Translation equipment and translation system
Through the processor, sound pickup component and voice playback component of the translation device, the voice voice collection and translation of voice calls in real time is solved, and the problem of real-time translation between both parties in the prior art is solved, which improves translation performance and call smoothness.
Patent Information
- Application Number
- CN202421919570.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-08-08
AI Technical Summary
The translation software and translation equipment in existing terminal devices cannot achieve real-time translation between both parties during the call, resulting in low translation performance and affecting smooth call.
It provides a translation device, including a processor, a sound pickup component and a voice playback component, which is connected to the communication terminal through the first communication component, collects and translates voices in real time, and transmits them to the corresponding communication terminal through voice or text to realize real-time translation.
Real-time translation of voice of conversation during the call process is realized, and the translation performance is improved, ensuring that both parties with language barriers can communicate with each other.
Smart Images

Figure CN223193350U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of speech translation technology, and in particular to a translation device and a translation system. Background Art
[0002] Currently, terminal devices can translate speech by installing translation software. However, compared to translators, the translation accuracy of current translation software installed in terminal devices is lower. Furthermore, existing translation software installed in terminal devices and existing translators cannot provide real-time translation of speech during a call between two parties who do not speak the same language, which affects the communication between these two parties and results in poor translation performance. Utility Model Content
[0003] Based on the above needs, this application proposes a translation device and a translation system that can achieve real-time translation of call voice and improve translation performance.
[0004] To achieve the above objectives, this application proposes the following technical solutions:
[0005] According to a first aspect of an embodiment of the present application, a translation device is provided, comprising: a processor, a first communication component, a sound pickup component, and a voice playback component, wherein the processor is connected to a first communication terminal via the first communication component, and the processor is electrically connected to the sound pickup component and the voice playback component, respectively;
[0006] The sound pickup component is used to collect the conversation voice in the first language emitted by the user and transmit the conversation voice in the first language to the processor;
[0007] The first communication component is used to transmit the call voice in the second language received by the first communication terminal to the processor;
[0008] The processor is configured to translate the conversation speech in the second language into a translated speech in the first language and send the translated speech in the first language to the speech playback component, and / or translate the conversation speech in the first language into a translated speech in the second language and send the translated speech in the second language to the first communication terminal via the first communication component, so that the first communication terminal sends the translated speech in the second language to a second communication terminal, where the second communication terminal is the terminal communicating with the first communication terminal;
[0009] The voice playing component is used to receive and play the translated voice in the first language transmitted by the processor.
[0010] Optionally, the first communication component includes: a first Bluetooth module and / or a data transmission line;
[0011] In a case where the first communication component includes the first Bluetooth module, the processor is electrically connected to the first communication terminal through the first Bluetooth module;
[0012] In the case where the first communication component includes the data transmission line, a first end of the data transmission line is electrically connected to the processor via a transmission interface in the translation device, and a second end of the data transmission line is electrically connected to the first communication terminal.
[0013] Optionally, the data transmission line includes: an earphone wire, a first wire interface and a second wire interface, the first wire interface matches the transmission interface in the translation device, and the second wire interface matches the transmission interface in the first communication terminal;
[0014] The first wire interface is electrically connected to the first end of the earphone wire, and the second wire interface is electrically connected to the second end of the earphone wire.
[0015] Optionally, the translation device further includes: a second Bluetooth module;
[0016] The processor is connected to the Bluetooth headset via the second Bluetooth module;
[0017] The Bluetooth headset is used to collect the conversation voice in the first language issued by the user;
[0018] The second Bluetooth module is used to transmit the call voice in the first language to the processor, and to transmit the translated voice in the first language output by the processor to the Bluetooth headset.
[0019] Optionally, the translation device further includes: a display component;
[0020] The processor is electrically connected to the display assembly;
[0021] The processor is further configured to convert the conversation speech in the first language into conversation text in the first language, convert the translated speech in the first language into translated text in the first language, convert the conversation speech in the second language into conversation text in the second language, and convert the translated speech in the second language into translated text in the second language;
[0022] The display component is used to receive and display the conversation text in the first language, the translation text in the first language, the conversation text in the second language, and the translation text in the second language.
[0023] Optionally, the translation device further includes: a sensor;
[0024] The sensor is electrically connected to the processor;
[0025] The processor is used to adjust the brightness of the display component based on the sensing data collected by the sensor, and the sensing data includes: light brightness data and / or distance data from the user.
