Dual-mode communication processing method, system and platform suitable for recording pen

By using dual-mode Bluetooth and WiFi transmission technology, combined with frequency division multiplexing and dynamic switching mechanisms, the problem of the single transmission mode of the voice recorder is solved, achieving efficient and stable data transmission and improving the user experience.

CN121099360APending Publication Date: 2025-12-09SHENZHEN VIMAI TECH CO LTD
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Patent Information

Application Number
CN202511167133.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-20
Publication Date
2025-12-09

AI Technical Summary

Technical Problem

Existing voice recorders have a single transmission mode, resulting in slow transmission speeds or frequent interruptions. They cannot dynamically adjust according to the network environment, leading to a poor user experience. Furthermore, Bluetooth and WiFi are prone to interference when operating on the same frequency band, making it difficult to flexibly select the transmission mode.

Method used

It adopts dual-mode transmission technology of Bluetooth and WiFi, combined with frequency division multiplexing and dynamic switching mechanism, to monitor network status in real time, automatically switch transmission modes to avoid signal interference, and support users to select transmission modes.

Benefits of technology

It achieves efficient and stable data transmission, enhances user experience, supports flexible transmission mode selection, and provides transmission log recording function to meet diverse needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a dual-mode communication processing method, system and platform suitable for a recording pen. The method comprises the following steps: generating and acquiring first data corresponding to a recording pen, and starting dual-mode communication in real time according to the first data; the first data is communication starting control signal data; the dual-mode communication comprises Bluetooth communication and WiFi communication; generating and acquiring second data corresponding to the recording pen in real time, and dynamically adjusting and processing dual-mode communication transmission efficiency corresponding to the recording pen based on the second data; wherein the second data is network real-time transmission state data, and the system and the platform corresponding to the method can combine Bluetooth and WiFi dual-mode transmission advantages, avoid signal interference and support dynamic switching at the same time, that is, efficient and stable data transmission can be realized through the Bluetooth and WiFi dual-mode transmission technology in combination with frequency division multiplexing and a dynamic switching mechanism; and user experience is improved.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of voice recorder communication processing, and particularly relates to a dual-mode communication processing method, system and platform suitable for a voice recorder. BACKGROUND

[0002] Existing voice recorders usually adopt a single transmission mode, such as supporting only Bluetooth transmission or only WiFi transmission. Although Bluetooth transmission has the advantages of low power consumption and wide compatibility, its transmission speed is slow and cannot meet the fast transmission needs of large-capacity audio files. While WiFi transmission is fast, it is prone to transmission interruption or speed reduction in weak or unstable signal environments.

[0003] In addition, a single transmission mode cannot be dynamically adjusted according to the network environment, resulting in poor user experience. For the prior art that attempts to use a dual-mode transmission scheme, there are still many deficiencies, such as: Bluetooth and WiFi signals working in the same frequency band are prone to interference, resulting in reduced transmission efficiency; lack of dynamic switching mechanism, unable to adjust the transmission mode in real time according to the network state; users cannot flexibly select the transmission mode, making it difficult to meet diversified needs.

[0004] Therefore, in view of the above technical problems and defects of reduced transmission efficiency, inability to adjust the transmission mode in real time according to the network state, and inability of users to flexibly select the transmission mode, there is an urgent need to design and develop a dual-mode communication processing method, system and platform suitable for a voice recorder. SUMMARY

[0005] To overcome the deficiencies and difficulties of the prior art, the present application provides a dual-mode communication processing method, system and platform suitable for a voice recorder, which realizes efficient and stable data transmission through Bluetooth and WiFi dual-mode transmission technology combined with frequency division multiplexing and a dynamic switching mechanism.

[0006] The first object of the present application is to provide a dual-mode communication processing method suitable for a voice recorder; the second object of the present application is to provide a dual-mode communication processing system suitable for a voice recorder; and the third object of the present application is to provide a dual-mode communication processing platform suitable for a voice recorder.

[0007] The first object of the present application is achieved by the method comprising the following steps:

[0008] Generating and obtaining first data corresponding to the voice recorder, and starting dual-mode communication in real time according to the first data; wherein the first data is a communication start control signal data; the dual-mode communication includes Bluetooth communication and WiFi communication;

[0009] Real-time generation and acquisition of the second data corresponding to the voice recorder, and based on the second data, dynamically adjust the processing efficiency of the dual-mode communication transmission corresponding to the voice recorder; wherein the second data is network real-time transmission state data.

[0010] Further, the generation and acquisition of the first data corresponding to the voice recorder, and according to the first data, real-time start dual-mode communication, further comprising:

[0011] Generation and acquisition of third data corresponding to the voice recorder communication; wherein the third data is network environment data;

[0012] Based on the third data, adaptive switching selection of data transmission mode corresponding to the voice recorder communication; wherein the data transmission mode includes AP mode and STA mode.

