Pairing connection method applied to wireless microphone system and related equipment
By introducing intelligent search algorithms and flag management into the wireless microphone system, fast device pairing and connection are achieved, solving the problem of low device pairing efficiency in the existing technology and improving the stability and flexibility of microphone connections.
Patent Information
- Application Number
- CN202510956814.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-11
- Publication Date
- 2025-10-17
AI Technical Summary
Existing wireless microphone systems are inefficient in device pairing and connection management, cannot meet the flexibility requirements of sound quality and usage scenarios, and have poor device compatibility.
A pairing and connection method for a wireless microphone system is adopted. The receiving end stores the microphone address and flag bit, and uses an intelligent search algorithm and flag bit management to automatically identify and connect a clip microphone or a desktop microphone, thereby achieving fast pairing and connection.
It improves the efficiency and accuracy of device pairing, ensures the stability and flexibility of microphone connection, and enables users to quickly establish a connection with the microphone, saving time and improving work efficiency.
Smart Images

Figure CN120812445A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of wireless microphone connection, and in particular to a pairing connection method applied to a wireless microphone system and related equipment. BACKGROUND
[0002] The existing wireless microphone system is usually limited by wireless bandwidth and technology, and can only support one-to-two two-way communication, that is, one receiving end connects one mobile phone and two wireless microphones. Although such a system can meet the basic audio transmission requirements, it has deficiencies in sound quality and flexibility of use scenarios. For example, the sound quality of a lapel microphone may not meet professional requirements, and if a user needs to use a large desktop microphone with better sound quality, he or she will face the problems of complex connection and device compatibility. In addition, the existing system lacks intelligence in device pairing and connection management, and cannot automatically switch and manage connected devices according to the user's use scenario.
[0003] Therefore, the traditional wireless microphone system has the problem of low work efficiency in device pairing and connection management. SUMMARY
[0004] The purpose of the embodiments of the present application is to provide a pairing connection method applied to a wireless microphone system and related equipment, so as to solve the problem of low work efficiency in device pairing and connection management of the traditional wireless microphone system.
[0005] In order to solve the above technical problems, the embodiments of the present application provide a pairing connection method applied to a wireless microphone system, the wireless microphone system comprising one receiving end, N lapel microphones, M desktop microphones and a user terminal, the receiving end storing lapel microphone addresses, desktop microphone addresses, and lapel flag bits and desktop flag bits corresponding to the lapel microphone addresses and the desktop microphone addresses respectively, N and M being integers greater than zero, and the method adopts the following technical solution:
[0006] When the receiving end accesses the user terminal to enter an automatic pairing state, read the lapel pairing information of the lapel microphone address;
[0007] Determine whether the lapel flag bit is in a saved state;
[0008] If the lapel flag bit is in the saved state, complete the pairing connection operation according to the lapel pairing information and the lapel microphone;
[0009] If the lapel flag bit is not in the saved state, read the desktop pairing information of the desktop microphone address;
[0010] According to the desktop pairing information and the desktop microphone complete pairing connection operation.
[0011] Further, if the collar flag bit is in the save state, then according to the collar pairing information and the collar microphone complete pairing connection operation, specifically comprising the following steps:
[0012] Get the collar broadcast package sent by the collar microphone;
[0013] Determine whether the collar broadcast package matches the collar pairing information;
[0014] If the collar broadcast package matches the collar pairing information, then according to the collar pairing information and the collar microphone complete pairing connection operation;
[0015] If the collar broadcast package does not match the collar pairing information, then read the desktop pairing information of the desktop microphone address.
[0016] Further, the step of according to the desktop pairing information and the desktop microphone complete pairing connection operation, specifically comprising the following steps:
[0017] Determine whether the flag bit of the desktop microphone address is in the save state;
[0018] If the flag bit of the desktop microphone address is in the save state, then time-sharing scan the desktop broadcast package sent by the desktop microphone until according to the desktop pairing information and the desktop microphone complete pairing connection operation;
[0019] If the flag bit of the desktop microphone address is not in the save state, then according to the intelligent search algorithm, take turns to search the broadcast package sent by the collar microphone or the desktop microphone until the pairing connection operation with the collar microphone or the desktop microphone is completed.
[0020] Further, the step of if the flag bit of the desktop microphone address is not in the save state, then according to the intelligent search algorithm, take turns to search the broadcast package sent by the collar microphone or the desktop microphone until the pairing connection operation with the collar microphone or the desktop microphone is completed, specifically comprising the following steps:
[0021] When the collar microphone is in the power-on state and the desktop microphone is in the power-off state, get the broadcast package sent by the collar microphone, and complete the pairing connection operation according to the search of the broadcast package sent by the collar microphone;
[0022] When the desktop microphone is in the on state and the lapel microphone is in the off state, a broadcast packet sent by the desktop microphone is acquired, and a pairing connection operation is completed according to the broadcast packet sent by the desktop microphone.
[0023] When the desktop microphone and the lapel microphone are both in the on state, a first broadcast packet searched according to an intelligent search algorithm is searched, and a pairing connection operation is completed according to the searched first broadcast packet.