[0026] Optionally, the translation device further includes: a camera component;
[0027] The camera assembly is electrically connected to the processor;
[0028] The processor is further configured to translate the image text in the image captured by the camera assembly to obtain image translated text and / or image translated speech.
[0029] According to a second aspect of the embodiments of the present application, there is provided a translation system, comprising: a first communication terminal and the above-mentioned translation device;
[0030] The translation device is electrically connected to the first communication terminal.
[0031] Optionally, the translation system further includes: headphones;
[0032] The earphone is electrically connected to the translation device.
[0033] Optionally, the translation system further includes: a second communication terminal; wherein the second communication terminal is a terminal communicating with the first communication terminal;
[0034] When the second communication terminal is in conversation with the first communication terminal, the first communication terminal is connected to the second communication terminal for conversation.
[0035] The translation device proposed in this application includes: a processor, a first communication component, a sound pickup component and a voice playback component. The processor is connected to the first communication terminal through the first communication component, and the processor is electrically connected to the sound pickup component and the voice playback component respectively; the sound pickup component is used to collect the call voice in the first language emitted by the user and transmit the call voice in the first language to the processor; the first communication component is used to transmit the call voice in the second language received by the first communication terminal to the processor; the processor is used to translate the call voice in the second language into the translated voice in the first language and send the translated voice in the first language to the voice playback component for playback, and / or translate the call voice in the first language into the translated voice in the second language and send the translated voice in the second language to the voice playback component for playback, and / or translate the call voice in the first language into the translated voice in the second language and send the translated voice in the second language to the first communication terminal through the first communication component, so that the first communication terminal sends the translated voice in the second language to the second communication terminal that is talking to the first communication terminal. By adopting the technical solution of the present application, the first communication component can be used to collect the call voice received by the first communication terminal in real time, and the call voice can be translated and output. The call voice emitted by the user can also be collected by the sound pickup component, and after translation, it can be transmitted to the first communication terminal through the first communication component, and then sent to the second communication terminal used by the other party in the call. This realizes real-time translation of the call voice during the call and improves the translation performance. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are merely embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without any creative work.
[0037] Figure 1 A schematic diagram of the structure of a translation device provided in an embodiment of the present application;
[0038] Figure 2 A schematic diagram of the structure of another translation device provided in an embodiment of the present application;
[0039] Figure 3 A schematic diagram of the structure of another translation device provided in an embodiment of the present application;
[0040] Figure 4 A schematic diagram of the structure of another translation device provided in an embodiment of the present application;
[0041] Figure 5 A schematic diagram of the structure of another translation device provided in an embodiment of the present application;
[0042] Figure 6 A schematic diagram of the structure of another translation device provided in an embodiment of the present application;
[0043] Figure 7 A schematic diagram of the circuit connection of the translation device provided in an embodiment of the present application;
[0044] Figure 8 A schematic diagram of the structure of a translation system provided in an embodiment of the present application;
[0045] Figure 9 A schematic diagram of the structure of another translation system provided in an embodiment of the present application. DETAILED DESCRIPTION
[0046] The technical solution of the embodiment of the present application is applicable to the application scenario of speech translation, specifically for the application scenario of speech translation during a call. The technical solution of the embodiment of the present application can achieve real-time translation of the call speech and improve the translation performance.
[0047] The existing method of translating speech is usually to use translation software installed on the terminal device or translation-specific translation equipment (such as translation machines, translation pens, etc.). Existing translation-specific translation equipment is usually equipped with special hardware, such as high-performance processors, large-capacity memory and optimized audio processing chips. These hardware can support more complex translation algorithms and faster translation speeds. Therefore, compared with the translation software installed on the terminal device, the translation accuracy and translation speed of the translation equipment are higher.
[0048] However, the existing translation software and translation equipment installed in the terminal equipment are unable to translate the conversation voice in real time when the two parties who do not speak the same language use the communication terminal to ensure that the two parties who do not speak the same language can complete the conversation without any obstacles. That is, the conversation between the two parties who do not speak the same language is affected, resulting in low translation performance.