[0013] Further, the generation and acquisition of the first data corresponding to the voice recorder, and according to the first data, real-time start dual-mode communication, further comprising:

[0014] Generation and acquisition of fourth data corresponding to the voice recorder; wherein the fourth data is transmission mode selection control signal data;

[0015] Based on the fourth data, according to the user selection, automatically switch to the corresponding data transmission mode; wherein the data transmission mode includes dual-mode transmission mode and single-mode transmission mode.

[0016] Further, the real-time generation and acquisition of the second data corresponding to the voice recorder, and based on the second data, dynamically adjust the processing efficiency of the dual-mode communication transmission corresponding to the voice recorder, further comprising:

[0017] Generation and acquisition of the fifth data and the sixth data corresponding to the communication mode; wherein the fifth data is the signal strength of Bluetooth and WiFi; the sixth data is network delay data and bandwidth data;

[0018] Based on the fifth data or the sixth data, dynamically adjust the transmission mode corresponding to the voice recorder.

[0019] Further, the real-time generation and acquisition of the second data corresponding to the voice recorder, and based on the second data, dynamically adjust the processing efficiency of the dual-mode communication transmission corresponding to the voice recorder, further comprising:

[0020] Generation and acquisition of the seventh data corresponding to the voice recorder transmission state; wherein the seventh data is the control signal data of the transmission mode working frequency band selection;

[0021] According to the seventh data, and in combination with frequency division multiplexing technology, the working frequency bands of the Bluetooth and the WiFi are staggered and selected.

[0022] Further, the second data corresponding to the voice recorder is generated and acquired in real time, and the transmission efficiency of the dual-mode communication corresponding to the voice recorder is dynamically adjusted based on the second data.

[0023] The eighth data corresponding to the transmission state of the voice recorder is generated and acquired; wherein the eighth data is transmission parameter information data, including time data, transmission mode data, transmission speed data and signal strength data of each transmission;

[0024] The eighth data is transmitted and saved to the cloud, and the eighth data is real-time remotely visualized.

[0025] The second object of the application is achieved in that the system is used to realize the dual-mode communication processing method suitable for the voice recorder, and the system comprises:

[0026] The first data generation unit is used to generate and acquire the first data corresponding to the voice recorder, and to start the dual-mode communication in real time according to the first data; wherein the first data is communication start control signal data; the dual-mode communication includes Bluetooth communication and WiFi communication;

[0027] The data generation processing unit is used to generate and acquire the second data corresponding to the voice recorder in real time, and to dynamically adjust the transmission efficiency of the dual-mode communication corresponding to the voice recorder based on the second data; wherein the second data is network real-time transmission state data.

[0028] Further, the first data generation unit further comprises:

[0029] The first generation module is used to generate and acquire the third data corresponding to the voice recorder communication; wherein the third data is network environment data;

[0030] The first processing module is used to adaptively switch and select the data transmission mode corresponding to the voice recorder communication based on the third data; wherein the data transmission mode includes AP mode and STA mode.

[0031] And / or, the data generation processing unit further comprises:

[0032] The second generation module is used to generate and acquire the fifth data and the sixth data corresponding to the communication mode; wherein the fifth data is the signal strength of the Bluetooth and the WiFi; the sixth data is network delay data and bandwidth data.

[0033] The second processing module is configured to dynamically adjust a transmission mode corresponding to the voice recorder based on the fifth data or the sixth data.

[0034] Further, the first data generation unit further comprises:

[0035] The third generation module is configured to generate and acquire fourth data corresponding to the voice recorder; the fourth data is transmission mode selection control signal data.

[0036] The third processing module is configured to automatically switch to a corresponding data transmission mode according to user selection based on the fourth data; the data transmission mode includes a dual-mode transmission mode and a single-mode transmission mode.

[0037] And / or, the data generation processing unit further comprises:

[0038] The fourth generation module is configured to generate and acquire seventh data corresponding to the transmission state of the voice recorder; the seventh data is transmission mode working frequency band selection control signal data.

[0039] The fourth processing module is configured to stagger the working frequency bands of Bluetooth and WiFi through selection processing according to the seventh data and in combination with frequency division multiplexing technology.

[0040] The fifth generation module is configured to generate and acquire eighth data corresponding to the transmission state of the voice recorder; the eighth data is transmission parameter information data, including time data, transmission mode data, transmission speed data and signal strength data of each transmission.

[0041] The visual display module is configured to transmit and save the eighth data to the cloud, and to real-time remotely visually display the eighth data.

[0042] A third object of the application is achieved by a dual-mode communication processing platform control program for a voice recorder, comprising a processor, a memory and a dual-mode communication processing platform control program for a voice recorder; wherein the dual-mode communication processing platform control program for a voice recorder is stored in the memory and is executed by the processor, and the dual-mode communication processing platform control program for a voice recorder implements the dual-mode communication processing method for a voice recorder.