[0024] Further, the step of searching the first broadcast packet according to the intelligent search algorithm when the desktop microphone and the lapel microphone are both in the on state, and completing the pairing connection operation according to the searched first broadcast packet, specifically includes the following steps:
[0025] Receiving a microphone connection type sent by a user terminal;
[0026] Searching a broadcast packet corresponding to the microphone connection type according to an intelligent search algorithm;
[0027] Completing a pairing connection operation according to the broadcast packet corresponding to the microphone connection type.
[0028] Further, after the step of receiving the microphone connection type sent by the user terminal, and before the step of searching the broadcast packet corresponding to the microphone connection type according to the intelligent search algorithm, the following steps are further included:
[0029] Clearing pairing information of a microphone address inconsistent with the microphone connection type stored in the receiving end, and adjusting a flag bit of the microphone address inconsistent with the microphone connection type to a clearing state.
[0030] In order to solve the above technical problems, the embodiment of the present application further provides a pairing connection device applied to a wireless microphone system, the wireless microphone system comprising a receiving end, N lapel microphones, M desktop microphones and a user terminal, the receiving end storing a lapel microphone address, a desktop microphone address and a lapel flag bit and a desktop flag bit corresponding to the lapel microphone address and the desktop microphone address respectively, N and M being integers greater than zero, and the device adopting the following technical solution:
[0031] A lapel pairing information acquisition module is configured to read lapel pairing information of the lapel microphone address when the receiving end accesses the user terminal to enter an automatic pairing state.
[0032] A lapel flag bit judgment module is configured to judge whether the lapel flag bit is in a saving state.
[0033] The lanyard microphone pairing module is configured to, if the lanyard flag bit is in a saved state, complete a pairing connection operation with the lanyard microphone according to the lanyard pairing information.
[0034] The desktop pairing information acquisition module is configured to, if the lanyard flag bit is not in a saved state, read desktop pairing information of the desktop microphone address.
[0035] The desktop microphone pairing module is configured to complete a pairing connection operation with the desktop microphone according to the desktop pairing information.
[0036] Further, the lanyard microphone pairing module comprises:
[0037] The lanyard broadcast packet acquisition submodule is configured to acquire a lanyard broadcast packet sent by the lanyard microphone.
[0038] The lanyard pairing information judgment submodule is configured to judge whether the lanyard broadcast packet matches the lanyard pairing information.
[0039] The lanyard pairing information matching submodule is configured to, if the lanyard broadcast packet matches the lanyard pairing information, complete a pairing connection operation with the lanyard microphone according to the lanyard pairing information.
[0040] The lanyard pairing information non-matching submodule is configured to, if the lanyard broadcast packet does not match the lanyard pairing information, read desktop pairing information of the desktop microphone address.
[0041] To solve the above technical problems, the embodiment of the present application further provides a computer device, which adopts the technical scheme as follows:
[0042] The computer device comprises a memory and a processor, the memory stores computer readable instructions, and the processor implements the steps of the pairing connection method for a wireless microphone system when executing the computer readable instructions.
[0043] To solve the above technical problems, the embodiment of the present application further provides a computer readable storage medium, which adopts the technical scheme as follows:
[0044] The computer readable storage medium stores computer readable instructions, and the computer readable instructions are executed by a processor to implement the steps of the pairing connection method for a wireless microphone system.
[0045] The application provides a pairing connection method applied to a wireless microphone system, and the method comprises the following steps: reading lanyard pairing information of a lanyard microphone address when a receiving end accesses a user terminal to enter an automatic pairing state; judging whether a lanyard flag bit is in a saved state; if the lanyard flag bit is in the saved state, completing a pairing connection operation according to the lanyard pairing information and the lanyard microphone; if the lanyard flag bit is not in the saved state, reading desktop pairing information of a desktop microphone address; and completing a pairing connection operation according to the desktop pairing information and the desktop microphone. Compared with the prior art, the pairing mechanism of the application enables a user to quickly establish a connection with a microphone, thereby saving time and improving work efficiency. In addition, through the management of the lanyard flag bit and the desktop flag bit, the system can clearly track and record the states of paired and unpaired microphones, thereby ensuring the accuracy and stability of the pairing connection. In addition, through the management of the lanyard flag bit and the desktop flag bit, the system can clearly track and record the states of paired and unpaired microphones, thereby ensuring the accuracy and stability of the pairing connection. BRIEF DESCRIPTION OF DRAWINGS
[0046] In order to more clearly illustrate the scheme in the application, the following will briefly introduce the drawings needed to be used in the description of the embodiments of the application. Obviously, the drawings in the following description are some embodiments of the application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of these drawings.