[0049] Based on this, the present application proposes a translation device, which technical solution can realize real-time translation of call voice, so that the two parties who do not speak the same language can complete the call without obstacles, thereby solving the problem in the existing technology that the call voice cannot be translated in real time when the two parties who do not speak the same language are talking, affecting the call between the two parties who do not speak the same language and the problem of low translation performance.
[0050] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0051] Exemplary devices
[0052] See also Figure 1 As shown, an embodiment of the present application provides a translation device, which includes a processor 101, a first communication component 102, a sound pickup component 103, and a voice playback component 104. The processor 101 is connected to a first communication terminal 20 via the first communication component 102, and the processor 101 is electrically connected to the sound pickup component 103 and the voice playback component 104. The first communication terminal 20 is a terminal device used by a user when making a call, such as a mobile phone used by a user when making a phone call.
[0053] In this embodiment, the sound pickup component 103 is used to collect the conversation voice in the first language emitted by the user and transmit the conversation voice in the first language to the processor 101. The conversation voice in the first language emitted by the user includes the conversation voice in the first language emitted by the user during the conversation. When the user is talking to the other party, the communication terminal used by the user is the first communication terminal 20, and the communication terminal used by the other party is the second communication terminal 30. The second communication terminal 30 can send the conversation voice in the second language emitted by the other party to the first communication terminal 20. The first communication terminal 20 is connected to the first communication component 102 and transmits the received conversation voice in the second language to the processor 101 using the first communication component 102.
[0054] The processor 101 is configured to translate the conversation voice in the second language transmitted by the first communication component 102 into a translated voice in the first language, and to send the translated voice in the first language to the voice playback component 104 so that the voice playback component 104 plays the translated voice in the first language. After the user hears the translated voice in the first language, the user can understand the meaning of the conversation voice in the second language spoken by the other party. The processor 101 is also configured to translate the conversation voice in the first language transmitted by the sound pickup component 103 into a translated voice in the second language, and to send the translated voice in the second language to the first communication terminal 20 through the first communication component 102. The first communication terminal 20 receives the translated voice in the second language and sends the translated voice in the second language to the second communication terminal 30 that is currently in a conversation with the first communication terminal, so that the second communication terminal 30 plays the translated voice in the second language. The other party that is currently in a conversation with the user can hear the translated voice in the second language through the second communication terminal 30, and thus can understand the meaning of the conversation voice in the first language spoken by the user. This embodiment can achieve real-time translation of the call speech when the two parties are talking on the phone, thereby ensuring smooth communication between the two parties and improving translation performance.
[0055] In a specific embodiment, when a user who does not speak the same language as the other party is talking to the other party, the other party uses the second communication terminal 30, and the user uses the first communication terminal 20, and the first communication terminal 20 is connected to the translation device 10. The language used by the other party is used as the second language, and the language used by the user is used as the first language. After the call between the first communication terminal 20 and the second communication terminal 30 is connected, when the other party is speaking, the second communication terminal 30 collects the conversation voice in the second language spoken by the other party, and transmits the conversation voice in the second language to the first communication terminal 20. The first communication terminal 20 sends the conversation voice in the second language to the processor 101 through the first communication component 102. The processor 101 translates the conversation voice in the second language into a translated voice in the first language, and sends the translated voice in the first language to the voice playback component 104 for playback so that the user can hear the translated voice in the first language. After a call between the first communication terminal 20 and the second communication terminal 30 is connected, when the user speaks, the sound pickup component 103 collects the user's voice in the first language and transmits the first language voice to the processor 101. The processor 101 translates the first language voice into a second language translation and sends the second language translation to the first communication terminal 20 via the first communication component 102. The first communication terminal 20 directly transmits the second language translation to the second communication terminal 30 for playback, so that the other party can hear the second language translation. Through this embodiment, even if the two parties using the communication terminals do not speak the same language, the voice heard by the communication terminals during the call is in the language they use, and the smoothness of the call will not be affected by the language barrier.
[0056] In this embodiment, the processor 101 uses an existing translation algorithm to translate the call voice. Those skilled in the art can implement the processor 101 to translate the call voice according to the translation algorithm in the prior art. This embodiment does not specifically describe the specific steps of translating the call voice. In addition, the processor 101 is preferably the processor 101 used in existing professional translation equipment (such as a translation machine, a translation pen, etc.), and the sound pickup component 103 and the voice playback component 104 are also preferably components used in existing professional translation equipment. Since professional translation equipment is equipped with special hardware, such as a high-performance processor, a large-capacity memory and an optimized audio processing chip, these hardware can support more complex translation algorithms and faster translation speeds. Therefore, using the translation device 10 of this embodiment to connect to the first communication terminal 20 to translate the call voice, compared to installing translation software in the terminal device for voice translation, the translation accuracy and translation speed of the call voice translation using the translation device 10 are higher.