[0043] The application generates and acquires first data corresponding to a voice recorder by a method, and starts dual-mode communication in real time according to the first data; wherein the first data is communication start control signal data; the dual-mode communication includes Bluetooth communication and WiFi communication; second data corresponding to the voice recorder is generated and acquired in real time, and the dual-mode communication transmission efficiency corresponding to the voice recorder is dynamically adjusted based on the second data; wherein the second data is network real-time transmission state data, and a system and a platform corresponding to the method can combine the advantages of Bluetooth and WiFi dual-mode transmission, avoid signal interference and support dynamic switching at the same time, that is, through Bluetooth and WiFi dual-mode transmission technology, combining frequency division multiplexing and dynamic switching mechanism, efficient and stable data transmission is realized, and user experience is improved.

[0044] That is, the application scheme realizes efficient and stable data transmission of the voice recorder by the dual-mode communication processing method, combines frequency division multiplexing technology and dynamic switching mechanism, solves the deficiency of a single transmission mode in the prior art. At the same time, the application scheme supports user to flexibly select a transmission mode, and provides a transmission log recording function, and further improves user experience. BRIEF DESCRIPTION OF DRAWINGS

[0045] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of these drawings.

[0046] Figure 1 A flow step schematic diagram of a dual-mode communication processing method suitable for a voice recorder according to the application;

[0047] Figure 2 A dual-mode communication processing system architecture schematic diagram suitable for a voice recorder according to the application;

[0048] Figure 3 A dual-mode communication processing platform architecture schematic diagram suitable for a voice recorder according to the application. DETAILED DESCRIPTION

[0049] In order to better understand the purpose, technical scheme and advantages of the application, the following will further illustrate the application by combining the drawings and specific embodiments, and those skilled in the art can easily understand other advantages and effects of the application from the content disclosed in the specification.

[0050] The application can also be implemented or applied by other different specific examples, and various modifications and changes can be made to the details in the specification based on different views and applications without departing from the spirit of the application.

[0051] It should be noted that if the embodiments of the present application involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, motion condition, etc. between components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directional indications will also change accordingly.

[0052] In addition, if the embodiments of the present application involve descriptions such as "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. Secondly, the technical solutions of various embodiments can be combined with each other, but it must be based on the fact that a person skilled in the art can realize it, and when the combination of technical solutions contradicts each other or cannot be realized, it should be considered that the combination of technical solutions does not exist and is not within the protection scope required by the present application.

[0053] Preferably, the dual-mode communication processing method suitable for a voice recorder is applied in one or more terminals or servers. The terminal is a device capable of automatically performing numerical calculation and / or information processing according to pre-set or stored instructions, and its hardware includes but is not limited to microprocessors, application specific integrated circuits (ASICs), field-programmable gate arrays (FPGAs), digital signal processors (DSPs), embedded devices, etc.

[0054] The terminal can be a desktop computer, a notebook computer, a palm computer, a cloud server, and other computing devices. The terminal can interact with the user through a keyboard, a mouse, a remote controller, a touchpad, a voice control device, etc.

[0055] The present application is to realize a dual-mode communication processing method, system and platform suitable for a voice recorder.

[0056] As shown in Figure 1 Fig. 1 is a flowchart of the dual-mode communication processing method suitable for a voice recorder provided by the embodiments of the present application.

[0057] In the embodiments, the dual-mode communication processing method suitable for a voice recorder can be applied in a terminal with display function or a fixed terminal, and the terminal is not limited to a personal computer, a smart phone, a tablet computer, a desktop computer or an all-in-one computer with a camera, etc.

[0058] The dual-mode communication processing method suitable for the voice recorder can also be applied to a hardware environment composed of a terminal and a server connected to the terminal through a network. The network includes but is not limited to a wide area network, a metropolitan area network or a local area network. The dual-mode communication processing method suitable for the voice recorder of the embodiment of the present application can be executed by the server, can be executed by the terminal, or can be executed by the server and the terminal together.

[0059] For example, for a terminal that needs to perform the dual-mode communication processing suitable for the voice recorder, the dual-mode communication processing function suitable for the voice recorder provided by the method of the present application can be integrated directly on the terminal, or a client for implementing the method of the present application can be installed. For another example, the method provided by the present application can also run on a device such as a server in the form of a software development kit (SDK), and the dual-mode communication processing function suitable for the voice recorder is provided in the form of an interface of the SDK, so that the terminal or other devices can implement the dual-mode communication processing function suitable for the voice recorder through the provided interface. The present application is further described below in combination with the drawings.

[0060] As shown in Figure 1 The present application provides a dual-mode communication processing method suitable for a voice recorder, and the method comprises the following steps:

[0061] S1, generating and acquiring first data corresponding to the voice recorder, and starting dual-mode communication in real time according to the first data; wherein the first data is a communication start control signal data; the dual-mode communication includes Bluetooth communication and WiFi communication;

[0062] S2, generating and acquiring second data corresponding to the voice recorder in real time, and dynamically adjusting the transmission efficiency of the dual-mode communication corresponding to the voice recorder based on the second data; wherein the second data is network real-time transmission state data.

