Delay intelligent control and adjustment method and system for simultaneous interpretation Bluetooth headset

By collecting real-time operation time and voice data volume from simultaneous interpretation Bluetooth headsets and combining language recognition technology, the interpretation delay is dynamically adjusted, solving the problem that existing systems cannot detect and adjust autonomously, and achieving efficient and accurate interpretation delay control.

CN121751068APending Publication Date: 2026-03-27SHENZHEN HUAJUE COMM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-06
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing simultaneous interpretation Bluetooth headset delay adjustment systems cannot autonomously detect interpretation delay status, nor can they dynamically adjust according to the size of the interpreted speech data and the language type, resulting in a decline in interpretation quality.

Method used

By collecting real-time simultaneous interpreting operation time data and combining speech detection and language recognition technologies, the volume of interpreting speech data and language type are analyzed, interpreting delay is dynamically adjusted, and intelligent algorithms are used to select appropriate translation paths and equipment for delay adjustment.

Benefits of technology

It enables autonomous detection and precise adjustment of interpretation delays, improving interpretation quality and response speed, and ensuring intelligent and refined control of the interpretation process.

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Abstract

The invention relates to the technical field of Bluetooth headset monitoring, and discloses an intelligent delay control and adjustment method and system for a simultaneous interpretation Bluetooth headset, and the system comprises a simultaneous interpretation delay recognition module, a simultaneous interpretation delay processing and evaluation module, and a simultaneous interpretation delay adjustment module. On the basis of interpreted voice data scale state analysis information and interpreted voice language use state analysis information, intelligent screening is carried out on simultaneous interpreted voice translation paths according to offline and online types in combination with an intelligent search algorithm and scientifically set different interpreted voice translation path type information; the simultaneous interpretation speech translation path is intelligently selected based on the use frequency of the simultaneous interpretation speech data size scale and the language type; simultaneous interpretation speech translation equipment required by an offline path or an online path of simultaneous interpretation speech translation is accurately matched based on data analysis, and simultaneous interpretation delay adjustment operation is autonomously and accurately executed in combination with a simultaneous interpretation control end.
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Description

Technical Field

[0001] This invention relates to the technical field of Bluetooth headset monitoring, specifically to a method and system for intelligent delay control and adjustment of simultaneous interpretation Bluetooth headsets. Background Technology

[0002] Simultaneous interpretation Bluetooth headsets integrate Bluetooth wireless transmission and artificial intelligence translation technology to enable real-time cross-language conversations. Its core working principle can be divided into the following stages: voice acquisition and transmission, AI translation processing, and translation result feedback and playback. Voice acquisition and transmission includes sound pickup and Bluetooth transmission. Sound pickup means capturing the user's voice through the high-sensitivity microphone array built into the headset. Bluetooth transmission means that the voice data is wirelessly transmitted to the paired device via Bluetooth protocol compression encoding in the 2.4GHz band. AI translation processing includes speech recognition, machine translation, and speech synthesis. Speech recognition means converting speech into text. Machine translation means performing multilingual translation through an AI engine. Speech synthesis means converting the translation result into target language audio. Translation result feedback and playback includes Bluetooth feedback and real-time playback. Bluetooth feedback means sending the translated audio data back to the headset. Real-time playback means that the headset speaker plays the translated content. Delays during simultaneous interpretation Bluetooth headset interpretation can seriously affect the interpretation effect. Existing simultaneous interpretation Bluetooth headset delay adjustment systems cannot achieve autonomous detection of interpretation delay status, nor can they achieve dynamic correction of interpretation delay based on the size of the interpreted voice data and the type of the interpreted voice, thus reducing the quality of simultaneous interpretation Bluetooth headset delay adjustment.

[0003] Chinese invention patent CN110505563B, published on December 1, 2020, discloses a synchronization detection method, device, wireless earphone, and storage medium for wireless earphones. The method involves obtaining the synchronization status of the left and right earphones when the wireless earphones trigger a target action. The target action includes any one of inserting into the case, removing from the case, inserting into the ear, removing from the ear, and connecting to a terminal. If the synchronization status is not synchronized, a countdown timer for a preset duration is started. When the countdown ends, the step of obtaining the synchronization status of the left and right earphones is re-executed. However, this technical solution cannot dynamically adjust the transmission delay of the Bluetooth earphones. Summary of the Invention

[0004] (a) Technical problems to be solved To address the shortcomings of existing simultaneous interpretation Bluetooth headset delay adjustment systems, which cannot autonomously detect interpretation delay status or dynamically correct interpretation delay based on the size of the interpretation voice data and the type of interpretation voice, thus reducing the quality of simultaneous interpretation Bluetooth headset delay adjustment, this system aims to achieve the following: dynamic detection of simultaneous interpretation delay status, autonomous measurement of interpretation voice data capacity, intelligent identification of interpretation voice language type, accurate analysis of interpretation voice data scale and language usage status, scientific analysis of interpretation voice translation path type, intelligent selection of interpretation voice translation equipment, and dynamic adjustment of simultaneous interpretation delay faults.

[0005] (II) Technical Solution This invention is achieved through the following technical solution: a method for intelligent delay control and adjustment of a simultaneous interpretation Bluetooth headset, the method comprising the following steps: S1. Collect real-time simultaneous interpretation operation duration data; S2. Based on the real-time simultaneous interpretation job duration data and the reasonable duration range of simultaneous interpretation job, perform simultaneous interpretation Bluetooth headset interpretation job delay status analysis and processing to generate simultaneous interpretation Bluetooth headset interpretation delay status analysis data. When it is in a normal state, end this simultaneous interpretation Bluetooth headset interpretation delay status adjustment operation. S3. When in a delayed state, the interpreting speech data stream is collected and the capacity of the simultaneous interpreting speech data is measured and processed to generate the interpreting speech data capacity. At the same time, based on the interpreting speech data stream and standard interpreting speech packages of different language types, the language type identification processing of the simultaneous interpreting speech is performed to construct interpreting speech language type identification data. S4. Based on the capacity of the interpreted speech data and the normal capacity range of the interpreted speech data, perform simultaneous interpretation speech data scale status analysis and generate interpreted speech data scale status analysis data. S5. Based on the language type identification data of the interpreted speech and the text data of commonly used language types of the interpreted speech, perform language usage status analysis processing of the simultaneous interpretation speech to generate language usage status analysis data of the interpreted speech. S6. Based on the data analysis of the scale and status of the interpreted speech data, the data analysis of the language usage status of the interpreted speech, and the text data of different interpretation speech translation path types, perform simultaneous interpretation speech translation path type filtering processing to generate target simultaneous interpretation speech translation path type filtering data. S7. Based on the target simultaneous interpreting speech translation path type filtering data and the text data of different interpreting speech translation devices, perform simultaneous interpreting speech translation device object matching processing to generate target simultaneous interpreting speech translation device matching data and perform simultaneous interpreting delay adjustment operation.

[0006] Preferably, the steps for collecting real-time simultaneous interpretation work duration data are as follows: S11. The total time required for the simultaneous interpretation Bluetooth headset to complete one simultaneous interpretation task is measured online through the built-in timing module of the simultaneous interpretation Bluetooth headset, and the real-time simultaneous interpretation task duration data is generated, wherein the unit of the real-time simultaneous interpretation task duration data is seconds.