[0057] Furthermore, in this embodiment, the first language includes languages of several countries and dialects of several regions, and the second language includes languages of several countries and dialects of several regions. The first language and the second language are different languages. The first communication terminal 20 and the second communication terminal 30 can both be mobile phones, smart watches, tablets, computers, and other terminal devices capable of making calls. Moreover, the call between the two parties can be a telephone call (i.e., a telephone call implemented using a SIM card) or a call implemented using communication software (e.g., a voice call or video call implemented using communication software).
[0058] From the above introduction, it can be seen that the translation device proposed in the embodiment of the present application can use the first communication component 102 to collect the call voice received by the first communication terminal 20 in real time, and output the translated call voice. It can also collect the call voice issued by the user through the sound pickup component 103, and transmit it to the first communication terminal 20 through the first communication component 102 after translation, and then send it to the second communication terminal 30 used by the other party of the call, thereby realizing real-time translation of the call voice during the call and improving the translation performance.
[0059] As an optional implementation, see Figure 2 As shown, in another embodiment of the present application, it is disclosed that the first communication component 102 includes: a first Bluetooth module 1021 and / or a data transmission line 1022. In the case where the first communication component 102 includes the first Bluetooth module 1021, the processor 101 is connected to the first communication terminal 20 via the first Bluetooth module 1021, that is, the processor 101 is wirelessly connected to the first communication terminal 20 via the first Bluetooth module 1021. In the case where the first communication component 102 includes the data transmission line 1022, the processor 101 is electrically connected to the first communication terminal 20 via the data transmission line 1022. Specifically, the first end of the data transmission line 1022 is electrically connected to the processor 101 via the transmission interface in the translation device 10, and the second end of the data transmission line 1022 is electrically connected to the first communication terminal 20, that is, the second end of the data transmission line 1022 is connected to the transmission interface of the first communication terminal 20. The transmission interface is a USB interface provided in the communication terminal.
[0060] Specifically, when the first communication component 102 includes only the first Bluetooth module 1021, the processor 101 establishes a Bluetooth wireless connection with the first communication terminal 20 via the first Bluetooth module 1021, and the processor 101 receives the conversation voice in the second language transmitted by the first communication terminal 20 via the first Bluetooth module 1021. Furthermore, the processor 101 transmits the translated speech in the second language, which is obtained by the processor 101, to the first communication terminal 20 via the first Bluetooth module 1021. When the first communication component 102 includes only the data transmission line 1022, the processor 101 establishes a wired connection with the first communication terminal 20 via the data transmission line 1022, and the processor 101 receives the conversation voice in the second language transmitted by the first communication terminal 20 via the data transmission line 1022. Furthermore, the processor 101 transmits the translated speech in the second language, which is obtained by the processor 101, to the first communication terminal 20 via the data transmission line 1022. When the first communication component 102 includes a first Bluetooth module 1021 and a data transmission line 1022, that is, the translation device 10 is provided with two communication components with the first communication terminal 20, namely the first Bluetooth module 1021 and the data transmission line 1022, then at this time the processor 101 can choose to use the first Bluetooth module 1021 to establish a Bluetooth wireless connection with the first communication terminal 20, and the processor 101 can also choose to use the data transmission line 1022 to establish a wired connection with the first communication terminal 20.
[0061] As an optional implementation, another embodiment of the present application discloses that the data transmission line 1022 includes: an earphone wire, a first wire interface, and a second wire interface. The first wire interface is electrically connected to the first end of the earphone wire, and the second wire interface is electrically connected to the second end of the earphone wire. The first wire interface matches the transmission interface in the translation device 10. For example, the transmission interface in the translation device 10 is a USB female connector, and the first wire interface is a USB male connector. The second wire interface matches the transmission interface in the first communication terminal 20. For example, the transmission interface in the first communication terminal 20 is a USB female connector, and the second wire interface is a USB male connector.
