Microphone Kit Communication Method and Related Devices, Equipment, and Storage Medium
By introducing device identification and verification identification mechanisms into the microphone kit, the battery compartment detects the actual entry position of the transmitter, solving the information synchronization problem when the transmitter is not placed in the predetermined position, and improving the practicality and reliability of the microphone kit.
Patent Information
- Application Number
- CN202211219797.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-29
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2042-09-29
AI Technical Summary
In the prior art, when the transmitter of the microphone kit is not placed in the charging chamber in a predetermined position, the receiver and the mobile terminal cannot synchronize the transmitter information entering the chamber, resulting in a decrease in the practicality and reliability of the microphone kit.
By introducing a mechanism for device identification and verification of identification into the microphone suite, the battery compartment detects the actual entry position of the transmitter and synchronizes the interface display of the receiver and the mobile terminal according to these compartments to ensure accurate display of information.
Even if the transmitter is not placed in a predetermined position, the receiver and the mobile terminal can synchronize the corresponding information according to the actual inlet position of the transmitter, which improves the practicality and reliability of the microphone kit.
Smart Images

Figure CN115550383B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of information processing, and in particular, to a communication method for a microphone kit and related devices, equipment, and storage media. Background Art
[0002] With the development and rise of the mobile Internet and intelligent mobile terminals, the sound sources of audio entertainment devices of companies, families, and individuals are migrating from traditional wired microphones to mobile terminal devices that can be carried around. Users can control the controlled devices by voice, thus freeing their hands.
[0003] Currently, the audio acquisition device mainly performs command recognition processing on the audio data collected by the microphone to obtain control commands, and the wireless transceiver sends the audio data and control commands to the audio receiving device. When the transmitter in the microphone component is not placed at the predetermined position in the charging bin, the display interface of the receiver and the display interface of the mobile terminal connected to the receiver cannot synchronously display the corresponding information of the actually inserted transmitter. In view of this, how to synchronize the corresponding information in the microphone kit based on the actual insertion position of the transmitter and improve the practicability and reliability of the microphone kit has become an urgent problem to be solved. Summary of the Invention
[0004] The main technical problem to be solved by the present application is to provide a communication method for a microphone kit and related devices, equipment, and storage media, which can synchronize the corresponding information in the microphone kit based on the actual insertion position of the transmitter and improve the practicability and reliability of the microphone kit.
[0005] To solve the above technical problem, a first aspect of the present application provides a communication method for a microphone kit, including: in response to the device identifier reported to the battery bin when the transmitter is inserted into the bin, based on the actual insertion position of the transmitter detected by the battery bin and the device identifier, obtaining a verification identifier of the transmitter; wherein, the device identifier corresponds one-to-one to the default insertion position of the transmitter, and the verification identifier is used to verify the device identifier to confirm the actual insertion position; sending the identifier information of the transmitter to the receiver; wherein, the identifier information includes the device identifier and the verification identifier of the transmitter, and the identifier information is used for at least one of the following: enabling the receiver to synchronize its own first interface based on the identifier information, and the receiver sending the identifier information to the mobile terminal for the mobile terminal to synchronize its own second interface based on the identifier information, and both the first interface and the second interface are provided with default display positions that correspond one-to-one to the device identifiers of each transmitter.
[0006] To solve the above technical problems, a second aspect of the present application provides a microphone kit communication method, including: detecting whether the transmitter itself enters the battery compartment; in response to detecting that the transmitter has entered the battery compartment, reporting the device identifier of the transmitter to the battery compartment, so that the battery compartment obtains the verification identifier of the transmitter based on the device identifier and the actual insertion position of the transmitter detected by the battery compartment; wherein, the device identifier corresponds to the default insertion position of the transmitter one by one, and the verification identifier is used to verify the device identifier to confirm the actual insertion position, and the battery compartment sends the identifier information of the transmitter to the receiver, and the identifier information includes the device identifier and the verification identifier of the transmitter, and the identifier information is used for at least one of the following: enabling the receiver to synchronize its own first interface based on the identifier information, and the receiver sending the identifier information to the mobile terminal for the mobile terminal to synchronize its own second interface based on the identifier information, and both the first interface and the second interface are provided with default display positions corresponding to the device identifiers of the respective transmitters one by one.
