphone can be used with dialing
- the charging stand (body) of the functions of telephone, sending information and surfing the Internet is connected, so that the TWS earphone is no longer dependent on the mobile phone; and the wristband type AI voice interactive device of the present application has the ability to make a call, send a message, and access the Internet. Function, and replace the interaction mode of mobile phone screen operation through AI voice interaction, which can meet people's daily needs, make people reduce their dependence on mobile phones, and reduce people's eye time and protect eyesight.
- Embodiment 2 is a diagrammatic representation of Embodiment 1:
- the present application further provides a TWS earphone including an in-ear type, including a main earphone and a slave earphone, the main earphone and the slave earphone structure are symmetrical, and the main earphone and the slave earphone include an ear soft rubber 202.
- the earphone housing 201 is provided with a headphone PCB 200, a headphone battery 230, a speaker 28 and a headphone magnetic device 205.
- the headphone PCB 200 is provided with a headphone communication module 21, a headphone processor 29, a headphone energy storage circuit 23 and a pickup 27.
- the earphone processor 19 is electrically connected to the earphone communication module 21, the pickup 27, the speaker 28 and the earphone storage circuit 23, respectively, and the earphone storage circuit 23 is also electrically connected to the earphone battery 230 and the power input/output terminal 25.
- An upper cover 207 is disposed above the earphone PCB200, and an earphone battery 230 is disposed under the earphone PCB200.
- the earphone battery 230 is electrically connected to the earphone PCB200.
- the earphone battery 230 is disposed under the earphone battery 230, and the electric energy input is disposed adjacent to the earphone magnetic device 205.
- Terminal 25, the power input terminal 25 is electrically coupled to the headphone energy storage circuit 23.
- the earphone housing 201 is provided with corresponding holes for electrically connecting the end metal head of the power input terminal 25 beyond the earphone housing 201 to the power output terminal 15 provided in the body housing.
- the earphone housing 201 is further provided with a sound collecting hole 206, and the sound collecting hole 206 is positioned opposite to the pickup 27 so that the pickup 27 picks up the user's voice signal.
- the speaker 28 is disposed at the end of the earphone 20 and behind the ear soft rubber 202, so that the user can hear the call voice, the text text conversion voice and the network data converted voice received by the earphone communication module 21.
- the main headset obtains electrical signals (including call voice, SMS text voice signal, and cloud server 8) sent by the external device (including the mobile phone, the body 10, etc.) through the first communication module 11 (Bluetooth module).
- the main earphone sends the voice signal to the main earphone speaker for playback, and forwards the voice signal to the slave earphone by means of near field communication such as microwave communication.
- the main earphone or the slave earphone can pick up the user voice signal and send the voice signal through the first communication module 11 (Bluetooth module).
- the earphone of this embodiment can be placed on the charging stand (body 10) in the first embodiment for charging, or can be placed on the existing TWS earphone charging stand for charging, which is more flexible to use; not only can be the body 10 in the first embodiment;
- a wireless connection is used as a wristband-type AI voice interactive device. It can also be connected to an existing mobile phone Bluetooth, used as an ordinary TWS headset, or connected to other Bluetooth devices, and used as a normal Bluetooth headset.
- the TWS earphone itself has good adaptability and perfect functions.
- Embodiment 3 is a diagrammatic representation of Embodiment 3
- the present application further provides a wristband-type AI voice interaction system, including: a wristband-type AI voice interaction device as in Embodiment 1, and a cloud server 8, the wristband-type AI voice interaction device and Cloud server 8 communication connection.
- a wristband-type AI voice interaction system including: a wristband-type AI voice interaction device as in Embodiment 1, and a cloud server 8, the wristband-type AI voice interaction device and Cloud server 8 communication connection.
- the process of data processing of the wristband AI voice interactive system includes:
- the voice recognition stage the user voice picked up by the pickup 27 is subjected to analog-to-digital conversion by the earphone processor 29, and the digital-to-digital signal is obtained by analog-to-digital conversion, and then sent to the first communication module 11 through the earphone communication module 21, and the body processor responds to the digital voice signal.
- the digital voice signal is sent to the cloud server 8 through the second communication module 12. After receiving the digital voice signal, the cloud server 8 logs in the corresponding interface to perform voice recognition and semantic analysis on the digital voice signal.
- the cloud server 8 After the analysis is completed, the cloud server 8 calls corresponding network data, such as performing a Baidu search to obtain search results, or calling a network music player to obtain song audio resources, or using a high-tech map search, planning a path, etc. to navigation data, etc. And sending the network data to the wristband AI voice interaction device;
- the voice broadcast stage after receiving the network data sent by the cloud server 8 through the second communication module 12, the wristband-type AI voice interaction device sends the network data to the earphone 20 through the first communication module 11, so that the earphone 20 is based on the network data. A corresponding voice announcement is made using the speaker 28.