[0062] When a conventional data cable is connected to the transmission interface of a communication terminal, a function selection prompt will pop up on the communication terminal, prompting the user to select the currently used function from among functions such as charging and data transmission. In this embodiment, the data transmission cable 1022 is a headphone wire. When the data transmission cable 1022 is connected to the transmission interface of the communication terminal, the communication terminal will no longer display a function selection prompt and will directly recognize it as a headphone wire, allowing direct audio transmission. This improves the efficiency and convenience of voice transmission between the translation device 10 and the first communication terminal 20.
[0063] As an optional implementation, see Figure 3As shown, in another embodiment of the present application, the translation device 10 further includes a second Bluetooth module 105 . The processor 101 is wirelessly connected to the Bluetooth headset 401 via the second Bluetooth module 105 .
[0064] When the processor 101 is connected to the Bluetooth headset 401 via the second Bluetooth module 105, the Bluetooth headset 401 can collect the conversation voice in the first language uttered by the user during the call, and transmit the conversation voice in the first language collected by the Bluetooth headset 401 to the processor 101 via the second Bluetooth module 105. The processor 101 translates the conversation voice in the second language into the translated voice in the first language via the second Bluetooth module 105 and transmits it to the Bluetooth headset 401. When the processor 101 is connected to the Bluetooth headset 401 via the second Bluetooth module 105, the sound pickup component 103 and the voice playback component 104 in the translation device 10 can no longer work, and the Bluetooth headset 401 can be directly used instead of the sound pickup component 103 and the voice playback component 104.
[0065] As an optional implementation, disclosed in another embodiment of the present application, the translation device 10 also includes: a transmission interface, and the processor 101 is electrically connected to the wired headset through the transmission interface. The wired headset can collect the call voice in the first language emitted by the user during the call, and transmit the call voice in the first language collected by the wired headset to the processor 101 through the transmission interface. The processor 101 translates the call voice in the second language into the translated voice in the first language and transmits it to the wired headset through the transmission interface. When the processor 101 is connected to the wired headset through the transmission interface, the sound pickup component 103 and the voice playback component 104 in the translation device 10 can no longer work, and the wired headset can be directly used to replace the sound pickup component 103 and the voice playback component 104.
[0066] As an optional implementation, see Figure 4As shown, in another embodiment of the present application, the translation device 10 further includes: a display component 106, and the processor 101 is electrically connected to the display component 106. After receiving a call voice in a first language, the processor 101 converts the call voice in the first language into a call text in the first language, and transmits the call text in the first language to the display component 106 for display; after translating the call voice in the first language into a translated voice in a second language, the processor 101 converts the translated voice in the second language into a translated text in the second language, and transmits the translated text in the second language to the display component 106 for display; after receiving a call voice in the second language, the processor 101 converts the call voice in the second language into a call text in the second language, and transmits the call text in the second language to the display component 106 for display; after translating the call voice in the second language into a translated voice in the first language, the processor 101 converts the translated voice in the first language into a translated text in the first language, and transmits the translated text in the first language to the display component 106 for display. This embodiment realizes the function of transcribing voice into text in real time. While the user is listening to the voice, he can also view the corresponding text through the display component, thereby improving the accuracy and convenience of the call.
[0067] In a specific embodiment, when text is displayed through a display component, the translated text in the second language corresponding to the translated speech in the second language translated from the call speech in the first language is displayed below the call text in the first language corresponding to the displayed call speech in the first language; and the translated text in the first language corresponding to the translated speech in the first language translated from the call speech in the second language is displayed below the call text in the second language corresponding to the displayed call speech in the second language.
[0068] In this embodiment, processor 101 converts the call speech and translated speech into text using an existing speech-to-text algorithm. Those skilled in the art can implement processor 101's conversion of the call speech and translated speech based on existing speech-to-text algorithms. This embodiment does not further elaborate on the specific steps for converting the call speech and translated speech into text.