[0047] Figure 1 is an exemplary system architecture diagram to which the application can be applied;
[0048] Figure 2 is an implementation flowchart of the pairing connection method applied to the wireless microphone system provided by the embodiments of the application;
[0049] Figure 3 is a structural schematic diagram of the pairing connection device applied to the wireless microphone system provided by the embodiments of the application;
[0050] Figure 4 is a structural schematic diagram of an embodiment of a computer device according to the application. DETAILED DESCRIPTION
[0051] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terms used in the specification are intended to describe the particular embodiments and are not intended to limit the application; the terms "include" and "have" and their any variations used in the specification and the claims and the above description of drawings are intended to cover the non-exclusive inclusion; the terms "first", "second" and the like used in the specification and the claims and the above description of drawings are intended to distinguish different objects, not to describe a particular order.
[0052] Reference herein to "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment can be included in at least one embodiment of the application. The appearances of the phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily mutually exclusive or alternative embodiments. It is expressly understood that the embodiments described herein are combinable with each other.
[0053] In order to make the person skilled in the art better understand the scheme of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely in conjunction with the drawings below.
[0054] As shown in Figure 1 The system architecture 100 can include a terminal device 101, a network 102 and a server 103, and the terminal device 101 can be a notebook computer 1011, a tablet computer 1012 or a mobile phone 1013. The network 102 is a medium for providing a communication link between the terminal device 101 and the server 103. The network 102 can include various connection types, such as wired, wireless communication links or optical fiber cables, etc.
[0055] The user can use the terminal device 101 to interact with the server 103 through the network 102 to receive or send messages, etc. Various communication client applications can be installed on the terminal device 101, such as web browser applications, shopping applications, search applications, instant messaging tools, email clients, social platform software, etc.
[0056] The terminal device 101 can be various electronic devices with a display screen and supporting web browsing, in addition to the notebook computer 1011, the tablet computer 1012 or the mobile phone 1013, the terminal device 101 can also be an electronic book reader, an MP3 player (Movi ng Pi cture Experts Group Aud i o Layer III, dynamic image expert compression standard audio layer III), an MP4 (Movi ng Pi cture Experts Group Audio Layer IV, dynamic image expert compression standard audio layer IV) player, a laptop computer and a desktop computer, etc.
[0057] The server 103 can be a server providing various services, for example, a background server providing support for the page displayed on the terminal device 101.
[0058] It should be noted that the pairing connection method applied to the wireless microphone system provided by the embodiments of the present application is generally executed by a server / terminal device, and accordingly, the pairing connection device applied to the wireless microphone system is generally arranged in the server / terminal device.
[0059] It should be understood that, Figure 1 The number of terminal devices, networks and servers in
[0060] With reference to Figure 2 , a flow chart of one embodiment of the pairing connection method applied to the wireless microphone system according to the present application is shown. The pairing connection method applied to the wireless microphone system, the wireless microphone system comprises a receiving end, N lavalier microphones, M desktop microphones and a user terminal, the receiving end stores lavalier microphone addresses, desktop microphone addresses and lavalier flag bits and desktop flag bits corresponding to the lavalier microphone addresses and the desktop microphone addresses respectively, N and M are integers greater than zero, the above method comprises steps S201, S202, S203, S204 and S205.
[0061] In step S201, when the receiving end accesses the user terminal to enter an automatic pairing state, lavalier pairing information of the lavalier microphone addresses is read;
[0062] In step S202, it is judged whether the lavalier flag bit is in a saved state;
[0063] In step S203, if the lavalier flag bit is in the saved state, pairing connection operation is completed according to the lavalier pairing information and the lavalier microphone;
[0064] In step S204, if the lavalier flag bit is not in the save state, the desktop microphone address desktop pairing information is read;
[0065] In step S205, the desktop microphone completes the pairing connection operation according to the desktop pairing information.
[0066] In the embodiment of the present application, the present application is applicable to a wireless microphone system, wherein the wireless microphone system comprises a receiving end, a plurality of wireless microphones (including a lavalier microphone and a desktop microphone) and a handset, the wireless lavalier microphone defaults to a lavalier microphone address, the wireless desktop microphone defaults to a desktop microphone address, the receiving end has two storage addresses inside, the lavalier microphone address is used for storing the pairing information of the lavalier microphone, and the desktop microphone address is used for storing the pairing information of the desktop microphone. After the receiving end and the wireless product are turned on, the receiving end intelligently enters a pairing state.
[0067] In the embodiment of the present application, the user terminal refers to a terminal device for executing the image processing method for preventing certificate abuse provided by the present application. The user terminal can be a mobile terminal such as a mobile phone, a smart phone, a notebook computer, a digital broadcast receiver, a PDA (Personal Digital Assistant), a PAD (Tablet Personal Computer), a PMP (Portable Multimedia Player), a navigation device, and the like, and a fixed terminal such as a digital TV, a desktop computer, and the like. It should be understood that the examples of the user terminal herein are only for easy understanding and do not limit the present application.
[0068] In the embodiment of the present application, after the receiving end is powered on, the pairing information of the lavalier microphone address is read first. If the flag bit of the lavalier microphone address is in the save state, the receiving end will try to establish a connection with the lavalier microphone. If the lavalier microphone is in the power-off state, the information of the desktop microphone address is read, and if the flag bit of the desktop microphone address is also in the save state, the receiving end will try to establish a connection with the wireless desktop microphone.