- the wristband AI voice interactive system of the present application a large amount of data processing and data analysis work is completed by the cloud server in the cloud, and the network data is transmitted by using mobile data communication (3G/4G/5G) or WiFi communication.
- the resource is sent back to the wristband-type AI voice interaction device worn by the user, so that the wristband-type AI voice interaction device does not require a processor with powerful computing power, and does not need an expensive display screen, but only needs better communication capability. That is to say, compared with the mobile phone, not only can the hardware cost of the wristband-type AI voice interaction device be saved, but also the use is more convenient and intelligent, which can make people leave the dependence on the mobile phone.
- the program may be stored in a computer readable storage medium, and the storage medium may include: a read only memory, a random access memory, a magnetic disk, an optical disk, a hard disk, etc.
- the computer executes the program to implement the above functions.
- the program is stored in the memory of the device, and when the program in the memory is executed by the processor, all or part of the above functions can be realized.
- the program may also be stored in a storage medium such as a server, another computer, a magnetic disk, an optical disk, a flash disk or a mobile hard disk, and may be saved by downloading or copying.
- the system is updated in the memory of the local device, or the system of the local device is updated.
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Abstract
一种腕带式AI语音交互装置,本体以及与本体可拆卸连接的耳机,通过拾音器拾取用户语音,经模数转换得到数字语音信号,再通过耳机通讯模块发送至第一通讯模块,本体处理器响应该数字语音信号,通过移动数据上网模块或WiFi收发器实现与云服务器通讯连接,并将语音信号发送至云服务器进行语音识别及语义分析,分析完成后,云服务器将分析结果发送回腕带式AI语音交互装置,再通过蜂窝收发器实现拨打电话、发送短信等功能,或调用对应网络数据,并将该网络数据发送回腕带式AI语音交互装置,使得腕带式AI语音交互装置的耳机根据该网络数据进行相应的语音播报。同时,本申请还提供一种TWS耳机和一种腕带式AI语音交互系统。
Description
本发明涉及便携式通讯设备,具体涉及一种TWS耳机、腕带式AI语音交互装置及系统。