[0069] As an optional implementation, see Figure 5As shown, in another embodiment of the present application, it is disclosed that the translation device 10 also includes: a sensor 107, and the sensor 107 is electrically connected to the processor 101. The sensor 107 is used to collect sensor data and transmit the collected sensor data to the processor 101. After receiving the sensor data, the processor 101 adjusts the brightness of the display component 106 according to the sensor data. The sensor data includes: light brightness data and / or distance data from the user (i.e., the user's head or the user's eyes). For example, if the light brightness data indicates that the light brightness is strong, the processor 101 will increase the brightness of the display component 106. If the light brightness data indicates that the light brightness is weak, the processor 101 will lower the brightness of the display component 106, thereby improving the user experience. If the distance data between the user and the translation device 10 is within the user's operating distance range, the processor 101 adjusts the brightness of the display component 106 to a preset normal operating brightness. If the distance data between the user and the translation device 10 is outside the user's operating distance range (for example, when the user's ear is close to the translation device 10 to receive the output voice), the processor 101 lowers the brightness of the display component 106 or directly turns the screen black, thereby saving power. In this embodiment, the sensor for collecting light brightness data is preferably an ambient light sensor, and the sensor for collecting distance data is preferably an infrared distance sensor.
[0070] As an optional implementation, see Figure 6 As shown, in another embodiment of the present application, it is disclosed that the translation device 10 also includes: a camera component 108, which is electrically connected to the processor 101. The camera component 108 is used to capture images and transmit the captured images to the processor 101. After receiving the images captured by the camera component 108, the processor 101 translates the image text in the image to obtain image translation text and / or image translation speech. Specifically, the processor 101 can use OCR recognition technology to recognize the image text in the image, and then translate the image text into the text corresponding to the target language pre-selected by the user as image translation text, and can also use a text-to-speech algorithm to convert the image translation text into image translation speech. The processor 101 can transmit the image translation text to the display component 106 for display, and can also transmit the image translation speech to the speech playback component 104 for playback. In this embodiment, the OCR recognition technology, text translation algorithm, and text-to-speech algorithm are all existing algorithms. Those skilled in the art can implement the processor 101 to translate the image text in the image captured by the camera assembly 108 based on existing OCR recognition technology, text translation algorithm, and text-to-speech algorithm to obtain image-translated text and / or image-translated speech. The specific steps are not further described in this embodiment.
[0071] As an optional implementation, see Figure 7 As shown, in another embodiment of the present application, the SOC chip is a processor 101, the TP / LCD is a display component 106, which can also realize the touch function and thus realize human-computer interaction, and the TP / LCD is connected to the DSI pin of the SOC chip; the CAM is a camera component 108, and the CAM is connected to the CSI pin of the SOC chip; the MIC is a sound pickup component 103, preferably a microphone, which mainly plays the role of picking up sound, and the MIC is connected to the first I2S pin of the SOC chip; the SPK is a voice playback component 104, preferably a speaker, which mainly plays the role of amplification, and the SPK is connected to the I2C pin of the SOC chip; the sensor is a sensor 107, which mainly includes an infrared distance sensor and an ambient light sensor, which is used when switching scenes. For example, the brightness of the screen is adjusted by the light level. The Sensor is connected to the second I2C pin of the SOC chip. EMCP is the storage component of the translation device 10. The EMCP is connected to the EMMC pin of the SOC chip. WIFI / BT is the second Bluetooth module 105. The WIFI / BT is connected to the BSI pin of the SOC chip. PMIC is the power management module of the translation device 10, responsible for power distribution and management. The PMIC is connected to the third I2S pin of the SOC chip. BAT is the battery of the translation device 10. The BAT is connected to the PMIC. TYPE-C is the transmission interface of the translation device 10, that is, the USB interface, used for battery charging and data transmission. The TYPE-C is connected to the USB pin of the SOC chip. BT device is the first Bluetooth module 1021. The BT device is connected to the GPIO pin of the SOC chip.
[0072] As an optional implementation, another embodiment of the present application discloses that the translation device 10 further includes a card slot for accommodating a SIM card and a call assembly, wherein the card slot and the call assembly are respectively electrically connected to the processor 101. When a SIM card is inserted into the card slot of the translation device 10, the user can directly use the translation device 10 to communicate with the other party. That is, the user uses the translation device 10, and the other party uses a communication terminal. When the user and the other party are talking, the translation device 10 establishes a call connection with the communication terminal used by the other party, and the translation device 10 no longer needs to be connected to the first communication terminal 20.