[0007] Preferably, based on the real-time simultaneous interpretation job duration data and the reasonable duration range of the simultaneous interpretation job, the simultaneous interpretation Bluetooth headset interpretation job delay status analysis and processing is performed to generate simultaneous interpretation Bluetooth headset interpretation delay status analysis data. When it is in a normal state, the operation steps to end the current simultaneous interpretation Bluetooth headset interpretation delay status adjustment operation are as follows: S21. Establish a reasonable time range for simultaneous interpreting operations. ,in These represent the reasonable duration ranges for the simultaneous interpreting tasks. Minimum and maximum reasonable durations for simultaneous interpreting assignments in China. The units are all seconds. The reasonable duration range of simultaneous interpretation work refers to the range of total time required for a simultaneous interpretation Bluetooth headset to complete a simultaneous interpretation work under normal conditions. S22. Compare the real-time simultaneous interpretation operation duration data with the reasonable duration range of the simultaneous interpretation operation. The minimum reasonable duration of simultaneous interpreting work as described in the document and the maximum reasonable duration of the simultaneous interpretation task. Perform duration value comparison, and generate simultaneous interpretation Bluetooth headset interpretation delay status analysis data based on the duration value comparison results; When the real-time duration data of simultaneous interpreting falls within the reasonable duration range of the simultaneous interpreting operation. If the simultaneous interpretation Bluetooth headset is in normal working condition, then the output of the simultaneous interpretation Bluetooth headset interpretation delay status analysis data is normal, and the current simultaneous interpretation Bluetooth headset interpretation delay status adjustment operation is directly ended. When the real-time duration data of simultaneous interpreting does not fall within the reasonable duration range of the simultaneous interpreting operation. If the simultaneous interpretation Bluetooth headset is in a delayed working state, then the output of the simultaneous interpretation Bluetooth headset interpretation delay state analysis data is the delay state.

[0008] Preferably, when in a delayed state, the steps of acquiring the interpreted speech data stream and performing simultaneous interpretation speech data capacity measurement processing to generate the interpreted speech data capacity, and simultaneously performing language type identification processing on the interpreted speech data stream and standard interpreted speech packets of different language types to construct the interpreted speech language type identification data are as follows: S31. Capture the speaker's word-by-word speech data stream online through the built-in microphone array of the simultaneous interpretation Bluetooth headset, and generate the interpreted speech data stream; S32. The simultaneous interpretation speech data stream is detected using speech detection software, and the interpretation speech data capacity is generated. The unit of the interpretation speech data capacity is kilobytes. The speech detection software includes any one of DecibelX, Sound Level Meter APP, and Spectroid. S33. Establish a collection of standard interpreting voice packs for different language types. , ;in Indicates the first Different standard interpreting voice packs for different language types. This represents the maximum number of language types; the language types include Chinese, English, German, French, Spanish, Russian, as well as Hindi, Turkish, Mongolian, Kazakh, Arabic, Hebrew, Amharic, Tamil, and Telugu; the standard interpretation speech packages for different language types represent standard speech and audio databases set up for different language types; S34. Using an audio fingerprint matching algorithm, the translated speech data stream is compared with the set of standard translated speech packets for different language types. Standard interpreting voice packs for different language types described in the document Perform speech and audio feature matching to search for standard interpreting speech packets of different language types that match the interpreted speech data stream. The corresponding language type text information is used to construct the translation speech language type recognition data through data identification.

[0009] Preferably, the steps for performing simultaneous interpreting data scale status analysis processing based on the interpreted speech data capacity and the normal range of interpreted speech data capacity to generate interpreted speech data scale status analysis data are as follows: S41. Establish the normal capacity range for interpreted speech data. ,in These represent the normal capacity ranges of the translated speech data, respectively. Minimum and maximum normal capacity of Chinese interpreting speech data. The units are all kilobytes. The normal capacity range of the translated voice data represents the range of voice data capacity that the simultaneous interpretation Bluetooth headset can complete the current voice translation task when it is offline. S42, the range between the translated speech data capacity and the normal translated speech data capacity. The minimum normal capacity of the translated speech data described in the text and the maximum normal capacity of the translated speech data Perform numerical capacity comparison and generate interpretation speech data scale status analysis data based on the numerical capacity comparison results; When the translated speech data capacity is within the normal capacity range of the translated speech data If the simultaneous interpretation voice data capacity does not exceed the voice data capacity that the simultaneous interpretation Bluetooth headset can translate in offline state, then the output of the interpretation voice data capacity status analysis data is normal. When the translated speech data capacity is within the normal capacity range of the translated speech data If the simultaneous interpretation voice data capacity exceeds the voice data capacity that the simultaneous interpretation Bluetooth headset can translate in offline mode, then the output of the interpretation voice data capacity status analysis data is an abnormal state.

[0010] Preferably, the steps for generating simultaneous interpreting language usage status analysis data by performing language type identification data and common language type text data based on the interpreted speech language type identification data are as follows: S51. Establish a text data set of commonly used language types for interpreting speech. , , They represent the first species and first The common language types of interpreting speech correspond to the text data of the common language types of interpreting speech; the common language types of interpreting speech include Chinese, English, German, French, Spanish and Russian; the text data of the common language types of interpreting speech represents the text information of the common language types in simultaneous interpreting Bluetooth headset simultaneous interpreting operations; S52, Combine the translated speech language type identification data with the translated speech commonly used language type text data set. The text data on commonly used language types in the interpretation process is used for speech language type keyword matching. Based on the speech language type keyword matching results, interpretation language usage status analysis data is generated. The specific operation steps for generating the interpretation language usage status analysis data are as follows: S521. Initialize the algorithm iteration count and execute the ocean current simulation process; set the maximum number of algorithm iterations. The ocean current simulation process involves ocean currents containing nutrients, and the language usage status identification of jellyfish is based on the commonly used language types of text data in the translated speech. In the search space, attracted by nutrients, the text data of the commonly used language type of the translated speech is searched according to the keywords of the speech language type to match the translated speech language type identification data. The direction of the ocean current is determined by the average of all vectors of each language usage status identification jellyfish in the ocean toward the language usage status identification jellyfish in the best position. S522. Language usage status identification during algorithm execution: The jellyfish swarm identifies the language usage status of the jellyfish in the commonly used language types of the translated speech text data set. The jellyfish move around their own positions in the search space and search for the commonly used language type text data of the translated speech that matches the translated speech language type identification data. The corresponding position update formula for each language usage status identification jellyfish is as follows: ,in Language usage status identification of individual jellyfish No. After the second iteration, in the text data set of commonly used language types for translation speech The location in the search space, Language usage status identification of individual jellyfish No. After the second iteration, in the text data set of commonly used language types for translation speech The location in the search space, Indicates the value Random numbers within the interval; This represents the upper and lower bounds of the search space, namely, the text data set of commonly used language types for translated speech. The search space is used to find the upper and lower bounds of the text data of the commonly used language type of the interpreted speech that match the language type identification data of the interpreted speech. Represents the data of the kinematic system; S523. During algorithm execution, the language usage status is identified in the jellyfish swarm. The jellyfish are located in the text data set of commonly used language types in the translated speech. The movement time is controlled within the search space, and the jellyfish movement time control formula using state recognition is as follows: in Indicates the first The time required to identify individual jellyfish based on language usage status after the next iteration. The maximum number of iterations, Indicates the value Random numbers within the interval; S524. The algorithm execution satisfies the boundary conditions; when the language usage status identification jellyfish is in the commonly used language type text data set of the translated speech. When the language usage status identification jellyfish moves out of the search area boundary during the process of searching for commonly used language type text data of the translated speech that matches the translated speech language type identification data in the search space, it returns to the set of commonly used language type text data of the translated speech. In the opposite search region of the search space, the boundary conditions for jellyfish movement recognition based on language usage status satisfy the following formula: ,in Language usage status identification of individual jellyfish In spatial dimension The text data set of commonly used language types in the translation of speech The updated position in the search space. Language usage status identification of individual jellyfish In spatial dimension The text data set of commonly used language types in the translation of speech The position in the search space before the update; S525. When the algorithm satisfies the maximum number of iterations Output the commonly used language type text data of the translated speech that matches the translated speech language type identification data; S526. Generate interpreting speech language type usage status analysis data based on the matching results of the interpreting speech language type identification data output in step S525 and the interpreting speech commonly used language type text data. When the speech language type identification data of the interpretation speech is successfully matched with the speech language type text data of the commonly used speech language type, it indicates that the current simultaneous interpretation speech language type belongs to the commonly used speech language type. Subsequently, simultaneous interpretation work can be carried out in the offline state of the simultaneous interpretation Bluetooth headset. Then, the speech language usage status analysis data of the interpretation speech is output as the commonly used state. If the language type identification data of the interpreted speech fails to match the language type keywords of the commonly used language type text data of the interpreted speech, it indicates that the current language type of the simultaneous interpretation is a non-common language type. In the future, simultaneous interpretation can be performed on a paired device that is paired with the simultaneous interpretation Bluetooth headset. The output of the language usage status analysis data of the interpreted speech is a non-common status. Paired devices include smartphones and smart tablets.