TWS:为True Wireless Stereo的缩写,是真正无线立体声的意思。从技术上来说是指手机通过连接主音箱,再由从主音箱通过蓝牙无线方式连接从音箱,实现真正的蓝牙左右声道无线分离。不连接从音箱时,主音箱回到单体立体声。TWS耳机的优势在于:第一:真无线,完全摒弃有线烦恼;第二:使用上的方便,一个人使用,双耳无线互联,可畅享受美妙无线立体声;也可两个人共享音乐,十米范围内,两个人可以同听一首歌;左右耳独立使用时,可单独配对不同手机使用。
尽管具有诸多优点,但是,TWS耳机(包括苹果的irPods)取消了耳机线,常常容易丢失,为此需要给TWS耳机匹配一个收纳盒;而且,该收纳盒内还设置有充电模块,因此,该收纳盒也是一个充电盒,可用以TWS耳机充电,但是,同样存在的问题是,现有的收纳盒也存在携带不方便、容易丢失的缺点。
现有的TWS(比如:苹果的irPods)使用时,通常是在中间设备(充电盒)设置蓝牙适配器,使得耳机实现与手机的蓝牙连接;具体传输语音时,耳机与蓝牙直接连接。TWS耳机在使用时没办法离开手机。自从智能手机的出现,人们越来越依赖手机,打电话、查资料、听歌娱乐都无法离开手机,甚至衍生出一种手机病。实际上,并不是每个人都需要功能越来越多、屏幕越来越大的智能手机,另外,离开手机,让眼睛离开刺眼的手机屏幕,过一种简单的生活方式,也是越来越多人的需求。
发明内容
针对现有技术的不足,本申请提供一种TWS耳机、腕带式AI语音交互装置及系统,使得TWS耳机及其充电座携带方便,并使得TWS耳机不再依赖于手机使用,也可使得人们减少对手机的依赖。
根据第一方面,本申请提供一种腕带式AI语音交互装置,包括本体以及与所述本体可拆卸连接的耳机,所述本体包括本体外壳和腕带,腕带与本体外壳固定连接,本体外壳上设置有用于放置耳机的耳机槽,耳机可放置于所述耳机槽内与本体实现电连接进行充电,所述本体外壳内设置有第一通讯模块、第二通讯模块和本体处理器,所述本体处理器分别与第一通讯模块、第二通讯模块电连接,所述第二通讯模块包括移动数据上网模块、蜂窝收发器和WiFi收发器;所述耳机包括设置于端部的 入耳软胶和耳机外壳,耳机外壳内设置有耳机通讯模块、耳机处理器、扬声器和拾音器,耳机处理器分别与耳机通讯模块、扬声器和拾音器电连接,所述耳机通讯模块与第一通讯模块无线连接。
在一些实施例,所述本体外壳内还设置有与所述本体处理器电连接的本体储能电路,所述本体储能电路还连接有充电模块、电能输出电路,所述电能输出电路还连接有充电模块、电能输出端,所述充电模块包括无线充电模块或USB接口充电模块;所述耳机外壳内还设置有与耳机处理器相连接的耳机储能器电路,所述耳机储能电路还连接有电能输入端;其中,所述电能输出端与所述电能输入端相匹配,包括但不限于金属触点、金属薄面或金属公母插接头。
在一些实施例,所述放置于所述耳机槽内的耳机通过磁吸、扣合或卡合方式实现与所述本体可拆卸连接;所述腕带式AI语音交互装置还设置有用于使得耳机从耳机槽内分离的翘起机构。
在一些实施例,所述第二通讯模块还包括:e-SIM卡模块。
在一些实施例,所述耳机通讯模块与第一通讯模块通过蓝牙实现无线连接,所述耳机包括TWS耳机或经典立体声蓝牙耳机或经典单边蓝牙耳机;其中,所述耳机为TWS耳机时,主耳机与从耳机均可拾取用户语音信号,并通过第一通讯模块发送至本体,本体处理器将主耳机、从耳机分别拾取的用户语音进行去噪、比较,融合为一个语音信号。
在一些实施例,所述第二通讯模块可用于实现腕带式AI语音交互装置与智能家居装置实现无线通讯连接。
如权利要求1所述的装置,其特征在于,所述本体还设置有与所述本体处理器相连接的本体触摸键和本体LED,所述耳机上还设置有与所述耳机处理器相连接的耳机触摸键和耳机LED。
根据第二方面,本申请提供一种TWS耳机,所述TWS耳机为入耳式,包括主耳机与从耳机,主耳机与从耳机结构对称,主耳机与从耳机均包括入耳软胶、耳机外壳和上盖板;
所述耳机外壳内设置有耳机PCB、耳机电池、扬声器和耳机磁吸装置,所述耳机PCB上设置有耳机通讯模块、耳机处理器、耳机储能电路和拾音器;
所述耳机PCB下方设置有耳机电池,所述耳机电池与所述耳机PCB电连接;所述耳机电池下方设置有耳机磁吸装置,紧邻所述耳机磁吸装置设置有电能输入端,所述电能输入端与所述耳机储能电路电连接;
所述耳机外壳上设置有相应的孔位以用于所述电能输入端的端部金属头伸出所述耳机外壳之外;所述耳机外壳上还设置有拾音孔,所述拾音孔位置与所述拾音器相对;
所述耳机的端部、入耳软胶后方设置有扬声器。
根据第二方面,本申请提供一种腕带式AI语音交互系统,包括:如权利要求1-7任一项所述的腕带式AI语音交互装置以及云服务器,所述腕带式AI语音交互装置与所述云服务器通讯连接。
在一些实施例,所述系统包括:腕带式AI语音交互装置的拾音器拾取的用户语音通过耳机处理器进行模数转换,模数转换得到数字语音信号,再通过耳机通讯模块发送至第一通讯模块,本体处理器响应所述数字语音信号,通过第二通讯模块向云服务器发送所述数字语音信号,并登录相应云服务器的接口,对数字语音信号进行语音识别及语义分析,分析完成后,云服务器调用对应网络数据,并将所述网络数据发送至腕带式AI语音交互装置,腕带式AI语音交互装置的耳机根据所述网络数据进行相应的语音播报。