[0073] The translation device 10 uses the sound pickup component 103 to collect the conversation voice in the first language emitted by the user, and transmits the conversation voice in the first language to the processor 101. The call component is used to receive the conversation voice in the third language sent by the communication terminal used by the other party in the call, and transmit the conversation voice in the third language to the processor 101. The processor is used to translate the conversation voice in the third language into the translated voice in the first language, and send the translated voice in the first language to the voice playback component 104 for playback, and / or translate the conversation voice in the first language into the translated voice in the third language, and send the translated voice in the third language to the communication terminal used by the other party in the call through the call component. Among them, the third language includes the languages of several countries, as well as the dialects of several regions, etc. The first language and the third language are different languages, and the third language can be the same as the second language. The translation device 10 of this embodiment is provided with a card slot and a call component, becoming a translation device capable of making calls, without the need to use the first communication terminal 20, thereby improving the convenience of calls, and at the same time having the characteristics of high translation accuracy and fast translation speed of the translation device.
[0074] Furthermore, in this embodiment, the call component includes an antenna component and a radio module. The translation device 10 can achieve a call connection with other communication terminals through the antenna component. The antenna component is connected to the processor 101 through the radio module, and the radio module realizes data transmission between the antenna component and the processor 101.
[0075] Exemplary Systems
[0076] Optionally, the present application also provides a translation system, see Figure 8 As shown, the translation system includes: a first communication terminal 20 and a translation device 10. The translation device 10 is connected to the first communication terminal 20. The translation device 10 is the translation device 10 described in the above embodiment.
[0077] The translation device 10 uses the sound pickup component 103 to collect the call voice in the first language emitted by the user, and transmits the call voice in the first language to the processor, uses the first communication component 102 to transmit the call voice in the second language received by the first communication terminal to the processor 101, uses the processor 101 to translate the call voice in the second language into the translated voice in the first language and send the translated voice in the first language to the voice playback component 104 for playback, and / or translates the call voice in the first language into the translated voice in the second language, and sends the translated voice in the second language to the first communication terminal 20 through the first communication component 102, so that the first communication terminal 20 sends the translated voice in the second language to the second communication terminal 30 that is talking with the first communication terminal 20. By adopting the technical solution of this embodiment, the first communication component 102 can be used to collect the call voice received by the first communication terminal 20 in real time, and the call voice can be translated and output. The call voice emitted by the user can also be collected by the sound pickup component 103, and after translation, it can be transmitted to the first communication terminal 20 through the first communication component 102, and then sent to the second communication terminal 30 used by the other party in the call. This realizes real-time translation of the call voice during the call, thereby improving the translation performance.
[0078] As an optional implementation, see Figure 9 As shown, another embodiment of the present application discloses that the translation system further includes: headphones 40, which are connected to the translation device 10. Headphones 40 include Bluetooth headphones 401 or wireless headphones. The translation device 10 is provided with a transmission interface, through which the wireless headphones can connect to the translation device 10, thereby performing data transmission with the processor 101 in the translation device 10. When the translation device 10 is provided with a second Bluetooth module 105, the translation device 10 can wirelessly connect to the Bluetooth headphones 401 through the second Bluetooth module 105, thereby achieving data transmission between the Bluetooth headphones 401 and the processor 101 in the translation device 10.
[0079] As an optional implementation, see Figure 9 As shown, in another embodiment of the present application, it is disclosed that the translation system also includes: a second communication terminal 30, wherein the first communication terminal 20 is the communication terminal used by the user, and the second communication terminal 30 is the communication terminal used by the other party who is talking to the user. When the user is talking to the other party, the second communication terminal 30 is connected to the first communication terminal 10 for a call.
[0080] It should be noted that the various embodiments in this specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other. The modules and submodules in the devices and terminals in the various embodiments of the present application can be merged, divided, and deleted according to actual needs.
[0081] In the several embodiments provided in this application, it should be understood that the disclosed terminals, devices, and methods can be implemented in other ways. For example, the terminal embodiments described above are merely illustrative. For example, the division of modules or submodules is merely a logical function division. In actual implementation, there may be other division methods, such as multiple submodules or modules can be combined or integrated into another module, or some features can be ignored or not executed. In addition, the mutual coupling or direct coupling or communication connection shown or discussed can be an indirect coupling or communication connection through some interface, device or module, which can be electrical, mechanical or other forms.
[0082] The modules or submodules described as separate components may or may not be physically separate, and the components of the modules or submodules may or may not be physical modules or submodules, that is, they may be located in one place or distributed across multiple network modules or submodules. Some or all of the modules or submodules may be selected to achieve the purpose of this embodiment according to actual needs.