[0063] The generating and acquiring of the first data corresponding to the voice recorder and the starting of the dual-mode communication in real time according to the first data further comprises:

[0064] S11, generating and acquiring third data corresponding to the voice recorder communication; wherein the third data is network environment data;

[0065] S12, adaptively switching and selecting a data transmission mode corresponding to the voice recorder communication based on the third data; wherein the data transmission mode includes an AP mode and an STA mode.

[0066] The generating and acquiring of the first data corresponding to the voice recorder and the starting of the dual-mode communication in real time according to the first data further comprises:

[0067] S13, generating and acquiring fourth data corresponding to the voice recorder; wherein the fourth data is a transmission mode selection control signal data;

[0068] S14, based on the fourth data, automatically switching to a corresponding data transmission mode according to user selection; wherein the data transmission mode includes a dual-mode transmission mode and a single-mode transmission mode.

[0069] The second data corresponding to the voice recorder is generated and acquired in real time, and based on the second data, the dual-mode communication transmission efficiency corresponding to the voice recorder is dynamically adjusted, and the method further comprises:

[0070] S21, generating and acquiring fifth data and sixth data corresponding to the communication mode; wherein the fifth data is the signal strength of Bluetooth and WiFi; the sixth data is network delay data and bandwidth data;

[0071] S22, based on the fifth data or the sixth data, dynamically adjusting the transmission mode corresponding to the voice recorder.

[0072] The second data corresponding to the voice recorder is generated and acquired in real time, and based on the second data, the dual-mode communication transmission efficiency corresponding to the voice recorder is dynamically adjusted, and the method further comprises:

[0073] S23, generating and acquiring seventh data corresponding to the transmission state of the voice recorder; wherein the seventh data is a transmission mode working frequency band selection control signal data;

[0074] S24, according to the seventh data, and combining frequency division multiplexing technology, staggered selection processing of the working frequency band of Bluetooth and WiFi.

[0075] The second data corresponding to the voice recorder is generated and acquired in real time, and based on the second data, the dual-mode communication transmission efficiency corresponding to the voice recorder is dynamically adjusted, and the method further comprises:

[0076] S25, generating and acquiring eighth data corresponding to the transmission state of the voice recorder; wherein the eighth data is transmission parameter information data, including time data, transmission mode data, transmission speed data and signal strength data of each transmission;

[0077] S26, transmitting and saving the eighth data to the cloud, and real-time remote visualizing the eighth data.

[0078] Specifically, in the embodiment of the present application, a dual-mode communication processing method suitable for a voice recorder is provided, comprising the following steps: step 1, after the voice recorder is started, the Bluetooth module and the WiFi module are simultaneously turned on; step 2, the Bluetooth module adopts a dual-antenna design, supports slow data transmission and real-time audio playback; step 3, the WiFi module supports AP self-built hot spot and STA client mode, and realizes fast data transmission; step 4, through frequency division multiplexing technology, the working frequency bands of Bluetooth and WiFi are staggered to avoid signal interference; step 5, the user can select Bluetooth transmission or WiFi transmission according to needs, or use dual-mode transmission at the same time; step 6, the system monitors the network state in real time, dynamically adjusts the transmission mode to optimize the transmission efficiency; step 7, during Bluetooth transmission, if the WiFi signal strength is sufficient, it is automatically switched to WiFi transmission; step 8, during WiFi transmission, if the signal is weakened or interrupted, it is automatically switched to Bluetooth transmission; step 9, the voice recorder supports dual-mode simultaneous transmission, and the user can select to preferentially use WiFi transmission, and Bluetooth transmission as a backup; step 10, the system records transmission logs, which is convenient for the user to check and analyze the transmission performance.

[0079] Among them, the Bluetooth module adopts a dual-antenna design, specifically including: antenna 1 is used for receiving and sending Bluetooth signals; antenna 2 is used for real-time playback of audio signals; the dual-antenna design ensures that the audio playback is not interrupted during data transmission. The WiFi module supports AP self-built hot spot and STA client mode, specifically including: AP mode: the voice recorder builds a WiFi hot spot, and other devices can connect to the hot spot for data transmission; STA mode: the voice recorder connects to the external WiFi network as a client for data transmission; the system automatically selects the AP mode or the STA mode according to the network environment. The frequency division multiplexing technology specifically includes: the Bluetooth working frequency band is 2.4GHz; the WiFi working frequency band is 5GHz; through frequency division multiplexing technology, the working frequency bands of Bluetooth and WiFi are staggered to avoid signal interference.

[0080] The specific steps of the user selecting the transmission mode include: the user selects the transmission mode through the touch screen or the keys of the voice recorder; the system automatically switches to the corresponding transmission mode according to the user selection; the user can select to use dual-mode transmission at the same time, and the system dynamically adjusts the transmission priority according to the network state.

[0081] The specific steps of the system monitoring the network state in real time include: the system detects the signal strength of Bluetooth and WiFi in real time; the system detects the network delay and bandwidth in real time; the system dynamically adjusts the transmission mode according to the detection results.