依据上述实施例,本申请的腕带式AI语音交互装置将TWS耳机放置于腕带式的充电座内,可使得TWS耳机及其充电座携带方便;并由于TWS耳机可与具有拨打电话、发送信息和上网等功能的充电座相连接,使得TWS耳机不再依赖于手机就可使用;而且由于本申请的腕带式AI语音交互装置具有拨打电话、发送信息和上网等功能,并通过AI语音交互取代了手机屏幕操作的交互方式,可满足人们的日常需求,使得人们减少对手机的依赖,并可减少人们的用眼时间,保护视力。
图1为本申请的一种腕带式AI语音交互装置及系统框图示意图;
图2为一种实施例的腕带式AI语音交互装置及系统组成示意图;
图3为一种实施例的腕带式AI语音交互装置结构示意图;
图4为一种实施例的腕带式AI语音交互装置分体式示意图;
图5为一种实施例的耳机结构透视图;
图6为一种实施例的耳机结构爆炸图;
图7为一种实施例的本体结构透视图;
图8为一种实施例的本体结构爆炸图;
图9为一种实施例的翘起机构结构示意图;
图10为一种实施例的耳机结构框图;
图11为一种实施例的本体结构框图。
附图标记:云服务器8,本体10,第一通讯模块11,第二通讯模块12,本体储能电路13,电能输出电路14,电能输出端15,位置传感器16,本体处理器19,耳机20,耳机通讯模块21,耳机储能电路23,电能输入端25,拾音器27,扬声器28,耳机处理器29,翘起机构30,主动杆31,左联动杆32b,右联动杆32a,左横杆34b,右横杆34a,本体PCB100,本体外壳101,腕带102,左腕带102a,右腕带102b,本体LED103,本体触摸键104,本体磁吸装置105,纽扣106,通讯天线107,通孔111, 耳机槽112,左耳机槽112a,右耳机槽112b,本体电池130,充电模块138,耳机PCB200,耳机外壳201,入耳软胶202,耳机LED203,耳机触摸键204,耳机磁吸装置205,拾音孔206,上盖板207,耳机电池230。
下面通过具体实施方式结合附图对本发明作进一步详细说明。其中不同实施方式中类似元件采用了相关联的类似的元件标号。在以下的实施方式中,很多细节描述是为了使得本申请能被更好的理解。然而,本领域技术人员可以毫不费力的认识到,其中部分特征在不同情况下是可以省略的,或者可以由其他元件、材料、方法所替代。在某些情况下,本申请相关的一些操作并没有在说明书中显示或者描述,这是为了避免本申请的核心部分被过多的描述所淹没,而对于本领域技术人员而言,详细描述这些相关操作并不是必要的,他们根据说明书中的描述以及本领域的一般技术知识即可完整了解相关操作。
另外,说明书中所描述的特点、操作或者特征可以以任意适当的方式结合形成各种实施方式。同时,方法描述中的各步骤或者动作也可以按照本领域技术人员所能显而易见的方式进行顺序调换或调整。因此,说明书和附图中的各种顺序只是为了清楚描述某一个实施例,并不意味着是必须的顺序,除非另有说明其中某个顺序是必须遵循的。
本文中为部件所编序号本身,例如“第一”、“第二”等,仅用于区分所描述的对象,不具有任何顺序或技术含义。而本申请所说“连接”、“联接”,如无特别说明,均包括直接和间接连接(联接)。
实施例一:
请参考图1至图8,本申请提供一种腕带式AI语音交互装置,包括本体10以及与本体可拆卸连接的耳机20。
本体10包括本体外壳101和腕带102a/102b,腕带102a/102b与本体外壳101固定连接,本体外壳101上设置有用于放置耳机的耳机槽112,耳机20可放置于该耳机槽112内与本体10实现电连接进行充电。
本体外壳101内设置有第一通讯模块11、第二通讯模块12和本体处理器19,本体处理器19分别与第一通讯模块11、第二通讯模块12电连接,第二通讯模块12包括移动数据上网模块、蜂窝收发器和WiFi收发器。
耳机20包括设置于端部的入耳软胶202和耳机外壳201,耳机外壳201内设置有耳机通讯模块21、耳机处理器29、扬声器28和拾音器27,耳机处理器29分别与耳机通讯模块21、扬声器28和拾音器27电连接,该耳机通讯模块21与第一通讯模块11无线连接。拾音器27用于拾取用户说出的语音信号,所述语音信号经耳机处理器29处理(模数转换)后,转换为相应的数字语音信号经耳机通讯模块21发出。
本体处理器19通过第一无线通讯模块11获取耳机通讯模块21发出的数字语音信号,并响应该数字语音信号,可通过移动数据上网模块或WiFi收发器与云服务器8进行通讯连接,访问云服务器8对数字语音信号进行语音识别和语义分析。