[0069] In some optional implementation manners of the embodiment of the present application, when the receiving end enters the pairing state, the pairing information of the desktop microphone address is cleared, and the flag bit is set to the clear state. The pairing information saved in the address 1 is not cleared. After the desktop microphone is turned on, the receiving end automatically connects the desktop microphone, saves the pairing information of the desktop microphone in the desktop microphone address, and sets the flag bit to the save state.
[0070] In an embodiment of the present application, a pairing and connection method for a wireless microphone system is provided, comprising: when a receiving end is connected to a user terminal and enters an automatic pairing state, reading the lavalier pairing information of the lavalier microphone address; determining whether the lavalier flag is in a saved state; if the lavalier flag is in a saved state, completing the pairing and connection operation with the lavalier microphone according to the lavalier pairing information; if the lavalier flag is not in a saved state, reading the desktop pairing information of the desktop microphone address; and completing the pairing and connection operation with the desktop microphone according to the desktop pairing information. Compared with the prior art, the automated pairing mechanism of the present application enables users to quickly establish a connection with the microphone, thereby saving time and improving work efficiency. In addition, through the management of the lavalier flag and the desktop flag, the system can clearly track and record the status of paired and unpaired microphones, thereby ensuring the accuracy and stability of the pairing connection.
[0071] In some optional implementations of the embodiments of the present application, if the lavalier flag is in the saved state, the step of completing the pairing connection operation with the lavalier microphone according to the lavalier pairing information specifically includes the following steps:
[0072] Get the lavalier broadcast packet sent by the lavalier microphone;
[0073] Determine whether the collar clip broadcast packet matches the collar clip pairing information;
[0074] If the lavalier broadcast packet matches the lavalier pairing information, the lavalier microphone is paired with the lavalier microphone according to the lavalier pairing information.
[0075] If the collar broadcast packet does not match the collar pairing information, read the desktop pairing information of the desktop microphone address.
[0076] In an embodiment of the present application, after the user inserts the receiving end into the mobile phone and powers on the mobile phone, the receiving end starts to run. At this time, the receiving end starts to automatically identify and read the pairing information. If the address recognized is the lavalier microphone address, the lavalier microphone address flag is in a saved state, and the lavalier microphone is also in a powered-on state. At this time, the lavalier microphone is automatically connected to the receiving end.
[0077] In some optional implementations of the embodiments of the present application, the steps of completing the pairing and connection operation with the desktop microphone according to the desktop pairing information specifically include the following steps:
[0078] Determine whether the flag of the desktop microphone address is in the saved state;
[0079] If the address flag of the desktop microphone is in the saved state, the desktop broadcast packet sent by the desktop microphone is scanned in a time-sharing manner until the desktop microphone is paired with the desktop microphone according to the desktop pairing information.
[0080] If the flag of the desktop microphone address is not in the saved state, the broadcast packet sent by the lanyard microphone or the desktop microphone is searched according to the intelligent search algorithm until the pairing connection operation with the lanyard microphone or the desktop microphone is completed.
[0081] In the embodiment of the present application, if the lanyard microphone address is identified but the lanyard microphone is in the shutdown state and the address 1 lanyard microphone cannot be searched in the air, the software will automatically switch the pairing information of the desktop microphone address. If the flag of the desktop microphone address is "saved", the receiving end will scan the wireless broadcast packet in the air according to the information of the desktop microphone address and try to establish a connection with the desktop microphone. Once the matching is successful, the receiving end will establish a connection with the desktop microphone and send the digital audio signal of the mobile phone to the desktop microphone.
[0082] In some optional implementation manners of the embodiment of the present application, the step of searching the broadcast packet sent by the lanyard microphone or the desktop microphone according to the intelligent search algorithm until the pairing connection operation with the lanyard microphone or the desktop microphone is completed if the flag of the desktop microphone address is not in the saved state, specifically includes the following steps:
[0083] When the lanyard microphone is in the startup state and the desktop microphone is in the shutdown state, the broadcast packet sent by the lanyard microphone is acquired, and the pairing connection operation is completed according to the search of the broadcast packet sent by the lanyard microphone;
[0084] When the desktop microphone is in the startup state and the lanyard microphone is in the shutdown state, the broadcast packet sent by the desktop microphone is acquired, and the pairing connection operation is completed according to the search of the broadcast packet sent by the desktop microphone;
[0085] When the desktop microphone and the lanyard microphone are both in the startup state, the first broadcast packet searched according to the intelligent search algorithm is searched, and the pairing connection operation is completed according to the first broadcast packet.