[0082] The specific steps of the automatic switching transmission mode include: during the Bluetooth transmission process, if the WiFi signal strength is sufficient, the system automatically switches to WiFi transmission; during the WiFi transmission process, if the signal weakens or is interrupted, the system automatically switches to Bluetooth transmission; during the switching process, the data transmission is ensured not to be interrupted.

[0083] The specific steps of the dual-mode simultaneous transmission include: the user can select to preferentially use WiFi transmission, and Bluetooth transmission as backup; the system dynamically adjusts the transmission priority according to the network state; during the WiFi transmission process, if the signal weakens or is interrupted, the system automatically switches to Bluetooth transmission.

[0084] The specific steps of the system recording transmission logs include: the system records the time, transmission mode, transmission speed, signal strength and other information of each transmission; the user can view the transmission logs through the touch screen of the voice recorder or the connected computer; the system generates a transmission performance report according to the transmission logs, which is convenient for the user to analyze.

[0085] The voice recorder also includes the following functions: the voice recorder supports voice recognition function, which can convert the audio content into text in real time; the voice recorder supports cloud storage function, and the user can upload the audio file to the cloud; the voice recorder supports remote control function, and the user can remotely control the transmission mode of the voice recorder through the mobile phone APP.

[0086] In order to better understand the working principle of the technical scheme of the present application, the following will be described in detail in combination with a specific application scenario.

[0087] Application scenario: a user uses a voice recorder to record a meeting, and needs to quickly transfer the audio file to a notebook computer for editing and archiving after the meeting. The network environment of the meeting place is complex, with strong WiFi signal and interference from other Bluetooth devices.

[0088] Working principle: step 01, dual-mode start: the user starts the voice recorder, and the system simultaneously starts the Bluetooth module and the WiFi module. The Bluetooth module adopts a dual-antenna design, with antenna 1 for data transmission and antenna 2 for real-time audio playback. The WiFi module supports AP self-built hot spot and STA client mode, and the system automatically selects the best mode according to the network environment.

[0089] Step 02, user selects transmission mode: the user selects the "dual-mode transmission" mode through the touch screen of the voice recorder, and the system preferentially uses WiFi transmission and Bluetooth transmission as backup. The system sets the Bluetooth working frequency band to 2.4GHz and the WiFi working frequency band to 5GHz through frequency division multiplexing technology to avoid signal interference.

[0090] Step 03, WiFi Transmission: The system detects a strong WiFi signal and automatically selects the STA client mode, connecting to the conference venue's WiFi network. It begins fast transmission of the recording file at a speed of 50 Mbps, ensuring quick transmission of large files.

[0091] Step 04, Dynamic Monitoring and Switching: During transmission, the system monitors WiFi signal strength and network latency in real-time. Due to the complex network environment at the conference venue, the WiFi signal suddenly weakens, and the system detects that the signal strength is below the threshold. The system automatically switches to Bluetooth transmission mode, and the Bluetooth module continues to transmit data through Antenna 1, ensuring uninterrupted transmission.

[0092] Step 05, Bluetooth Transmission: Bluetooth transmission speed is 2 Mbps, which is slower but ensures the continuity of data transmission. During Bluetooth transmission, the system continues to detect WiFi signal strength. When the WiFi signal recovers, the system automatically switches back to WiFi transmission mode and continues to quickly transmit the remaining files.

[0093] Step 06, Dual-mode Simultaneous Transmission: The user selects to use both Bluetooth and WiFi transmission modes simultaneously. The system divides the file into two parts: large files are transmitted through WiFi at a speed of 50 Mbps, and small files are transmitted through Bluetooth at a speed of 2 Mbps. The system dynamically allocates transmission tasks based on file size and network status to optimize transmission efficiency.

[0094] Step 07, Transmission Log Recording: After transmission is complete, the system records the transmission log, including: transmission time: January 10, 2025, 14:30-14:45; transmission mode: WiFi (main), Bluetooth (backup); transmission speed: WiFi average speed 45 Mbps, Bluetooth average speed 1.8 Mbps; signal strength: WiFi signal strength fluctuates greatly, Bluetooth signal is stable. Users can view the transmission log through the touch screen of the voice recorder or connected computer to analyze transmission performance.

[0095] Step 08, Additional Functions: The voice recorder supports voice recognition function, which converts the recording content into text in real time, facilitating quick editing by users; the voice recorder supports cloud storage function, allowing users to upload recording files to the cloud for data backup and sharing; users can remotely control the transmission mode of the voice recorder through the mobile phone APP, without the need for manual operation.

[0096] Dual-mode startup and frequency division multiplexing: Bluetooth and WiFi modules are started simultaneously, avoiding signal interference through frequency division multiplexing technology. The dual-antenna design of the Bluetooth module ensures that audio playback and data transmission do not interfere with each other.

[0097] Dynamic switching and optimization: The system monitors network status in real time and dynamically adjusts transmission mode. When the WiFi signal is weak, it automatically switches to Bluetooth transmission to ensure continuous transmission.