[0083] In addition, each functional module or submodule in each embodiment of the present application may be integrated into a processing module, or each module or submodule may exist physically separately, or two or more modules or submodules may be integrated into a single module. The above-mentioned integrated modules or submodules may be implemented in the form of hardware or software functional modules or submodules.
[0084] Finally, it should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of additional identical elements in the process, method, article, or device comprising the element.
[0085] The above description of the disclosed embodiments will enable those skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application is not limited to the embodiments shown herein, but is to be construed in the widest manner consistent with the principles and novel features disclosed herein.
Claims
1. A translation device, characterized in that: include: A processor, a first communication component, a sound pickup component, and a voice playback component, wherein the processor is connected to the first communication terminal via the first communication component, and the processor is electrically connected to the sound pickup component and the voice playback component respectively; The sound pickup component is used to collect the conversation voice in the first language emitted by the user and transmit the conversation voice in the first language to the processor; The first communication component is used to transmit the call voice in the second language received by the first communication terminal to the processor; The processor is configured to translate the conversation speech in the second language into a translated speech in the first language and send the translated speech in the first language to the speech playback component, and / or translate the conversation speech in the first language into a translated speech in the second language and send the translated speech in the second language to the first communication terminal via the first communication component, so that the first communication terminal sends the translated speech in the second language to a second communication terminal, where the second communication terminal is the terminal communicating with the first communication terminal; The voice playing component is used to receive and play the translated voice in the first language transmitted by the processor.
2. The translation device according to claim 1, wherein The first communication component includes: a first Bluetooth module and / or a data transmission line; In a case where the first communication component includes the first Bluetooth module, the processor is electrically connected to the first communication terminal through the first Bluetooth module; In the case where the first communication component includes the data transmission line, a first end of the data transmission line is electrically connected to the processor via a transmission interface in the translation device, and a second end of the data transmission line is electrically connected to the first communication terminal.
3. The translation device according to claim 2, characterized in that The data transmission line includes: an earphone wire, a first wire interface and a second wire interface, wherein the first wire interface matches the transmission interface in the translation device, and the second wire interface matches the transmission interface in the first communication terminal; The first wire interface is electrically connected to the first end of the earphone wire, and the second wire interface is electrically connected to the second end of the earphone wire.
4. The translation device according to claim 1, wherein The translation device further includes: a second Bluetooth module; The processor is connected to the Bluetooth headset via the second Bluetooth module; The Bluetooth headset is used to collect the conversation voice in the first language issued by the user; The second Bluetooth module is used to transmit the call voice in the first language to the processor, and to transmit the translated voice in the first language output by the processor to the Bluetooth headset.
5. The translation device according to any one of claims 1 to 4, characterized in that The translation device further includes: a display component; The processor is electrically connected to the display assembly; The processor is further configured to convert the conversation voice in the first language into conversation text in the first language, convert the translated speech in the first language into translated text in the first language, convert the conversation voice in the second language into conversation text in the second language, and convert the translated speech in the second language into translated text in the second language; The display component is used to receive and display the conversation text in the first language, the translation text in the first language, the conversation text in the second language, and the translation text in the second language.
6. The translation device according to claim 5, characterized in that The translation device further includes: a sensor; The sensor is electrically connected to the processor; The processor is used to adjust the brightness of the display component based on the sensing data collected by the sensor, and the sensing data includes: light brightness data and / or distance data from the user.
7. The translation device according to any one of claims 1 to 4, characterized in that The translation device further includes: a camera component; The camera assembly is electrically connected to the processor; The processor is further configured to translate the image text in the image captured by the camera assembly to obtain image translated text and / or image translated speech.
8. A translation system, characterized in that: include: A first communication terminal and a translation device according to any one of claims 1 to 7; The translation device is electrically connected to the first communication terminal.
9. The translation system according to claim 8, characterized in that The translation system further includes: headphones; The earphone is electrically connected to the translation device.
10. The translation system according to claim 8, wherein: The translation system further includes: a second communication terminal; wherein the second communication terminal is a terminal communicating with the first communication terminal; When the second communication terminal is in conversation with the first communication terminal, the first communication terminal is connected to the second communication terminal for conversation.