[0086] In the embodiment of the present application, after the user inserts the receiving end into the mobile phone and powers on, the receiving end starts to run. At this time, the receiving end starts to automatically identify and read the pairing information. If the lavalier microphone address is recognized, the lavalier microphone address flag is in a saved state, and the lavalier microphone is also in a powered-on state, the lavalier microphone is automatically connected to the receiving end. If the lavalier microphone address is recognized, but the lavalier microphone is in a powered-on state and the lavalier microphone with address 1 cannot be searched in the air, the software will automatically switch the pairing information of the desktop microphone address. The software starts the intelligent search algorithm to search for the controlled broadcast packets in turn (time-sharing and taking turns to search for broadcast packets in the air) until the device location of the lavalier microphone address or the desktop microphone address is connected. During the search process, the device that is found first will be connected first. For example, if the device with the lavalier microphone address is connected, if the device with the desktop microphone address is also powered on at this time, the device connected to the desktop microphone address can be controlled through the APP, so that automatic intelligent search can be achieved, or manual switching can be achieved according to user operation.
[0087] In some optional implementations of the embodiments of the present application, when both the desktop microphone and the lavalier microphone are powered on, searching for the first broadcast packet according to the intelligent search algorithm and completing the pairing and connection operation according to the first broadcast packet searched specifically include the following steps:
[0088] Receive the microphone connection type sent by the user terminal;
[0089] Searching for broadcast packets corresponding to the microphone connection type according to an intelligent search algorithm;
[0090] The pairing connection operation is completed according to the advertising packet corresponding to the microphone connection type.
[0091] In the embodiments of this application, users can select different microphones based on the usage scenario. For example, when using a lavalier microphone outdoors, the receiver will prioritize connecting to the lavalier microphone; when singing or recording indoors, the user can switch the receiver to desktop microphone mode through the mobile phone app, and the receiver will automatically connect to the desktop microphone.
[0092] In some optional implementations of the embodiments of the present application, after the step of receiving the microphone connection type sent by the user terminal and before the step of searching for a broadcast packet corresponding to the microphone connection type according to the intelligent search algorithm, the following steps are further included:
[0093] The pairing information of the microphone address that is inconsistent with the microphone connection type stored in the receiving end is cleared, and the flag bit of the microphone address that is inconsistent with the microphone connection type is adjusted to a cleared state.
[0094] In the embodiment of the present application, the user can control the receiving end to enter the pairing state through the mobile phone APP. After the receiving end enters the pairing state, the pairing information of the desktop microphone address is cleared, and the flag is set to "clear". At this time, the user opens the desktop microphone, and the receiving end automatically detects the broadcast signal of the desktop microphone and saves the pairing information of the desktop microphone in the desktop microphone address, and sets the flag to "save".
[0095] The embodiment of the present application can acquire and process related data based on artificial intelligence technology. Artificial intelligence (AI) is the use of digital computers or computer-controlled machines to simulate, extend and expand human intelligence, perceive the environment, acquire knowledge and use knowledge to obtain the best results.
[0096] The basic technology of artificial intelligence generally includes technologies such as sensors, special artificial intelligence chips, cloud computing, distributed storage, big data processing technology, operation / interaction system, mechatronics, etc. The software technology of artificial intelligence mainly includes computer vision technology, robot technology, biometric technology, speech processing technology, natural language processing technology, and machine learning / deep learning, etc.
[0097] Those skilled in the art can understand that all or part of the processes in the above-mentioned embodiment methods can be completed by computer readable instructions instructing related hardware, and the computer readable instructions can be stored in a computer readable storage medium. The program can include the processes of the above-mentioned embodiments when executed. The storage medium can be a non-volatile storage medium such as a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).
[0098] It should be understood that although each step in the flowchart of the accompanying drawings is displayed in sequence according to the arrow, these steps are not necessarily executed in sequence according to the arrow. Unless otherwise specified herein, the execution of these steps is not strictly limited in sequence, and they can be executed in other orders. Moreover, at least part of the steps in the flowchart of the accompanying drawings can include multiple sub-steps or multiple stages, which are not necessarily executed at the same time, but can be executed at different times, and the execution sequence is not necessarily sequential, but can be alternately executed with other steps or sub-steps or stages of other steps.
[0099] Further reference is made to Figure 3 , as to the above Figure 2In the implementation of the method, the application provides an embodiment of a pairing connection device applied to a wireless microphone system, and the device embodiment is used for Figure 2 The device can be applied to various electronic devices.
[0100] As Figure 3 The pairing connection device 200 applied to the wireless microphone system in the embodiment of the application is shown in the figure, and the wireless microphone system includes a receiving end, N lavalier microphones, M desktop microphones, and a user terminal. The receiving end stores lavalier microphone addresses, desktop microphone addresses, and lavalier flag bits and desktop flag bits corresponding to the lavalier microphone addresses and the desktop microphone addresses, respectively. N and M are integers greater than zero. The device 200 includes:
[0101] The lavalier pairing information acquisition module 210 is configured to read lavalier pairing information of the lavalier microphone addresses when the receiving end accesses the user terminal to enter an automatic pairing state.
[0102] The lavalier flag bit judgment module 220 is configured to judge whether the lavalier flag bit is in a saved state.
[0103] The lavalier microphone pairing module 230 is configured to complete a pairing connection operation with the lavalier microphone according to the lavalier pairing information if the lavalier flag bit is in the saved state.