[0011] Preferably, the steps for generating target simultaneous interpreting speech translation path type filtering data by performing translation path type filtering processing on simultaneous interpreting speech based on the interpreted speech data scale status analysis data, the interpreted speech language usage status analysis data, and text data of different interpreted speech translation path types are as follows: S61. Establish text data sets for different interpreting and speech translation path types. ,in This indicates that the interpreted speech data scale status analysis data is in a normal state and the interpreted speech language usage status analysis data is in a commonly used state, corresponding to the first interpreted speech translation path type and different interpreted speech translation path type text data. This indicates the simultaneous interpretation speech translation path information in offline mode based on simultaneous interpretation Bluetooth headsets; This indicates that the interpreted speech data scale status analysis data is in an abnormal state or the interpreted speech language usage status analysis data is in a non-frequent state, corresponding to the second type of interpreted speech translation path, which corresponds to different interpreted speech translation path type text data. This indicates the simultaneous interpretation speech translation path information based on paired devices in an online state; S62. Using a breadth-first search algorithm, combine the translated speech data scale status analysis data, the translated speech language usage status analysis data, and the text data sets of different translated speech translation path types. The system performs keyword matching on text data of different simultaneous interpreting speech translation path types, including the data scale status and language usage status of the interpreted speech. It then searches for text data of different simultaneous interpreting speech translation path types that match the data scale status analysis data and the language usage status analysis data of the interpreted speech. Finally, it generates target simultaneous interpreting speech translation path type filtering data through data identification.

[0012] Preferably, the steps for matching the target simultaneous interpreting speech path type filtering data with the text data of different interpreting speech devices to generate target simultaneous interpreting speech device matching data and perform simultaneous interpreting delay adjustment are as follows: S71. Establish a text data set for different interpreting and speech translation devices. ,in This represents text data representing different interpretation speech translation path types. Corresponding text data for different interpreting and speech translation devices This indicates the device characteristics of the simultaneous interpretation Bluetooth headset. This represents text data representing different interpretation speech translation path types. Corresponding text data for different interpreting and speech translation devices This indicates the device characteristic information of the paired device; S72. An iterative deepening search algorithm is used to combine the target simultaneous interpreting speech translation path type filtering data with the text data set of different interpreting speech translation devices. The simultaneous interpreting speech translation path keyword matching is performed on the text data of different interpreting speech translation devices in the Chinese, and the text data of the different interpreting speech translation devices that match the target simultaneous interpreting speech translation path type filtering data are searched, and the target simultaneous interpreting speech translation device matching data is generated after data identification. S73. The simultaneous interpretation control terminal controls the corresponding simultaneous interpretation voice translation device to perform voice translation work on the real-time collected simultaneous interpretation voice data based on the matching data of the target simultaneous interpretation voice translation device, and performs simultaneous interpretation delay adjustment work.

[0013] A simultaneous interpretation Bluetooth headset delay intelligent control and adjustment system is provided to implement the simultaneous interpretation Bluetooth headset delay intelligent control and adjustment method. The system includes a simultaneous interpretation delay identification module, a simultaneous interpretation delay processing evaluation module, and a simultaneous interpretation delay adjustment module. The simultaneous interpreting delay identification module includes a simultaneous interpreting job duration acquisition unit, a simultaneous interpreting job reasonable duration interval storage unit, and a simultaneous interpreting delay status analysis unit. The simultaneous interpretation task duration acquisition unit collects real-time simultaneous interpretation task duration data through the built-in timing module of the simultaneous interpretation Bluetooth headset; the simultaneous interpretation task reasonable duration interval storage unit is used to store the reasonable duration interval of the simultaneous interpretation task; the simultaneous interpretation delay status analysis unit performs simultaneous interpretation task delay status analysis processing on the simultaneous interpretation Bluetooth headset based on the real-time simultaneous interpretation task duration data and the reasonable duration interval of the simultaneous interpretation task, and generates simultaneous interpretation Bluetooth headset interpretation delay status analysis data; The simultaneous interpreting delay processing evaluation module includes an interpreting speech data stream acquisition unit, an interpreting speech data capacity measurement unit, a standard interpreting speech package storage unit for different language types, an interpreting speech language type identification unit, an interpreting speech data normal capacity range storage unit, an interpreting speech data scale status analysis unit, an interpreting speech commonly used language type information storage unit, and an interpreting speech language usage status analysis unit. The simultaneous interpretation speech data stream acquisition unit acquires the simultaneous interpretation speech data stream through the built-in microphone array of the simultaneous interpretation Bluetooth headset; the simultaneous interpretation speech data capacity measurement unit performs capacity measurement processing on the simultaneous interpretation speech data stream and in conjunction with speech detection software to generate the simultaneous interpretation speech data capacity; the standard interpretation speech package storage unit for different language types is used to store standard interpretation speech packages for different language types; the simultaneous interpretation speech language type recognition unit performs language type recognition processing on the simultaneous interpretation speech based on the simultaneous interpretation speech data stream and the standard interpretation speech packages for different language types to construct the simultaneous interpretation speech language type recognition data; the simultaneous interpretation speech data is normal. The system includes a capacity range storage unit for storing the normal capacity range of the interpreted speech data; a simultaneous interpretation speech data scale status analysis unit for performing simultaneous interpretation speech data scale status analysis based on the interpreted speech data capacity and the normal capacity range, generating interpreted speech data scale status analysis data; a commonly used language type information storage unit for storing commonly used language type text data of the interpreted speech; and a simultaneous interpretation speech language usage status analysis unit for performing simultaneous interpretation speech language usage status analysis based on the interpreted speech language type identification data and the commonly used language type text data of the interpreted speech, generating interpreted speech language usage status analysis data. The simultaneous interpreting delay adjustment module includes a storage unit for different interpreting speech translation path types, a target interpreting speech translation path filtering unit, a storage unit for different interpreting speech translation device information, a target interpreting speech translation device matching unit, and a simultaneous interpreting delay adjustment job execution unit. The storage unit for different interpreting speech translation path types is used to store text data of different interpreting speech translation path types; the target interpreting speech translation path filtering unit performs simultaneous interpreting speech translation path type filtering processing based on the interpreting speech data scale status analysis data, the interpreting speech language usage status analysis data, and the text data of different interpreting speech translation path types to generate target simultaneous interpreting speech translation path type filtering data; the storage unit for different interpreting speech translation device information is used to store text data of different interpreting speech translation devices; the target interpreting speech translation device matching unit performs simultaneous interpreting speech translation device object matching processing based on the target simultaneous interpreting speech translation path type filtering data and the text data of different interpreting speech translation devices to generate target simultaneous interpreting speech translation device matching data; the simultaneous interpreting delay adjustment job execution unit performs simultaneous interpreting delay adjustment job execution based on the target simultaneous interpreting speech translation device matching data and in conjunction with the simultaneous interpreting control terminal to control the simultaneous interpreting speech translation device to execute simultaneous interpreting delay adjustment job.