其中,数据交互的过程具体为:处理器19响应于经第一无线通讯模块11传输的数字语音信号,并将该数字语音信号通过第二无线通讯模块12发送至云服务器8,登录相应云服务器8的接口,服务器8对数字语音信号进行语音识别及语义分析;分析完成后,若分析的结果与拨打电话、发送短信有关,将分析结果发送回本体10,再使得本体10通过蜂窝收发器利用现有技术实现拨打电话、发送短信等功能,否则,由服务器8进行相应的互联网数据处理,调用对应网络数据,并将该网络数据发送回腕带式AI语音交互装置,腕带式AI语音交互装置接收该网络数据后,使得耳机根据该网络数据进行相应的语音播报。例如:
云服务器8可启动程序以进行互联网搜索(如百度搜索)并将搜索结果发回腕带式AI语音交互装置并以语音形式播报、或启动程序以调用网络音乐播放器资源进行音乐播放、或启动道路导航应用程序(如高德地图)进行导航、或启动程序以点播音频节目等等。
本体外壳101内还设置有与本体处理器19电连接的本体储能电路13,以及与本体储能电路13电连接的充电模块138、电能输出电路14,电能输出电路14还连接有充电模块138、电能输出端15,本体储能电路13还连接有本体电池130(如图11)。
上述结构中,第一通讯模块11、第二通讯模块12、本体处理器19、本体储能电路13、电能输出电路14、电能输出端15和充电模块138构成了本体10的基本组成结构。如图2和图8所示,在一些实施例中,第一通讯模块11、第二通讯模块12、本体处理器19、本体储能电路13、电能输出电路14和电能输出端15设置于本体PCB100上。
耳机外壳201内还设置有与耳机处理器19电连接的耳机储能电路23,以及与耳机储能电路23电连接的电能输入端25,耳机储能电路23还连接有耳机电池230(如图10)。耳机的电能输入端25与本体的电能输出端15与相匹配,可以包括但不限于金属触点、金属薄面或金属公母插接头等形式,图6与图8中显示的为金属触点形式。
上述结构中,耳机通讯模块21、耳机处理器29、扬声器28、拾音器27、耳机储能电路23和电能输入端25构成了耳机20的基本组成。如图2和图5所示,在一些实施例中,耳机通讯模块21、耳机处理器29、拾音器27和耳机储能电路23设置于耳机PCB200上。
在一些实施例中,充电模块138包括现有的无线充电模块或传统的USB接口充电模块。
耳机充电时,当耳机10放置于耳机槽内时,若充电模块138未与外部电源相连接,本体10通过本体电池130、电能输出电路14和电能输出端15向电能输入端25传输电能,使得耳机20获得充电;若充电模块138与外部电源相连接的情况下,本体10优先利用电能输出电路14和电能输出端15向电能输入端25传输电能,在耳机20充电完成后,再利用本体储能电路13向本体电池130充电。
由此可见,由于具有本体10和耳机20这样的基本组成结构,腕带式AI语音交互装置通过拾音器27拾取用户语音,经耳机处理器29模数转换为数字语音信号,再通过耳机通讯模块21发送至第一通讯模块11,本体处理器19响应该数字语音信号,可通过移动数据上网模块或WiFi收发器实现与云服务器8通讯连接,并将语音信号发送至云服务器8。其中,该数字语音信号发送至云服务器8后,由云服务器8进行语音识别及语义分析,分析完成后,若分析的结果与拨打电话、发送短信有关,将分析结果发送回便携式智能语音交互,再通过蜂窝收发器利用现有技术实现拨打电话、发送短信等功能,否则,由服务器进行相应的互联网数据处理,调用对应网络数据,并将该网络数据发送回腕带式AI语音交互装置,腕带式AI语音交互装置接收该网络数据后,使得耳机根据该网络数据进行相应的语音播报。
需要指出的是,由于大量的数据处理和数据分析工作是在云端由云服务器完成的,并借助移动数据通讯(3G/4G/5G)或WiFi通讯将网络数据资源发回用户佩戴在手腕的腕带式AI语音交互装置,使得腕带式AI语音交互装置不需要强大计算能力的处理器、也不需要昂贵的显示屏,而只需要较好的通讯能力即可,相比手机,不仅可节省腕带式AI语音交互装置的硬件成本,而且使用更加方便、智能,可使得人们离开对手机的依赖。
参考图4-图8,在一些实施例,放置于耳机槽112内的耳机20通过磁吸、扣合或卡合方式实现与本体10可拆卸连接,图5至图8中显示的为磁吸形式,耳机磁吸装置205与本体磁吸装置105互相吸附。
在一些实施例,本体外壳101内还设置有与本体处理器19电连接的位置传感器,位置传感器用于检测耳机20在耳机槽112内放置的位置是否准确,避免耳机的电能输入端25与本体的电能输出端15“虚接”,影响耳机的充电效果。
在一些实施例,所述腕带式AI语音交互装置还设置有用于使得耳机20从耳机槽112内分离的翘起机构。
在一个具体实施例,参考图7和图9,起翘结构30为T型结构,起翘结构30包括主动杆31、左联动杆32b和右联动杆32a,左联动杆32b上设置有左横杆34b,右联动杆32a上设置有右横杆34a,左联动杆32b、 右联动杆32a与主动杆31通过联动轴33栓接,按压主动杆31,左联动杆32b、右联动杆32a可上下活动。参考图4和图7,起翘结构30的主动杆31端部从本体外壳101设置的通孔111伸出,左联动杆32b、右联动杆32a分别设置在左耳机槽112a和右耳机槽112b下方,按压主动杆31时,左联动杆32b、右联动杆32a将翘起设置于耳机槽112内的耳机20。