[0104] The desktop pairing information acquisition module 240 is configured to read desktop pairing information of the desktop microphone addresses if the lavalier flag bit is not in the saved state.
[0105] The desktop microphone pairing module 250 is configured to complete a pairing connection operation with the desktop microphone according to the desktop pairing information.
[0106] In the embodiment of the present application, a pairing connection device 200 applied to a wireless microphone system is provided, comprising: a lavalier pairing information acquisition module 210, configured to read lavalier pairing information of a lavalier microphone address when a receiving end accesses a user terminal to enter an automatic pairing state; a lavalier flag bit judgment module 220, configured to judge whether a lavalier flag bit is in a saving state; a lavalier microphone pairing module 230, configured to complete a pairing connection operation with the lavalier microphone according to the lavalier pairing information if the lavalier flag bit is in the saving state; a tabletop pairing information acquisition module 240, configured to read tabletop pairing information of a tabletop microphone address if the lavalier flag bit is not in the saving state; and a tabletop microphone pairing module 250, configured to complete the pairing connection operation with the tabletop microphone according to the tabletop pairing information. Compared with the prior art, the pairing mechanism of the present application enables a user to quickly establish a connection with a microphone, thereby saving time and improving work efficiency. In addition, through management of the lavalier flag bit and the tabletop flag bit, the system can clearly track and record the states of paired and unpaired microphones, thereby ensuring the accuracy and stability of the pairing connection.
[0107] In some optional implementation manners of the embodiment of the present application, the lavalier microphone pairing module comprises:
[0108] a lavalier broadcast packet acquisition sub-module, configured to acquire a lavalier broadcast packet sent by the lavalier microphone;
[0109] a lavalier pairing information judgment sub-module, configured to judge whether the lavalier broadcast packet matches the lavalier pairing information;
[0110] a lavalier pairing information matching sub-module, configured to complete the pairing connection operation with the lavalier microphone according to the lavalier pairing information if the lavalier broadcast packet matches the lavalier pairing information;
[0111] a lavalier pairing information non-matching sub-module, configured to read the tabletop pairing information of the tabletop microphone address if the lavalier broadcast packet does not match the lavalier pairing information.
[0112] In some optional implementation manners of the embodiment of the present application, the tabletop microphone pairing module comprises:
[0113] a tabletop flag bit judgment sub-module, configured to judge whether a flag bit of the tabletop microphone address is in a saving state;
[0114] a tabletop microphone pairing sub-module, configured to scan a tabletop broadcast packet sent by the tabletop microphone in time division until the pairing connection operation with the tabletop microphone is completed according to the tabletop pairing information if the flag bit of the tabletop microphone address is in the saving state;
[0115] The broadcast packet searching submodule is configured to search the broadcast packet sent by the lanyard microphone or the desktop microphone according to an intelligent searching algorithm if the flag bit of the desktop microphone address is not in the saved state, until the pairing connection operation with the lanyard microphone or the desktop microphone is completed.
[0116] In some optional implementation of the embodiment of the present application, the broadcast packet searching submodule comprises:
[0117] The first broadcast packet searching unit is configured to acquire the broadcast packet sent by the lanyard microphone when the lanyard microphone is in the power-on state and the desktop microphone is in the power-off state, and complete the pairing connection operation according to the searched broadcast packet sent by the lanyard microphone.
[0118] The second broadcast packet searching unit is configured to acquire the broadcast packet sent by the desktop microphone when the desktop microphone is in the power-on state and the lanyard microphone is in the power-off state, and complete the pairing connection operation according to the searched broadcast packet sent by the desktop microphone.
[0119] The third broadcast packet searching unit is configured to search the first broadcast packet according to the intelligent searching algorithm when the desktop microphone and the lanyard microphone are both in the power-on state, and complete the pairing connection operation according to the searched first broadcast packet.
[0120] In some optional implementation of the embodiment of the present application, the third broadcast packet searching unit comprises:
[0121] The microphone type acquiring subunit is configured to receive the microphone connection type sent by the user terminal.
[0122] The third broadcast packet searching subunit is configured to search the broadcast packet corresponding to the microphone connection type according to the intelligent searching algorithm.
[0123] The microphone pairing subunit is configured to complete the pairing connection operation according to the broadcast packet corresponding to the microphone connection type.
[0124] In some optional implementation of the embodiment of the present application, the third broadcast packet searching unit further comprises:
[0125] The flag bit adjusting subunit is configured to clear the pairing information of the microphone address inconsistent with the microphone connection type stored by the receiving end, and adjust the flag bit of the microphone address inconsistent with the microphone connection type to the cleared state.
[0126] To solve the above technical problem, the embodiment of the present application further provides a computer device. For details, please refer to Figure 4 , Figure 4 The basic structure block diagram of the computer device of the embodiment of the present application is shown in FIG. 1.
[0127] The computer device 300 includes a memory 310, a processor 320, and a network interface 330 which are communicatively connected by a system bus. It should be noted that the computer device 300 is only shown with components 310-330, but it should be understood that not all of the shown components are required to be implemented, and more or fewer components can be alternatively implemented. Among them, those skilled in the art can understand that the computer device herein 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.