[0014] (III) Beneficial Effects This invention provides a method and system for intelligent delay control and adjustment of a Bluetooth headset for simultaneous interpretation. It has the following beneficial effects: 1. The built-in timing module of the simultaneous interpretation Bluetooth headset accurately collects real-time simultaneous interpretation operation duration information, providing real data support for efficient and accurate monitoring of the interpretation delay status of the simultaneous interpretation Bluetooth headset; based on the real-time simultaneous interpretation operation duration and the set reasonable duration range of the simultaneous interpretation operation, and combined with time value analysis, the interpretation delay status of the simultaneous interpretation Bluetooth headset is digitally identified and processed, realizing the autonomous and scientific detection of the interpretation delay status of the simultaneous interpretation Bluetooth headset, and improving the response speed of the interpretation delay control of the simultaneous interpretation Bluetooth headset.

[0015] Second, the simultaneous interpretation Bluetooth headset accurately acquires the interpretation speech data stream through its built-in microphone array, and combines this with speech detection software to efficiently measure the size of the simultaneous interpretation speech data, achieving efficient measurement of the interpretation speech information. Based on the interpretation speech data stream, and combined with intelligent speech recognition algorithms and standard stored standard interpretation speech packages of different language types, the simultaneous interpretation speech language type is intelligently identified, achieving intelligent analysis of the simultaneous interpretation speech language type. According to the interpretation speech data volume and the scientifically preset normal volume range of interpretation speech data, the scale and state of the simultaneous interpretation speech data are qualitatively defined as normal and abnormal states. Based on the interpretation speech language type identification information, combined with intelligent search algorithms and standard-set information on commonly used interpretation speech language types, the usage state of the simultaneous interpretation speech language is finely divided into common and uncommon states, achieving precise definition of the data volume scale and language type usage frequency of the simultaneous interpretation speech, improving the accuracy of interpretation delay control of the simultaneous interpretation Bluetooth headset.

[0016] Third, by analyzing the scale and status of the interpreted speech data and the usage status of the interpreted speech language, combined with intelligent search algorithms and scientifically set information on different interpreted speech path types, simultaneous interpreting speech paths are intelligently filtered according to offline and online types. This enables intelligent selection of simultaneous interpreting speech paths based on the scale of the simultaneous interpreting speech data and the frequency of use of the language type, achieving real-time classification and selection of simultaneous interpreting speech paths. Based on data analysis, the simultaneous interpreting speech equipment required for offline or online paths is accurately matched, and the simultaneous interpreting control terminal autonomously and accurately executes simultaneous interpreting delay adjustment operations, realizing intelligent and refined simultaneous interpreting Bluetooth headset interpretation delay control. Attached Figure Description

[0017] Figure 1 A schematic diagram of a delay intelligent control and adjustment system for a simultaneous interpretation Bluetooth headset provided by the present invention; Figure 2The flowchart illustrates a method for intelligent delay control and adjustment of a simultaneous interpretation Bluetooth headset provided by the present invention. Detailed Implementation

[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0019] An embodiment of the delay intelligent control and adjustment method and system for simultaneous interpretation Bluetooth headsets is as follows: Example 1

[0020] Please see Figures 1-2 A method for intelligent delay control adjustment of simultaneous interpretation Bluetooth headsets, the method comprising the following steps: S1. Collect real-time simultaneous interpretation operation duration data; S2. Based on the real-time operation duration data of simultaneous interpretation and the reasonable duration range of simultaneous interpretation, analyze and process the interpretation delay status of the simultaneous interpretation Bluetooth headset, generate simultaneous interpretation Bluetooth headset interpretation delay status analysis data, and end the current simultaneous interpretation Bluetooth headset interpretation delay status adjustment operation when it is in a normal state. S3. When in a delayed state, the interpreting speech data stream is collected and the capacity of the simultaneous interpreting speech data is measured and processed to generate the interpreting speech data capacity. At the same time, based on the interpreting speech data stream and standard interpreting speech packages of different language types, the language type identification processing of the simultaneous interpreting speech is performed to construct the interpreting speech language type identification data. S4. Based on the data capacity of the simultaneous interpreting speech data and the normal data capacity range of the simultaneous interpreting speech data, perform data scale status analysis and processing to generate data scale status analysis data of the simultaneous interpreting speech data. S5. Based on the language type identification data of the interpreted speech and the text data of commonly used language types of the interpreted speech, perform language usage status analysis of the simultaneous interpretation speech to generate language usage status analysis data of the interpreted speech. S6. Based on the data analysis of the scale and status of the interpreted speech data, the data analysis of the usage status of the interpreted speech language, and the text data of different interpreted speech translation path types, the translation path type filtering process of the simultaneous interpreted speech is carried out to generate the target simultaneous interpreted speech translation path type filtering data. S7. Based on the target simultaneous interpreting speech translation path type filtering data and the text data of different interpreting speech translation devices, perform simultaneous interpreting speech translation device object matching processing to generate target simultaneous interpreting speech translation device matching data and perform simultaneous interpreting delay adjustment operation.