参考图11,在一些实施例,第二通讯模块12还包括:e-SIM卡模块120。e-SIM卡模块120内嵌于本体10内部,不再需要用户购买设备后自己插卡,可直接采用软件注册或者直接购买等类型的方式就可以使用自己的运营商网络和套餐,由于不再需要专门设计一个独立的SIM卡槽,使得本体10具有更轻、更薄的机身,制造成本也更低。
参考图7和图8,在一个具体实施例中,腕带102a/102b内还设置有通讯天线107,通讯天线107与第二通讯模块12电连接。腕带102a与腕带102b左右扣合并通过纽扣106固定,可使得本体10舒适地佩戴与手腕上。
在一些实施例,耳机通讯模块21与第一通讯模块11可通过WiFi、蓝牙或红外等无线连接方式实现无线连接。优选地,在一种实施例,耳机通讯模块21与第一通讯模块11可蓝牙实现无线连接,即耳机通讯模块21与第一通讯模块11包括蓝牙模块,此时,耳机20可以为TWS耳机、经典立体声蓝牙耳机或经典单边蓝牙耳机。
当耳机20为TWS耳机(参考图3至图6),主耳机放置于左耳机槽112a内,从耳机放置于右耳机槽112b内。
在语音播放时,主耳机通过耳机通讯模块21来获取本体10利用第一通讯模块11所发出的语音信号(包括通话语音、短信文本语音信号和云服务器8发送回的网络数据等),获得该语音信号后,主耳机将语音信号送入主耳机扬声器播放,并用微波通信等近场通讯的方式将语音信号转发给从耳机。
在拾取用户语音信号时,主耳机或从耳机均可拾取用户语音信号,并通过第一通讯模块11发送至本体10,本体处理器19会将主耳机、从耳机分别拾取的用户语音进行去噪、比较,融合为一个语音信号。
在一些实施例,第二通讯模块12还可用于腕带式AI语音交互装置与现有的智能家居装置实现无线通讯连接,从而进一步,通过AI语音实现对智能家居装置的控制,使得腕带式AI语音交互装置成为一个智能家居的“遥控器”。具体地,耳机20拾取用户说出的语音命令,耳机处理器29响应该语音命令,通过耳机通讯模块21将语音命令发送至本体的第一通讯模块11,本体处理器19响应该语音命令,通过第二通讯模块12发送至与智能家居装置,使得智能家居执行诸如开机、关机或调温等 操作。
参考图11,在一些实施例,本体10还设置有与本体处理器19相连接的本体触摸键104和本体LED103,本体LED103包括电量显示灯、SIM卡灯、WiFi灯和语音灯。例如:
(1)电量显示灯设置为4格,显示电量时,
1)电量大于75%并且小于等于100%,四格灯全亮;
2)电量大于50%并且小于等于75%,三格灯点亮;
3)电量大于25%并且小于等于50%,两格灯点亮;
4)电量大于10%并且小于等于25%,一格灯点亮;
5)电量小于等于10%,一格灯呼吸。
(2)SIM卡灯状态指示时,
绿灯亮表示有信号,闪烁表示搜网,不亮表示无服务;
(3)WiFi灯状态指示时,
绿灯亮表示有信号,闪烁表示搜网,不亮表示无服务;
其中,有数据传输时,使用WiFi流量则指示WiFi的绿灯呼吸,使用SIM卡流量则指示SIM卡的绿灯呼吸,优先使用WiFi。
(4)语音灯状态指示时,
唤醒后亮绿灯,搜索时绿灯闪烁,播报时绿灯呼吸。
参考图10,在一些实施例,耳机20还设置有与耳机处理器29相连接的耳机触摸键204和耳机LED203。
本申请的腕带式AI语音交互装置包括三种模式,充电模式、待机模式与语音交互模式。
充电模式:耳机20放置在本体10上,电能输出端15与电能输入端25电连接,本体10仅给耳机20充电,充满电后关机;
语音交互模式:耳机20从耳机槽112内取出,与本体10分离,耳机通讯模块21与第一通讯模块11无线通讯连接,耳机20与本体10自动开机,可进行语音交互;
待机模式:若超过预设时间,耳机20未能与本体10交互,耳机20进行休眠模式,本体10进入待机模式,可触摸耳机触摸键204唤醒耳机20和本体10。
在一些实施例,通过长按耳机触摸键204可使得耳机20通过耳机通讯模块21发出搜寻本体10的信号,本体20通过第一通讯模块11接收到搜寻信号时,将使得本体LED103全部的指示灯高频闪烁,从而方便用户找回丢失的本体20;通过长按本体触摸键104可使得本体10通过第一通讯模块11发出搜寻耳机的信号,耳机20通过耳机通讯模块21接收到搜寻信号时,将使得耳机LED204全部的指示灯高频闪烁以及扬声器28发出提示音,从而方便用户找回丢失的耳机。由此可见,本申 请的腕带式AI语音交互装置具有找回功能,可避免耳机或充电座(本体10)丢失。因此,相比于现有的耳机充电座(包括现有的TWS耳机充电座),腕带式AI语音交互装置不仅携带方便,而且因为具有找回功能,使得耳机和充电座不易丢失。