[0128] The computer device can be a desktop computer, a notebook computer, a palm computer, a cloud server, and the like. The computer device can interact with the user through a keyboard, a mouse, a remote controller, a touchpad, a voice control device, and the like.
[0129] The memory 310 includes at least one type of readable storage medium, including a flash memory, a hard disk, a multimedia card, a card-type memory (e.g., an SD or DX memory, etc.), a random access memory (RAM), a static random access memory (SRAM), a read-only memory (ROM), an electrically erasable programmable read-only memory (EEPROM), a programmable read-only memory (PROM), a magnetic memory, a magnetic disk, an optical disk, and the like. In some embodiments, the memory 310 can be an internal storage unit of the computer device 300, such as a hard disk or a memory of the computer device 300. In other embodiments, the memory 310 can also be an external storage device of the computer device 300, such as a plug-in hard disk, a smart media card (SMC), a secure digital (SD) card, a flash card, and the like. Of course, the memory 310 can also include both the internal storage unit and the external storage device of the computer device 300. In the embodiments of the present application, the memory 310 is generally used to store an operating system and various application software installed in the computer device 300, such as computer readable instructions of the pairing connection method applied to the wireless microphone system, and the like. In addition, the memory 310 can also be used to temporarily store various data that have been output or will be output.
[0130] The processor 320 can be a central processing unit (CPU), a controller, a microcontroller, a microprocessor, or other data processing chip in some embodiments. The processor 320 is generally used to control the overall operation of the computer device 300. In the embodiments of the present application, the processor 320 is used to run computer readable instructions stored in the memory 310 or process data, for example, run computer readable instructions of the pairing connection method applied to the wireless microphone system.
[0131] The network interface 330 can include a wireless network interface or a wired network interface, which is generally used to establish a communication connection between the computer device 300 and other electronic devices.
[0132] The computer device provided in the present application has a dynamic pairing mechanism, which enables the user to quickly establish a connection with the microphone, thereby saving time and improving work efficiency. In addition, through the management of the lapel flag bit and the desktop flag bit, the system can clearly track and record the paired and unpaired microphone states, thereby ensuring the accuracy and stability of the pairing connection.
[0133] The present application also provides another embodiment, that is, a computer readable storage medium storing computer readable instructions, which can be executed by at least one processor to enable the at least one processor to perform the steps of the pairing connection method applied to the wireless microphone system as described above.
[0134] The computer readable storage medium provided in the present application has a dynamic pairing mechanism, which enables the user to quickly establish a connection with the microphone, thereby saving time and improving work efficiency. In addition, through the management of the lapel flag bit and the desktop flag bit, the system can clearly track and record the paired and unpaired microphone states, thereby ensuring the accuracy and stability of the pairing connection.
[0135] From the above description of the embodiments, those skilled in the art can clearly understand that the above-mentioned embodiment method can be realized by means of software and the necessary general hardware platform, of course, it can also be realized by hardware, but in many cases the former is a better embodiment. Based on such understanding, the technical solutions of the present application can be embodied in the form of a software product, which is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk) and includes a plurality of instructions for enabling a terminal device (which can be a mobile phone, computer, server, air conditioner, or network device, etc.) to perform the methods described in the various embodiments of the present application.
[0136] Obviously, the above-described embodiments are only some embodiments but not all the embodiments of the present application, the preferred embodiments of the present application are shown in the drawings, but do not limit the patent scope of the present application. The present application can be implemented in many different forms, and conversely, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing specific embodiments, or make equivalent replacements to some technical features therein. Any equivalent structure made by using the content of the specification and drawings, directly or indirectly applied to other related technical fields, is also within the patent protection scope of the present application.
Claims
1. A pairing connection method for a wireless microphone system, characterized in that: The wireless microphone system includes a receiving end, N lavalier microphones, M desktop microphones, and a user terminal. The receiving end stores the lavalier microphone address, the desktop microphone address, and a lavalier flag bit and a desktop flag bit corresponding to the lavalier microphone address and the desktop microphone address, respectively. N and M are integers greater than zero. The method includes the following steps: When the receiving end is connected to the user terminal and enters the automatic pairing state, the lavalier pairing information of the lavalier microphone address is read; Determine whether the collar clip flag is in a saved state; If the collar clip flag is in a saved state, a pairing connection operation is completed with the collar clip microphone according to the collar clip pairing information; If the collar clip flag is not in a saved state, reading the desktop pairing information of the desktop microphone address; A pairing connection operation is completed with the desktop microphone according to the desktop pairing information.
2. The pairing connection method for a wireless microphone system according to claim 1, characterized in that: If the lavalier flag is in a saved state, the step of completing the pairing connection operation with the lavalier microphone according to the lavalier pairing information specifically includes the following steps: Obtaining a lavalier broadcast packet sent by the lavalier microphone; Determining whether the collar clip broadcast packet matches the collar clip pairing information; If the lavalier broadcast packet matches the lavalier pairing information, then the lavalier microphone completes the pairing connection operation according to the lavalier pairing information; If the tie clip broadcast packet does not match the tie clip pairing information, the desktop pairing information of the desktop microphone address is read.