[0021] For further details, please refer to Figures 1-2 The steps for collecting real-time simultaneous interpreting job duration data are as follows: S11. The total time required for the simultaneous interpretation Bluetooth headset to complete one simultaneous interpretation task is measured online through the built-in timing module of the simultaneous interpretation Bluetooth headset, and the real-time simultaneous interpretation task duration data is generated, wherein the unit of the real-time simultaneous interpretation task duration data is seconds.

[0022] Based on the real-time duration data of simultaneous interpreting and the reasonable duration range of simultaneous interpreting, the latency status of the simultaneous interpreting Bluetooth headset is analyzed and processed to generate simultaneous interpreting Bluetooth headset latency status analysis data. When the status is normal, the operation steps to end the current simultaneous interpreting Bluetooth headset latency status adjustment operation are as follows: S21. Establish a reasonable time range for simultaneous interpreting operations. ,in These represent the reasonable time ranges for simultaneous interpreting assignments. Minimum and maximum reasonable durations for simultaneous interpreting assignments in China. and The units are all seconds. The reasonable time range for simultaneous interpretation work represents the range of total time required for a simultaneous interpretation Bluetooth headset to complete a simultaneous interpretation work under normal conditions. S22. Compare the real-time simultaneous interpreting operation duration data with the reasonable duration range of simultaneous interpreting operations. Minimum reasonable duration for simultaneous interpreting assignments The maximum reasonable duration of simultaneous interpreting assignments Perform duration value comparison, and generate simultaneous interpretation Bluetooth headset interpretation delay status analysis data based on the duration value comparison results; When the real-time duration of simultaneous interpreting falls within the reasonable duration range for simultaneous interpreting tasks... If the simultaneous interpretation Bluetooth headset is in normal working condition, the output simultaneous interpretation Bluetooth headset interpretation delay status analysis data is normal, and the simultaneous interpretation Bluetooth headset interpretation delay status adjustment operation ends directly. When the real-time duration data of simultaneous interpreting does not fall within the reasonable duration range for simultaneous interpreting tasks If the simultaneous interpretation Bluetooth headset is in a delayed working state, then the output of the simultaneous interpretation Bluetooth headset interpretation delay state analysis data is the delay state.

[0023] The simultaneous interpretation task duration acquisition unit accurately collects real-time simultaneous interpretation task duration information using the built-in timing module of the simultaneous interpretation Bluetooth headset, providing real data support for efficient and accurate monitoring of the simultaneous interpretation Bluetooth headset's interpretation delay status. The simultaneous interpretation delay status analysis unit performs digital identification and processing of the simultaneous interpretation Bluetooth headset's interpretation task delay status based on the real-time simultaneous interpretation task duration and the set reasonable duration range of the simultaneous interpretation task, combined with time value analysis, realizing the autonomous and scientific detection of the simultaneous interpretation Bluetooth headset's interpretation delay status and improving the response speed of simultaneous interpretation Bluetooth headset interpretation delay control.

[0024] For further details, please refer to Figures 1-2 When in a delayed state, the simultaneous interpretation speech data stream is acquired and its capacity is measured to generate the interpretation speech data capacity. Simultaneously, based on the interpretation speech data stream and standard interpretation speech packets of different language types, language type identification processing is performed on the simultaneous interpretation speech. The operation steps for constructing the interpretation speech language type identification data are as follows: S31. Capture the speaker's word-by-word speech data stream online through the built-in microphone array of the simultaneous interpretation Bluetooth headset, and generate the interpreted speech data stream; S32. Use speech detection software to detect the size of the simultaneous interpretation speech data stream and generate the interpretation speech data capacity, with the unit of interpretation speech data capacity being kilobytes; the speech detection software includes any one of DecibelX, Sound Level Meter APP, and Spectroid; S33. Establish a collection of standard interpreting voice packs for different language types. , ;in Indicates the first Different standard interpreting voice packs for different language types. This indicates the maximum number of language types; the language types include Chinese, English, German, French, Spanish, Russian, as well as Hindi, Turkish, Mongolian, Kazakh, Arabic, Hebrew, Amharic, Tamil, and Telugu; the standard interpretation voice packs for different language types represent the standard voice and audio databases set up for different language types; S34. Use an audio fingerprint matching algorithm to match the interpreted speech data stream with standard interpreted speech packs of different language types. Standard interpreting voice packs for different language types Perform speech audio feature matching to search for standard interpreting speech packages of different language types that match the interpreted speech data stream. The corresponding language type text information is used to construct the translation speech language type recognition data through data identification.

[0025] The steps for generating simultaneous interpreting data scale status analysis data are as follows: Based on the data size of the interpreted speech data and the normal data size range of the interpreted speech data, the data scale status analysis data of the interpreted speech data is analyzed and processed. S41. Establish the normal capacity range for interpreted speech data. ,in These represent the normal capacity range of the interpreted speech data. Minimum and maximum normal capacity of Chinese interpreting speech data. The units are all kilobytes. The normal capacity range of the simultaneous interpretation voice data represents the range of voice data capacity that the simultaneous interpretation Bluetooth headset can complete the current voice translation task when it is offline. S42. The range between the capacity of the interpreted speech data and the normal capacity of the interpreted speech data. Minimum normal capacity of Chinese translation voice data Maximum normal capacity of translated speech data Perform numerical capacity comparison and generate interpretation speech data scale status analysis data based on the numerical capacity comparison results; When the size of the interpreted speech data is within the normal range for interpreted speech data size If the output of the simultaneous interpretation voice data exceeds the capacity of the simultaneous interpretation Bluetooth headset in offline mode, then the output of the interpretation voice data scale status analysis data is considered to be in an abnormal state.