综上所述,本申请的腕带式AI语音交互装置将TWS耳机放置于腕带式的充电座(本体)内,可使得TWS耳机及其充电座携带方便;并由于TWS耳机可与具有拨打电话、发送信息和上网等功能的充电座(本体)相连接,使得TWS耳机不再依赖于手机就可使用;而且由于本申请的腕带式AI语音交互装置具有拨打电话、发送信息和上网等功能,并通过AI语音交互取代了手机屏幕操作的交互方式,可满足人们的日常需求,使得人们减少对手机的依赖,并可减少人们的用眼时间,保护视力。
实施例二:
请参考图5和图6,本申请还提供一种TWS耳机,该TWS耳机包括入耳式,包括主耳机与从耳机,主耳机与从耳机结构对称,主耳机与从耳机均包括入耳软胶202、耳机外壳201和上盖板207。
耳机外壳201内设置有耳机PCB200、耳机电池230、扬声器28和耳机磁吸装置205,耳机PCB200上设置有耳机通讯模块21、耳机处理器29、耳机储能电路23和拾音器27。耳机处理器19分别与耳机通讯模块21、拾音器27、扬声器28和耳机储能电路23电连接,耳机储能电路23还与耳机电池230、电能输出入端25电连接。
耳机PCB200上方设置了上盖板207,耳机PCB200下方设置有耳机电池230,耳机电池230与耳机PCB200电连接;耳机电池230下方设置有耳机磁吸装置205,紧邻耳机磁吸装置205设置有电能输入端25,该电能输入端25与耳机储能电路23电连接。
耳机外壳201上设置有相应的孔位以用于电能输入端25的端部金属头伸出耳机外壳201之外与本体外壳内设置的电能输出端15电连接。耳机外壳201上还设置有拾音孔206,拾音孔206位置与拾音器27相对,以便拾音器27拾取用户的语音信号。
扬声器28设置于耳机20的端部、入耳软胶202后方,便于用户听到由耳机通讯模块21接收到的通话语音、短信文本转换语音和网络数据转换的语音。
在语音播放时,主耳机通过第一通讯模块11(蓝牙模块)来获取外部设备(包括手机、本体10等)所发出的电信号(包括通话语音、短信文本语音信号和云服务器8发送回的网络数据等),获得该语音信号后,主耳机将语音信号送入主耳机扬声器播放,并用微波通信等近场通讯的方式将语音信号转发给从耳机。在拾取用户语音信号时,主耳机或从耳机均可拾取用户语音信号,并通过第一通讯模块11(蓝牙模块)将 语音信号发出。
本实施例的耳机可放置于实施例一中的充电座(本体10)上充电,也可放置于现有的TWS耳机充电座上充电,使用较为灵活;不仅可以与实施例一中的本体10实现无线连接,作为一种腕带式AI语音交互装置使用,还可与现有的手机蓝牙连接,作为普通的TWS耳机使用,或与其他蓝牙设备相连接,作为普通蓝牙耳机使用,由此可见,本身的TWS耳机适应性好,功能更完善。
实施例三:
参考图1和图2,本申请还提供一种腕带式AI语音交互系统,包括:如实施例一中的腕带式AI语音交互装置以及云服务器8,该腕带式AI语音交互装置与云服务器8通讯连接。
该腕带式AI语音交互系统数据处理的过程包括:
语音识别阶段:拾音器27拾取的用户语音经耳机处理器29进行模数转换,模数转换得到数字语音信号,再通过耳机通讯模块21发送至第一通讯模块11,本体处理器响应该数字语音信号,通过第二通讯模块12向云服务器8发送该数字语音信号,云服务器8接收到该数字语音信号后,登录相应的接口,对数字语音信号进行语音识别及语义分析;
数据调用阶段:分析完成后,云服务器8调用对应网络数据,比如进行百度搜索得到搜索结果,或调用网络音乐播放器得到歌曲音频资源、或使用高德地图搜索、规划路径等到导航数据等等,并将这些网络数据发送至腕带式AI语音交互装置;
语音播报阶段:腕带式AI语音交互装置通过第二通讯模块12接收到云服务器8下发的网络数据后,将网络数据通过第一通讯模块11发送至耳机20,使得耳机20根据该网络数据利用扬声器28进行相应的语音播报。
由此可见,本申请的腕带式AI语音交互系统,大量的数据处理和数据分析工作是在云端由云服务器完成的,并借助移动数据通讯(3G/4G/5G)或WiFi通讯将网络数据资源发回被用户佩戴在手腕的腕带式AI语音交互装置,使得腕带式AI语音交互装置不需要强大计算能力的处理器、也不需要昂贵的显示屏,而只需要较好的通讯能力即可,相比手机,不仅可节省腕带式AI语音交互装置的硬件成本,而且使用更加方便、智能,可使得人们离开对手机的依赖。
本领域技术人员可以理解,上述实施方式中各种方法的全部或部分功能可以通过硬件的方式实现,也可以通过计算机程序的方式实现。当上述实施方式中全部或部分功能通过计算机程序的方式实现时,该程序可以存储于一计算机可读存储介质中,存储介质可以包括:只读存储器、随机存储器、磁盘、光盘、硬盘等,通过计算机执行该程序以实现上述 功能。例如,将程序存储在设备的存储器中,当通过处理器执行存储器中程序,即可实现上述全部或部分功能。另外,当上述实施方式中全部或部分功能通过计算机程序的方式实现时,该程序也可以存储在服务器、另一计算机、磁盘、光盘、闪存盘或移动硬盘等存储介质中,通过下载或复制保存到本地设备的存储器中,或对本地设备的系统进行版本更新,当通过处理器执行存储器中的程序时,即可实现上述实施方式中全部或部分功能。