[0098] User selection and flexibility: Users can choose Bluetooth transmission, WiFi transmission, or dual-mode simultaneous transmission according to their needs. The system optimizes transmission efficiency based on user selection and network status.

[0099] Transmission log and additional functions: The system records transmission logs to help users analyze transmission performance. It supports voice recognition, cloud storage, and remote control functions to enhance user experience.

[0100] Example effect: In a complex network environment in a conference place, the voice recorder successfully realizes efficient and stable data transmission through the dual-mode communication processing method. Users do not need to manually intervene, and the system automatically completes the transmission mode switching to ensure uninterrupted data transmission. Transmission logs help users analyze transmission performance and provide reference for future use.

[0101] To achieve the above purpose, the present application also provides a dual-mode communication processing system suitable for a voice recorder, as shown in Figure 2 The system specifically includes:

[0102] A first data generation unit for generating and obtaining first data corresponding to the voice recorder, and starting dual-mode communication in real time according to the first data; wherein the first data is a communication start control signal data; the dual-mode communication includes Bluetooth communication and WiFi communication;

[0103] A data generation processing unit for generating and obtaining second data corresponding to the voice recorder in real time, and dynamically adjusting the transmission efficiency of the dual-mode communication corresponding to the voice recorder based on the second data; wherein the second data is network real-time transmission state data.

[0104] The first data generation unit further includes:

[0105] A first generation module for generating and obtaining third data corresponding to voice recorder communication; wherein the third data is network environment data;

[0106] A first processing module for adaptively switching and selecting a data transmission mode corresponding to voice recorder communication based on the third data; wherein the data transmission mode includes AP mode and STA mode;

[0107] And / or, the data generation processing unit further includes:

[0108] The second generating module is configured to generate and acquire fifth data and sixth data corresponding to the communication mode, wherein the fifth data is signal strength of Bluetooth and WiFi, and the sixth data is network delay data and bandwidth data.

[0109] The second processing module is configured to dynamically adjust the transmission mode corresponding to the voice recorder based on the fifth data or the sixth data.

[0110] The first data generating unit further comprises:

[0111] The third generating module is configured to generate and acquire fourth data corresponding to the voice recorder, wherein the fourth data is transmission mode selection control signal data.

[0112] The third processing module is configured to automatically switch to a corresponding data transmission mode according to user selection based on the fourth data, wherein the data transmission mode comprises a dual-mode transmission mode and a single-mode transmission mode.

[0113] And / or, the data generating and processing unit further comprises:

[0114] The fourth generating module is configured to generate and acquire seventh data corresponding to the transmission state of the voice recorder, wherein the seventh data is control signal data for selection of a working frequency band of the transmission mode.

[0115] The fourth processing module is configured to stagger the selection of working frequency bands of Bluetooth and WiFi by combining the seventh data with frequency division multiplexing technology.

[0116] The fifth generating module is configured to generate and acquire eighth data corresponding to the transmission state of the voice recorder, wherein the eighth data is transmission parameter information data, including time data, transmission mode data, transmission speed data and signal strength data of each transmission.

[0117] The visual display module is configured to transmit and save the eighth data to the cloud and to real-time remotely visually display the eighth data.

[0118] In the system scheme embodiment of the present application, the method steps involved in the dual-mode communication processing suitable for the voice recorder have been described in detail above, that is, the functional modules in the system are used to realize the steps or sub-steps in the above method embodiment, which will not be described here.

[0119] To achieve the above object, the present application further provides a dual-mode communication processing platform suitable for the voice recorder, such as Figure 3As shown, comprising a processor, a memory and a dual-mode communication processing platform control program suitable for a voice recorder;Wherein, in the processor executes the dual-mode communication processing platform control program suitable for the voice recorder, the dual-mode communication processing platform control program suitable for the voice recorder is stored in the memory, the dual-mode communication processing platform control program suitable for the voice recorder, realizes the dual-mode communication processing method steps suitable for the voice recorder.For example:

[0120] S1, generate and acquire the first data corresponding to the voice recorder, and start the dual-mode communication in real time according to the first data;Wherein, the first data is a communication start control signal data;The dual-mode communication includes Bluetooth communication and WiFi communication;

[0121] S2, real-time generation and acquisition of the second data corresponding to the voice recorder, and dynamically adjust the transmission efficiency of the dual-mode communication corresponding to the voice recorder based on the second data;Wherein, the second data is network real-time transmission state data.

[0122] The specific details of the steps have been described above, and will not be repeated here.

[0123] In the embodiment of the application, the dual-mode communication processing platform suitable for the voice recorder built-in processor can be composed of integrated circuits, for example, it can be composed of a single packaged integrated circuit, or it can be composed of multiple packaged integrated circuits with the same function or different functions, including one or more central processing units (CPU), microprocessors, digital processing chips, graphics processors and various control chips, etc.Processor uses various interfaces and lines to connect various components, and executes the program or unit stored in the memory, and calls the data stored in the memory, to execute the dual-mode communication processing functions suitable for the voice recorder and process data;

[0124] The memory is used to store program codes and various data, installed in the dual-mode communication processing platform suitable for the voice recorder, and realizes high-speed, automatic program or data access during running.