[0026] The steps for generating simultaneous interpreting language usage analysis data are as follows: Based on the language type identification data and the text data of commonly used language types in interpreting, the language usage status of simultaneous interpreting is analyzed. S51. Establish a text data set of commonly used language types for interpreting speech. , , They represent the first species and first This document contains text data on the commonly used languages ​​for simultaneous interpretation, including Chinese, English, German, French, Spanish, and Russian. The text data represents the text information on the commonly used languages ​​in simultaneous interpretation using Bluetooth headsets. S52, Combine the language type identification data of the translated speech with the text data set of commonly used language types in the translated speech. The text data of commonly used language types in Chinese interpreting is used for speech-language type keyword matching. Based on the speech-language type keyword matching results, speech-language usage status analysis data is generated. The specific operation steps for performing speech-language usage status analysis data are as follows: S521. Initialize the algorithm iteration count and execute the ocean current simulation process; set the maximum number of algorithm iterations. The ocean current simulation process involves ocean currents containing nutrients, and the language usage status identification of jellyfish in the translation of commonly used language types of text data sets. Attracted by nutrients in the search space, the text data of commonly used languages ​​in the translated speech are searched according to the keywords of the speech language type to match the translated speech language type identification data. The direction of the ocean current is determined by the average of all vectors of each language usage status identification jellyfish in the ocean toward the language usage status identification jellyfish in the best position. S522. Language usage status identification during algorithm execution: Language usage status identification in jellyfish swarms; Commonly used language types in text data sets for speech interpretation. The jellyfish move around their own positions in the search space and search for text data of commonly used language types that match the interpreted speech language type recognition data. The corresponding position update formula for each language usage status recognition jellyfish is as follows: ,in Language usage status identification of individual jellyfish No. After the second iteration, in the text data set of commonly used language types for interpreting speech... The location in the search space, Language usage status identification of individual jellyfish After the second iteration, in the text data set of commonly used language types for interpreting speech... The location in the search space, Indicates the value Random numbers within the interval; This represents the upper and lower bounds of the search space, i.e., the set of text data in commonly used language types for interpreting speech. Within the search space, the upper and lower bounds of commonly used language type text data for interpreted speech that match the language type identification data are determined. Represents the data of the kinematic system; S523. Language usage status identification during algorithm execution: Language usage status identification in jellyfish swarms; Jellyfish in commonly used language types in translation text data sets. The movement time is controlled within the search space, and the jellyfish movement time control formula using state recognition is as follows: ,in Indicates the first The time required to identify individual jellyfish based on language usage status after the next iteration. The maximum number of iterations, Indicates the value Random numbers within the interval; S524. The algorithm execution satisfies the boundary conditions; when the language usage status recognition jellyfish is in the common language type text data set for translation speech. When the language usage status recognition jellyfish moves out of the search area boundary during the process of searching for commonly used language type text data of interpreted speech that matches the interpreted speech language type identification data in the search space, it returns to the set of commonly used language type text data of interpreted speech. In the opposite search region of the search space, the boundary conditions for jellyfish movement recognition based on language usage status satisfy the following formula: ,in Language usage status identification of individual jellyfish In spatial dimension The collection of text data in commonly used languages ​​for interpreting speech The updated position in the search space. Language usage status identification of individual jellyfish In spatial dimension The collection of text data in commonly used languages ​​for interpreting speech The position in the search space before the update; S525. When the algorithm satisfies the maximum number of iterations Output text data of commonly used language types for translated speech that matches the translated speech language type recognition data; S526. Generate interpreting speech language type usage status analysis data based on the matching results of the interpreting speech language type identification data output in step S525 and the interpreting speech commonly used language type text data. When the speech language type recognition data of the simultaneous interpretation is successfully matched with the speech language type text data of the commonly used speech language type, it means that the current speech language type of the simultaneous interpretation belongs to the commonly used speech language type. Subsequently, simultaneous interpretation can be performed when the simultaneous interpretation Bluetooth headset is offline. The output speech language usage status analysis data is the commonly used status. If the language type identification data of the simultaneous interpretation speech fails to match the language type keywords of the commonly used language type text data of the simultaneous interpretation speech, it means that the current language type of the simultaneous interpretation speech is a non-common language type. In the future, simultaneous interpretation work can be carried out on a paired device that is paired with the simultaneous interpretation Bluetooth headset. The output of the language usage status analysis data of the simultaneous interpretation speech will be a non-common status. Paired devices include smartphones and smart tablets.

[0027] By coordinating the simultaneous interpretation speech data stream acquisition unit and the simultaneous interpretation speech data capacity measurement unit, the microphone array built into the simultaneous interpretation Bluetooth headset is used to accurately acquire the simultaneous interpretation speech data stream. Combined with speech detection software, the size of the simultaneous interpretation speech data is efficiently measured, achieving efficient measurement of the amount of interpretation speech information. The simultaneous interpretation speech language type recognition unit, based on the interpretation speech data stream and combined with intelligent speech recognition algorithms and standard stored standard interpretation speech packages for different language types, intelligently identifies the language type of the simultaneous interpretation speech, enabling intelligent analysis of the language type of the simultaneous interpretation speech. The simultaneous interpretation speech data scale status is also assessed. The analysis unit classifies and defines the scale and status of simultaneous interpretation speech data into normal and abnormal states based on the data volume and the scientifically preset normal volume range. The language usage status analysis unit further classifies the language usage status of simultaneous interpretation speech into common and uncommon states based on the language type identification information, combined with intelligent search algorithms and standard-set information on commonly used language types. This allows for precise definition of the data volume and language usage frequency of simultaneous interpretation speech, improving the accuracy of latency control in simultaneous interpretation Bluetooth headsets.

[0028] For further details, please refer to Figures 1-2 The steps for generating target simultaneous interpreting speech translation path type filtering data are as follows: Based on the analysis data of the scale and status of interpreting speech data, the analysis data of the language usage status of interpreting speech, and the text data of different interpreting speech translation path types, the translation path type filtering process for simultaneous interpreting speech is carried out. S61. Establish text data sets for different interpreting and speech translation path types. ,in This indicates the text data of different interpretation speech translation path types corresponding to the first interpretation speech translation path type, where the data scale and state analysis data are in a normal state and the language usage analysis data are in a commonly used state. This indicates the simultaneous interpretation speech translation path information in offline mode based on simultaneous interpretation Bluetooth headsets; This indicates the second type of interpreting speech data, corresponding to different interpreting speech translation path types, where the interpreting speech data is in an abnormal state or the interpreting speech language usage state is in a non-common state. This indicates the simultaneous interpretation speech translation path information based on paired devices in an online state; S62. Employ a breadth-first search algorithm to combine the scale and state analysis data of the interpreted speech data, the language usage analysis data of the interpreted speech data, and the text data sets of different interpreted speech translation path types. The system performs keyword matching on text data of different simultaneous interpreting path types in China, considering the data scale status and language usage status of the interpreting speech. It then searches for text data of different simultaneous interpreting path types that match the data scale status analysis data and the language usage status analysis data of the interpreting speech, and generates target simultaneous interpreting path type filtering data after data identification.

[0029] The steps for matching the target simultaneous interpreting speech path type filtering data with text data from different interpreting speech devices to generate target simultaneous interpreting speech device matching data and perform simultaneous interpreting delay adjustment are as follows: S71. Establish a text data set for different interpreting and speech translation devices. ,in Text data representing different interpreting speech translation path types Corresponding text data for different interpreting and speech translation devices This indicates the device characteristics of the simultaneous interpretation Bluetooth headset. Text data representing different interpreting speech translation path types Corresponding text data for different interpreting and speech translation devices This indicates the device characteristic information of the paired device; S72. An iterative deepening search algorithm is used to combine the target simultaneous interpreting speech translation path type filtering data with text data sets from different interpreting speech translation devices. The system performs simultaneous interpreting speech translation path keyword matching on text data from different interpreting speech translation devices, searches for text data from different interpreting speech translation devices that match the target simultaneous interpreting speech translation path type filtering data, and generates target simultaneous interpreting speech translation device matching data after data identification. S73. The simultaneous interpretation control terminal controls the corresponding simultaneous interpretation voice translation device to perform voice translation work on the real-time collected simultaneous interpretation voice data based on the matching data of the target simultaneous interpretation voice translation device and performs simultaneous interpretation delay adjustment work.