以上应用了具体个例对本发明进行阐述,只是用于帮助理解本发明,并不用以限制本发明。对于本发明所属技术领域的技术人员,依据本发明的思想,还可以做出若干简单推演、变形或替换。
Claims (10)
- 一种腕带式AI语音交互装置,其特征在于,包括本体以及与所述本体可拆卸连接的耳机,所述本体包括本体外壳和腕带,腕带与本体外壳固定连接,本体外壳上设置有用于放置耳机的耳机槽,耳机可放置于所述耳机槽内与本体实现电连接进行充电,所述本体外壳内设置有第一通讯模块、第二通讯模块和本体处理器,所述本体处理器分别与第一通讯模块、第二通讯模块电连接,所述第二通讯模块包括移动数据上网模块、蜂窝收发器和WiFi收发器;所述耳机包括设置于端部的入耳软胶和耳机外壳,耳机外壳内设置有耳机通讯模块、耳机处理器、扬声器和拾音器,耳机处理器分别与耳机通讯模块、扬声器和拾音器电连接,所述耳机通讯模块与第一通讯模块无线连接。
- 如权利要求1所述的装置,其特征在于,所述本体外壳内还设置有与所述本体处理器电连接的本体储能电路,所述本体储能电路还连接有充电模块、电能输出电路,所述电能输出电路还连接有充电模块、电能输出端,所述充电模块包括无线充电模块或USB接口充电模块;所述耳机外壳内还设置有与耳机处理器相连接的耳机储能器电路,所述耳机储能电路还连接有电能输入端;其中,所述电能输出端与所述电能输入端相匹配,包括但不限于金属触点、金属薄面或金属公母插接头。
- 如权利要求1所述的装置,其特征在于,所述放置于所述耳机槽内的耳机通过磁吸、扣合或卡合方式实现与所述本体可拆卸连接;所述腕带式AI语音交互装置还设置有用于使得耳机从耳机槽内分离的翘起机构。
- 如权利要求1所述的装置,其特征在于,所述第二通讯模块还包括:e-SIM卡模块。
- 如权利要求1所述的装置,其特征在于,所述耳机通讯模块与第一通讯模块通过蓝牙实现无线连接,所述耳机包括TWS耳机或经典立体声蓝牙耳机或经典单边蓝牙耳机;其中,所述耳机为TWS耳机时,主耳机与从耳机均可拾取用户语音信号,并通过第一通讯模块发送至本体,本体处理器将主耳机、从耳机分别拾取的用户语音进行去噪、比较,融合为一个语音信号。
- 如权利要求1所述的装置,其特征在于,所述第二通讯模块可用于实现腕带式AI语音交互装置与智能家居装置实现无线通讯连接。
- 如权利要求1所述的装置,其特征在于,所述本体还设置有与所述本体处理器相连接的本体触摸键和本体LED,所述耳机上还设置有与所述耳机处理器相连接的耳机触摸键和耳机LED。
- 一种TWS耳机,所述TWS耳机为入耳式,包括主耳机与从耳机,其特征在于,主耳机与从耳机结构对称,主耳机与从耳机均包括入耳软 胶、耳机外壳和上盖板;所述耳机外壳内设置有耳机PCB、耳机电池、扬声器和耳机磁吸装置,所述耳机PCB上设置有耳机通讯模块、耳机处理器、耳机储能电路和拾音器;所述耳机PCB下方设置有耳机电池,所述耳机电池与所述耳机PCB电连接;所述耳机电池下方设置有耳机磁吸装置,紧邻所述耳机磁吸装置设置有电能输入端,所述电能输入端与所述耳机储能电路电连接;所述耳机外壳上设置有相应的孔位以用于所述电能输入端的端部金属头伸出所述耳机外壳之外;所述耳机外壳上还设置有拾音孔,所述拾音孔位置与所述拾音器相对;所述耳机的端部、入耳软胶后方设置有扬声器。
- 一种腕带式AI语音交互系统,其特征在于,包括:如权利要求1-7任一项所述的腕带式AI语音交互装置以及云服务器,所述腕带式AI语音交互装置与所述云服务器通讯连接。
- 如权利要求9所述的系统,其特征在于,腕带式AI语音交互装置的拾音器拾取的用户语音通过耳机处理器进行模数转换,模数转换得到数字语音信号,再通过耳机通讯模块发送至第一通讯模块,本体处理器响应所述数字语音信号,通过第二通讯模块向云服务器发送所述数字语音信号,并登录相应云服务器的接口,对数字语音信号进行语音识别及语义分析,分析完成后,云服务器调用对应网络数据,并将所述网络数据发送至腕带式AI语音交互装置,腕带式AI语音交互装置的耳机根据所述网络数据进行相应的语音播报。
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EP3627501A4 (en) | 2021-07-28 |
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CN108564949B (zh) | 2021-04-13 |
CN108564949A (zh) | 2018-09-21 |
US11023005B2 (en) | 2021-06-01 |
CN208507179U (zh) | 2019-02-15 |
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