3. The pairing connection method for a wireless microphone system according to claim 1, characterized in that: The step of completing the pairing connection operation with the desktop microphone according to the desktop pairing information specifically includes the following steps: Determine whether the flag bit of the desktop microphone address is in a saved state; If the flag bit of the desktop microphone address is in a saved state, the desktop broadcast packet sent by the desktop microphone is scanned in a time-sharing manner until a pairing connection operation is completed with the desktop microphone according to the desktop pairing information; If the flag bit of the desktop microphone address is not in a saved state, the broadcast packets sent by the lavalier microphone or the desktop microphone are searched in turn according to the intelligent search algorithm until the pairing connection operation is completed with the lavalier microphone or the desktop microphone.
4. The pairing connection method for a wireless microphone system according to claim 3, characterized in that: If the flag bit of the desktop microphone address is not in a saved state, searching for the broadcast packet sent by the lavalier microphone or the desktop microphone in turn according to the intelligent search algorithm until a pairing connection operation is completed with the lavalier microphone or the desktop microphone, specifically includes the following steps: When the lavalier microphone is in the power-on state and the desktop microphone is in the power-off state, obtaining a broadcast packet sent by the lavalier microphone, and completing a pairing connection operation according to searching for the broadcast packet sent by the lavalier microphone; When the desktop microphone is in a powered-on state and the lavalier microphone is in a powered-off state, obtaining a broadcast packet sent by the desktop microphone, and completing a pairing connection operation according to searching for the broadcast packet sent by the desktop microphone; When the desktop microphone and the collar microphone are both in the power-on state, the first broadcast packet is searched according to the intelligent search algorithm, and the pairing connection operation is completed according to the searched first broadcast packet.
5. The pairing connection method for a wireless microphone system according to claim 4, characterized in that: When the desktop microphone and the lavalier microphone are both powered on, searching for a first broadcast packet according to an intelligent search algorithm and completing a pairing and connection operation according to the searched first broadcast packet specifically include the following steps: Receive the microphone connection type sent by the user terminal; searching for a broadcast packet corresponding to the microphone connection type according to an intelligent search algorithm; The pairing connection operation is completed according to the broadcast packet corresponding to the microphone connection type.
6. The pairing connection method for a wireless microphone system according to claim 5, characterized in that: After the step of receiving the microphone connection type sent by the user terminal and before the step of searching for a broadcast packet corresponding to the microphone connection type according to the intelligent search algorithm, the method further includes the following steps: The pairing information of the microphone address that is inconsistent with the microphone connection type and stored at the receiving end is cleared, and the flag bit of the microphone address that is inconsistent with the microphone connection type is adjusted to a cleared state.
7. A pairing connection device for a wireless microphone system, characterized in that: The wireless microphone system includes a receiving end, N lavalier microphones, M desktop microphones, and a user terminal. The receiving end stores the address of the lavalier microphone, the address of the desktop microphone, and a lavalier flag bit and a desktop flag bit corresponding to the address of the lavalier microphone and the address of the desktop microphone, respectively. N and M are integers greater than zero. The device includes: A lavalier pairing information acquisition module, configured to read the lavalier pairing information of the lavalier microphone address when the receiving end is connected to the user terminal and enters an automatic pairing state; A collar clip flag position determination module, configured to determine whether the collar clip flag position is in a saved state; A lavalier microphone pairing module, configured to complete a pairing connection operation with the lavalier microphone according to the lavalier pairing information if the lavalier flag is in a saved state; A desktop pairing information acquisition module, configured to read the desktop pairing information of the desktop microphone address if the collar clip flag is not in a saved state; The desktop microphone pairing module is used to complete a pairing connection operation with the desktop microphone according to the desktop pairing information.
8. The pairing connection device for a wireless microphone system according to claim 7, characterized in that: The lavalier microphone pairing module includes: A lavalier broadcast packet acquisition submodule, configured to acquire the lavalier broadcast packet sent by the lavalier microphone; A tie clip pairing information determination submodule, configured to determine whether the tie clip broadcast packet matches the tie clip pairing information; A lavalier pairing information matching submodule, configured to complete a pairing connection operation with the lavalier microphone according to the lavalier pairing information if the lavalier broadcast packet matches the lavalier pairing information; The tie clip pairing information mismatch submodule is used to read the desktop pairing information of the desktop microphone address if the tie clip broadcast packet does not match the tie clip pairing information.
9. A computer device comprising a memory and a processor, characterized in that: The memory stores computer-readable instructions, and when the processor executes the computer-readable instructions, the steps of the pairing and connection method applied to a wireless microphone system according to any one of claims 1 to 6 are implemented.
10. A computer-readable storage medium, characterized in that The computer-readable storage medium stores computer-readable instructions, and when the computer-readable instructions are executed by a processor, the steps of the pairing and connection method applied to a wireless microphone system according to any one of claims 1 to 6 are implemented.