[0125] The memory includes Read-Only Memory (ROM), Random Access Memory (RAM), Programmable Read-Only Memory (PROM), Erasable Programmable Read-Only Memory (EPROM), One-time Programmable Read-Only Memory (OTPROM), Electrically-Erasable Programmable Read-Only Memory (EEPROM), Compact Disc Read-Only Memory (CD-ROM) or other optical disk memory, magnetic disk memory, magnetic tape memory, or any other medium capable of carrying or storing data that is readable by a computer.

[0126] The application generates and acquires first data corresponding to the voice recorder in real time, and starts dual-mode communication according to the first data; wherein the first data is communication start control signal data; the dual-mode communication includes Bluetooth communication and WiFi communication; second data corresponding to the voice recorder is generated and acquired in real time, and the transmission efficiency of the dual-mode communication corresponding to the voice recorder is dynamically adjusted based on the second data; wherein the second data is network real-time transmission state data, and the system and platform corresponding to the method can combine the advantages of Bluetooth and WiFi dual-mode transmission, avoid signal interference and support dynamic switching at the same time, that is, through Bluetooth and WiFi dual-mode transmission technology, combining frequency division multiplexing and dynamic switching mechanism, efficient and stable data transmission is realized, and user experience is improved.

[0127] That is, the application scheme realizes efficient and stable data transmission of the voice recorder through the dual-mode communication processing method, combines frequency division multiplexing technology and dynamic switching mechanism, solves the deficiency of the single transmission mode in the prior art. At the same time, the application scheme supports users to flexibly select the transmission mode, and provides a transmission log recording function, further improving the user experience.

[0128] In other words, the scheme of the present application realizes efficient and stable data transmission through Bluetooth and WiFi dual-mode transmission technology combined with frequency division multiplexing and dynamic switching mechanism; the design of dual-antenna Bluetooth module ensures that audio playback and data transmission do not interfere with each other, improving user experience; that is, efficient and stable data transmission. Through frequency division multiplexing technology, the Bluetooth operating frequency band is set to 2.4GHz, and the WiFi operating frequency band is set to 5GHz, avoiding signal interference. The signal isolation mechanism ensures that Bluetooth and WiFi transmission do not interfere with each other, improving transmission efficiency, that is, signal isolation and interference avoidance. The system monitors the network state in real time, dynamically adjusts the transmission mode, and ensures that the transmission efficiency does not decrease when the network environment changes. Automatically switch to Bluetooth transmission when the WiFi signal is weak to ensure transmission continuity, that is, dynamic switching and optimization.

[0129] In addition, users can choose Bluetooth transmission, WiFi transmission or dual-mode simultaneous transmission according to their needs, meeting diverse needs. The system optimizes transmission efficiency according to user selection and network state, improving user experience, that is, user selection flexibility. Moreover, the scheme of the present application also has a transmission log recording function: the system records transmission logs, including transmission time, transmission mode, transmission speed, signal strength and other information, making it easy for users to view and analyze transmission performance. The transmission log recording function helps users optimize subsequent use experience. The voice recorder supports voice recognition function, which converts the recording content into text in real time, making it easy for users to quickly edit. The voice recorder supports cloud storage function, and users can upload the recording file to the cloud to realize data backup and sharing. Users can remotely control the transmission mode of the voice recorder through the mobile phone APP, without the need for manual operation, improving the convenience of use.

[0130] The above-described embodiments only express several embodiments of the present application, which are described in detail and specifically, but should not be understood as limiting the scope of the present patent. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, several modifications and improvements can be made, which are within the scope of protection of the present application. Therefore, the protection scope of the present patent should be subject to the appended claims.

Claims

1. A dual-mode communication processing method suitable for voice recorders, characterized in that, The method includes the following steps: Generate and acquire first data corresponding to the voice recorder, and initiate dual-mode communication in real time based on the first data; wherein, the first data is communication start control signal data; the dual-mode communication includes Bluetooth communication and WiFi communication; The system generates and acquires second data corresponding to the voice recorder in real time, and dynamically adjusts the processing efficiency of the dual-mode communication transmission corresponding to the voice recorder based on the second data; wherein the second data is real-time network transmission status data.

2. The dual-mode communication processing method for a voice recorder according to claim 1, characterized in that, The step of generating and acquiring first data corresponding to the voice recorder, and initiating dual-mode communication in real time based on the first data, further includes: Generate and acquire third data corresponding to the communication of the voice recorder; wherein, the third data is network environment data; Based on the third data, the data transmission mode corresponding to the voice recorder communication is adaptively switched; wherein, the data transmission mode includes AP mode and STA mode.