[0030] Through the target interpreting speech translation path filtering unit, based on the analysis information of the scale and status of the interpreting speech data and the usage status of the interpreting speech language, combined with the intelligent search algorithm and scientifically set different interpreting speech translation path types, simultaneous interpreting speech translation paths are intelligently filtered according to offline and online types. This achieves intelligent selection of simultaneous interpreting speech translation paths based on the scale of simultaneous interpreting speech data and the frequency of use of the language type, realizing real-time classification and selection of simultaneous interpreting speech paths. The target interpreting speech translation device matching unit and the simultaneous interpreting delay adjustment operation execution unit cooperate with each other. Based on data analysis, they accurately match the simultaneous interpreting speech translation devices required for the offline or online simultaneous interpreting speech translation path, and combine the simultaneous interpreting control terminal to autonomously and accurately execute the simultaneous interpreting delay adjustment operation, realizing intelligent and refined simultaneous interpreting Bluetooth headset interpretation delay control. Example 2

[0031] Please see Figures 1-2 A simultaneous interpretation Bluetooth headset delay intelligent control and adjustment system is provided to implement a simultaneous interpretation Bluetooth headset delay intelligent control and adjustment method. The system includes a simultaneous interpretation delay identification module, a simultaneous interpretation delay processing evaluation module, and a simultaneous interpretation delay adjustment module. The simultaneous interpreting delay identification module includes a simultaneous interpreting job duration acquisition unit, a simultaneous interpreting job reasonable duration interval storage unit, and a simultaneous interpreting delay status analysis unit. The simultaneous interpretation task duration acquisition unit collects real-time simultaneous interpretation task duration data through the built-in timing module of the simultaneous interpretation Bluetooth headset; the simultaneous interpretation task reasonable duration interval storage unit stores the reasonable duration interval of the simultaneous interpretation task; the simultaneous interpretation delay status analysis unit performs interpretation task delay status analysis processing on the simultaneous interpretation Bluetooth headset based on the real-time simultaneous interpretation task duration data and the reasonable duration interval of the simultaneous interpretation task, and generates simultaneous interpretation Bluetooth headset interpretation delay status analysis data; The simultaneous interpreting delay processing evaluation module includes an interpreting speech data stream acquisition unit, an interpreting speech data capacity measurement unit, a standard interpreting speech package storage unit for different language types, an interpreting speech language type identification unit, an interpreting speech data normal capacity range storage unit, an interpreting speech data scale status analysis unit, an interpreting speech commonly used language type information storage unit, and an interpreting speech language usage status analysis unit. The simultaneous interpretation speech data stream acquisition unit acquires the simultaneous interpretation speech data stream through the built-in microphone array of the simultaneous interpretation Bluetooth headset; the simultaneous interpretation speech data capacity measurement unit performs capacity measurement processing on the simultaneous interpretation speech data stream and in conjunction with speech detection software to generate the simultaneous interpretation speech data capacity; the standard interpretation speech package storage unit for different language types is used to store standard interpretation speech packages for different language types; the simultaneous interpretation speech language type recognition unit performs language type recognition processing on the simultaneous interpretation speech based on the simultaneous interpretation speech data stream and standard interpretation speech packages for different language types to construct the interpretation speech language type recognition data; and the normal capacity of the simultaneous interpretation speech data is also specified. The system includes: an interval storage unit for storing the normal capacity range of the interpreted speech data; an interpreted speech data scale status analysis unit for performing simultaneous interpretation speech data scale status analysis based on the interpreted speech data capacity and the normal capacity range, generating interpreted speech data scale status analysis data; a commonly used language type information storage unit for storing commonly used language type text data of the interpreted speech; and an interpreted speech language usage status analysis unit for performing simultaneous interpretation speech language usage status analysis based on the interpreted speech language type recognition data and the commonly used language type text data of the interpreted speech, generating interpreted speech language usage status analysis data. The simultaneous interpreting delay adjustment module includes a storage unit for different interpreting speech translation path types, a target interpreting speech translation path filtering unit, a storage unit for different interpreting speech translation device information, a target interpreting speech translation device matching unit, and a simultaneous interpreting delay adjustment job execution unit. The system includes: a storage unit for different interpreting speech translation path types, used to store text data of different interpreting speech translation path types; a target interpreting speech translation path filtering unit, which performs simultaneous interpreting speech translation path type filtering processing based on interpreting speech data scale status analysis data, interpreting speech language usage status analysis data, and text data of different interpreting speech translation path types, generating target simultaneous interpreting speech translation path type filtering data; a storage unit for different interpreting speech translation device information, used to store text data of different interpreting speech translation devices; a target interpreting speech translation device matching unit, which performs simultaneous interpreting speech translation device object matching processing based on target simultaneous interpreting speech translation path type filtering data and text data of different interpreting speech translation devices, generating target simultaneous interpreting speech translation device matching data; and a simultaneous interpreting delay adjustment job execution unit, which performs simultaneous interpreting delay adjustment job execution based on target simultaneous interpreting speech translation device matching data and in conjunction with the simultaneous interpreting control terminal to control the simultaneous interpreting speech translation devices.

[0032] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A method for intelligent delay control and adjustment of a simultaneous interpretation Bluetooth headset, characterized in that, The method includes the following steps: S1. Collect real-time simultaneous interpretation operation duration data; S2. Perform simultaneous interpretation Bluetooth headset interpretation delay status analysis and processing, generate simultaneous interpretation Bluetooth headset interpretation delay status analysis data, and end the current simultaneous interpretation Bluetooth headset interpretation delay status adjustment operation when it is in a normal state. S3. When in a delayed state, the interpreting speech data stream is collected and the capacity of the simultaneous interpreting speech data is measured and processed to generate the interpreting speech data capacity. At the same time, based on the interpreting speech data stream and standard interpreting speech packages of different language types, the language type identification processing of the simultaneous interpreting speech is performed to construct interpreting speech language type identification data. S4. Perform simultaneous interpretation speech data scale and state analysis processing to generate interpretation speech data scale and state analysis data. S5. Perform language usage status analysis and processing of simultaneous interpretation speech to generate language usage status analysis data of interpretation speech. S6. Perform translation path type filtering processing on simultaneous interpreting speech to generate target simultaneous interpreting speech translation path type filtering data; S7. Perform simultaneous interpretation speech translation device object matching processing, generate target simultaneous interpretation speech translation device matching data and perform simultaneous interpretation delay adjustment operation.

2. The delay intelligent control and adjustment method for a simultaneous interpretation Bluetooth headset according to claim 1, characterized in that: S1 includes the following steps: S11. The total time required for the simultaneous interpretation Bluetooth headset to complete one simultaneous interpretation task is measured online through the built-in timing module of the simultaneous interpretation Bluetooth headset, and real-time simultaneous interpretation task duration data is generated.

3. The method for intelligent delay control and adjustment of a simultaneous interpretation Bluetooth headset according to claim 2, characterized in that: S2 includes the following steps: S21. Establish a reasonable time range for simultaneous interpreting operations. ,in and These represent the reasonable duration ranges for the simultaneous interpreting tasks. The minimum and maximum reasonable durations for simultaneous interpreting assignments in China; S22, Combine the simultaneous interpretation real-time operation duration data with the... The above and stated Perform duration value comparison, and generate simultaneous interpretation Bluetooth headset interpretation delay status analysis data based on the duration value comparison results; When the simultaneous interpreting real-time job duration data belongs to the If the output of the simultaneous interpretation Bluetooth headset interpretation delay status analysis data is normal, then the simultaneous interpretation Bluetooth headset interpretation delay status adjustment operation will end directly. When the simultaneous interpreting real-time job duration data does not belong to the above Then the output of the simultaneous interpretation Bluetooth headset interpretation delay status analysis data is the delay status.