3. A dual-mode communication processing method for a voice recorder according to claim 1 or 2, characterized in that, The step of generating and acquiring first data corresponding to the voice recorder, and initiating dual-mode communication in real time based on the first data, further includes: Generate and acquire fourth data corresponding to the voice recorder; wherein, the fourth data is transmission mode selection control signal data; Based on the fourth data, the system automatically switches to the corresponding data transmission mode according to the user's selection; wherein, the data transmission mode includes dual-mode transmission mode and single-mode transmission mode.

4. The dual-mode communication processing method for a voice recorder according to claim 1, characterized in that, The real-time generation and acquisition of second data corresponding to the recording pen, and the dynamic adjustment of the dual-mode communication transmission efficiency corresponding to the recording pen based on the second data, further includes: Generate and acquire fifth and sixth data corresponding to the communication mode; wherein, the fifth data is the signal strength of Bluetooth and WiFi; and the sixth data is network latency data and bandwidth data. Based on the fifth or sixth data, the transmission mode corresponding to the voice recorder is dynamically adjusted.

5. A dual-mode communication processing method suitable for a voice recorder according to claim 1 or 4, characterized in that, The real-time generation and acquisition of second data corresponding to the recording pen, and the dynamic adjustment of the dual-mode communication transmission efficiency corresponding to the recording pen based on the second data, further includes: Generate and acquire seventh data corresponding to the transmission status of the voice recorder; wherein, the seventh data is control signal data for switching the operating frequency band of the transmission mode; Based on the seventh data and in conjunction with frequency division multiplexing technology, the operating frequency bands of Bluetooth and WiFi are staggered and selected for processing.

6. The dual-mode communication processing method for a voice recorder according to claim 5, characterized in that, The real-time generation and acquisition of second data corresponding to the recording pen, and the dynamic adjustment of the dual-mode communication transmission efficiency corresponding to the recording pen based on the second data, further includes: Generate and acquire the eighth data corresponding to the transmission status of the voice recorder; wherein, the eighth data is transmission parameter information data, including time data, transmission mode data, transmission speed data and signal strength data for each transmission; The eighth data is transmitted and saved to the cloud, and the eighth data is displayed remotely in real time.

7. A dual-mode communication processing system suitable for voice recorders, characterized in that, The system is used to implement the dual-mode communication processing method for a voice recorder as described in any one of claims 1-6, and the system includes: The first data generation unit is used to generate and acquire first data corresponding to the voice recorder, and to start dual-mode communication in real time based on the first data; wherein, the first data is communication start control signal data; the dual-mode communication includes Bluetooth communication and WiFi communication; The data generation and processing unit is used to generate and acquire second data corresponding to the recording pen in real time, and dynamically adjust the processing efficiency of dual-mode communication transmission corresponding to the recording pen based on the second data; wherein, the second data is real-time network transmission status data.

8. The dual-mode communication processing system for a voice recorder according to claim 7, characterized in that, The first data generation unit further includes: The first generation module is used to generate and acquire third data corresponding to the communication of the voice recorder; wherein, the third data is network environment data; The first processing module is used to adaptively switch and select a data transmission mode corresponding to the communication of the voice recorder based on the third data; wherein the data transmission mode includes AP mode and STA mode; And / or, the data generation and processing unit further includes: The second generation module is used to generate and acquire fifth data and sixth data corresponding to the communication mode; wherein, the fifth data is the signal strength of Bluetooth and WiFi; and the sixth data is network latency data and bandwidth data. The second processing module is used to dynamically adjust the transmission mode corresponding to the recording pen based on the fifth data or the sixth data.

9. A dual-mode communication processing system suitable for a voice recorder according to claim 7 or 8, characterized in that, The first data generation unit further includes: The third generation module is used to generate and acquire fourth data corresponding to the voice recorder; wherein, the fourth data is transmission mode selection control signal data; The third processing module is used to automatically switch to the corresponding data transmission mode based on the fourth data and the user's selection; wherein, the data transmission mode includes dual-mode transmission mode and single-mode transmission mode; And / or, the data generation and processing unit further includes: The fourth generation module is used to generate and acquire the seventh data corresponding to the transmission status of the recorder; wherein, the seventh data is the control signal data for switching the operating frequency band of the transmission mode; The fourth processing module is used to process the operating frequency bands of Bluetooth and WiFi separately based on the seventh data and in conjunction with frequency division multiplexing technology. The fifth generation module is used to generate and acquire the eighth data corresponding to the transmission status of the voice recorder; wherein, the eighth data is transmission parameter information data, including time data, transmission mode data, transmission speed data and signal strength data for each transmission; The visualization module is used to transmit and save the eighth data to the cloud and to visualize and display the eighth data remotely in real time.

10. A dual-mode communication processing platform suitable for voice recorders, characterized in that, The system includes a processor, a memory, and a dual-mode communication processing platform control program suitable for a voice recorder; wherein the dual-mode communication processing platform control program suitable for a voice recorder is executed on the processor, the dual-mode communication processing platform control program suitable for a voice recorder is stored in the memory, and the dual-mode communication processing platform control program suitable for a voice recorder implements the dual-mode communication processing method suitable for a voice recorder as described in any one of claims 1 to 6.