4. The method for intelligent delay control and adjustment of a simultaneous interpretation Bluetooth headset according to claim 3, characterized in that: S3 includes the following steps: S31. Capture the speaker's word-by-word speech data stream online through the built-in microphone array of the simultaneous interpretation Bluetooth headset, and generate the interpreted speech data stream; S32. The simultaneous interpretation speech data stream is detected by speech detection software, and the interpretation speech data capacity is generated. S33. Establish a collection of standard interpreting voice packs for different language types. The include ,in Indicates the first Standard interpreting voice packs for different language types; S34. Using an audio fingerprint matching algorithm, the translated speech data stream is compared with the... The above Perform speech audio feature matching to search for the audio stream that matches the translated speech data stream. The corresponding language type text information is used to construct the translation speech language type recognition data through data identification.

5. The method for intelligent delay control and adjustment of a simultaneous interpretation Bluetooth headset according to claim 4, characterized in that: S4 includes the following steps: S41. Establish the normal capacity range for interpreted speech data. ,in and These represent the normal capacity ranges of the translated speech data, respectively. Minimum and maximum normal capacity of Chinese interpreting voice data; S42, Combine the capacity of the translated speech data with the... The above and stated Perform numerical capacity comparison and generate interpretation speech data scale status analysis data based on the numerical capacity comparison results; When the translated speech data capacity belongs to the If so, the output of the translated speech data scale status analysis data is normal. When the translated speech data capacity belongs to the If the output of the translated speech data scale status analysis data is abnormal, then the output will be in an abnormal state.

6. The method for intelligent delay control and adjustment of a simultaneous interpretation Bluetooth headset according to claim 5, characterized in that: S5 includes the following steps: S51. Establish a text data set of commonly used language types for interpreting speech. The include and , , and They represent the first species and first Text data of commonly used language types for interpreting speech, corresponding to the commonly used language types for interpreting speech. This represents the maximum number of language types. S52, Combine the translated speech language type identification data with the... The text data on commonly used language types in the interpretation process is used for speech language type keyword matching. Based on the speech language type keyword matching results, interpretation language usage status analysis data is generated. The specific operation steps for generating the interpretation language usage status analysis data are as follows: S521. Initialize the algorithm iteration count and execute the ocean current simulation process; set the maximum number of algorithm iterations. The ocean current simulation process involves ocean currents containing nutrients, and the language usage status identification of jellyfish is described in the above. In the search space, attracted by nutrients, the text data of the commonly used language type of the translated speech is searched according to the keywords of the speech language type to match the translated speech language type identification data. The direction of the ocean current is determined by the average of all vectors of each language usage status identification jellyfish in the ocean toward the language usage status identification jellyfish in the best position. S522, Language usage status identification in jellyfish swarms during algorithm execution. They move around their own positions in the search space and search for the commonly used language type text data of the translated speech that matches the translated speech language type identification data; S523, Language usage status identification in jellyfish swarms during algorithm execution. The movement time is controlled within the search space; S524, The algorithm execution satisfies the boundary conditions; when the language is used to identify jellyfish in the state... When the jellyfish moves out of the search area boundary during the process of searching for commonly used language type text data of the interpreted speech that matches the interpreted speech language type identification data in the search space, the language usage status identification jellyfish returns to the search area. The opposite search region in the search space; S525. When the algorithm satisfies the maximum number of iterations Output the commonly used language type text data of the translated speech that matches the translated speech language type identification data; S526. Generate translation speech language type usage status analysis data based on the matching results of the translation speech language type identification data and the translation speech commonly used language type text data output in step S525; when the translation speech language type identification data and the translation speech commonly used language type text data are successfully matched with speech language type keywords, and simultaneous interpretation work can be performed in the offline state of the simultaneous interpretation Bluetooth headset, the translation speech language type usage status analysis data is output as the commonly used state; If the language type identification data of the interpreted speech fails to match the language type keywords of the commonly used language type text data of the interpreted speech, the simultaneous interpretation work can be performed on a paired device that is paired with the simultaneous interpretation Bluetooth headset. In this case, the output of the language usage status analysis data of the interpreted speech is a non-common state.

7. The method for intelligent delay control and adjustment of a simultaneous interpretation Bluetooth headset according to claim 6, characterized in that: S6 includes the following steps: S61. Establish text data sets for different interpreting and speech translation path types. ,in This indicates that the interpreted speech data scale status analysis data is in a normal state and the interpreted speech language usage status analysis data is in a commonly used state, corresponding to the first interpreted speech translation path type and different interpreted speech translation path type text data. This indicates the simultaneous interpretation speech translation path information in offline mode based on simultaneous interpretation Bluetooth headsets; This indicates that the interpreted speech data scale status analysis data is in an abnormal state or the interpreted speech language usage status analysis data is in a non-frequent state, corresponding to the second type of interpreted speech translation path, which corresponds to different interpreted speech translation path type text data. This indicates the simultaneous interpretation speech translation path information based on paired devices in an online state; S62. Using a breadth-first search algorithm, the translated speech data scale status analysis data, the translated speech language usage status analysis data, and the data are compared with the... The system performs keyword matching on text data of different simultaneous interpreting speech translation path types, including the data scale status and language usage status of the interpreted speech. It then searches for text data of different simultaneous interpreting speech translation path types that match the data scale status analysis data and the language usage status analysis data of the interpreted speech. Finally, it generates target simultaneous interpreting speech translation path type filtering data through data identification.

8. The delay intelligent control and adjustment method for a simultaneous interpretation Bluetooth headset according to claim 7, characterized in that: S7 includes the following steps: S71. Establish a text data set for different interpreting and speech translation devices. ,in Indicates the Corresponding text data for different interpreting and speech translation devices This indicates the device characteristics of the simultaneous interpretation Bluetooth headset. Indicates the Corresponding text data for different interpreting and speech translation devices This indicates the device characteristic information of the paired device; S72. An iterative deepening search algorithm is used to compare the target simultaneous interpreting speech translation path type screening data with the... The simultaneous interpreting speech translation path keyword matching is performed on the text data of different interpreting speech translation devices in the Chinese, and the text data of the different interpreting speech translation devices that match the target simultaneous interpreting speech translation path type filtering data are searched, and the target simultaneous interpreting speech translation device matching data is generated after data identification. S73. The simultaneous interpretation control terminal controls the corresponding simultaneous interpretation voice translation device to perform voice translation work on the real-time collected simultaneous interpretation voice data based on the matching data of the target simultaneous interpretation voice translation device, and performs simultaneous interpretation delay adjustment work.

9. A delay intelligent control and adjustment system for a simultaneous interpretation Bluetooth headset, used to implement the delay intelligent control and adjustment method for a simultaneous interpretation Bluetooth headset as described in any one of claims 1-8, characterized in that: The system includes a simultaneous interpretation delay identification module, a simultaneous interpretation delay processing evaluation module, and a simultaneous interpretation delay adjustment module.

Citation Information

Patent Citations

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