[0007] To solve the above technical problems, a third aspect of the present application provides a microphone kit communication method, including: receiving the identifier information sent by the battery compartment; wherein, the identifier information includes the device identifier reported by the transmitter to the battery compartment when the transmitter is inserted and the verification identifier of the transmitter, the device identifier corresponds to the default insertion position of the transmitter one by one, the verification identifier is determined based on the actual insertion position of the transmitter detected by the battery compartment and the device identifier, and the verification identifier is used to verify the device identifier to confirm the actual insertion position; performing at least one of the following: synchronizing the first interface of the receiver itself based on the identifier information, and sending the identifier information to the mobile terminal for the mobile terminal to synchronize its own second interface based on the identifier information; wherein, both the first interface and the second interface are provided with default display positions corresponding to the device identifiers of the respective transmitters one by one.
[0008] To solve the above technical problems, a fourth aspect of the present application provides a microphone kit communication method, including: the transmitter reports the device identifier of the transmitter to the battery compartment in response to detecting that it enters the battery compartment itself; wherein, the device identifier corresponds to the default insertion position of the transmitter one by one; the battery compartment obtains the verification identifier of the transmitter based on the detected actual insertion position of the transmitter and the device identifier; wherein, the verification identifier is used to verify the device identifier to confirm the actual insertion position; the battery compartment sends the identifier information of the transmitter to the receiver; wherein, the identifier information includes the device identifier and the verification identifier of the transmitter; the receiver, in response to receiving the identifier information sent by the battery compartment, performs at least one of the following: synchronizing the first interface of the receiver itself based on the identifier information, and sending the identifier information to the mobile terminal for the mobile terminal to synchronize its own second interface based on the identifier information; wherein, both the first interface and the second interface are provided with default display positions corresponding to the device identifiers of the respective transmitters one by one.
[0009] To solve the above technical problems, a fifth aspect of the present application provides an electronic device, including a memory and a processor coupled to each other. Program instructions are stored in the memory, and the processor is configured to execute the program instructions to implement the microphone kit communication method in the first to fourth aspects above.
[0010] To solve the above technical problems, a sixth aspect of the present application provides a microphone kit, including: a plurality of transmitters, a receiver, and a battery compartment. The battery compartment is provided with a first compartment and a plurality of second compartments. The first compartment is used to carry the receiver, and the plurality of second compartments are used to carry different transmitters respectively.
[0011] To solve the above technical problems, a seventh aspect of the present application provides a computer-readable storage medium storing program instructions that can be run by a processor. The program instructions are used to implement the microphone kit communication method in the first to fourth aspects above.
[0012] In the above solution, in response to detecting that it enters the battery compartment, the transmitter reports the device identifier of the transmitter to the battery compartment according to the device identifier corresponding one-to-one to the default entry position of the transmitter in the battery compartment. Based on the detected actual entry position and device identifier of the transmitter, the battery compartment can obtain the verification identifier of the transmitter. The verification identifier is used to verify the device identifier to confirm the actual entry position. After obtaining the verification identifier of the transmitter, the battery compartment sends the identifier information of the transmitter to the receiver, where the identifier information includes the device identifier and verification identifier of the transmitter. In response to receiving the identifier information sent by the battery compartment, the receiver performs at least one of the following: synchronize the first interface of the receiver itself based on the identifier information, and send the identifier information to the mobile terminal for the mobile terminal to synchronize the second interface of the mobile terminal itself based on the identifier information. Both the first interface and the second interface are provided with default display positions corresponding one-to-one to the device identifiers of the respective transmitters. In the above manner, since the identifier information of the transmitter is obtained according to the actual position where the transmitter enters the battery compartment during the communication of the microphone kit, even in the scenario where the transmitter is not placed at the predetermined position in the charging compartment, the corresponding information in the microphone kit can be synchronized according to the actual entry position of the transmitter, and the device information corresponding one-to-one to the device identifier of the transmitter is displayed on the first interface and the second interface. Thus, even if the transmitter is not placed at the predetermined position, the receiver and the mobile terminal can synchronize and display the corresponding information shown on the interface according to the actual entry position of the transmitter, thereby improving the practicability and reliability of the microphone kit. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is a schematic flowchart of an embodiment of the battery compartment end of the microphone kit communication method of the present application;
[0014] Figure 2 is a schematic flowchart of an embodiment of the transmitter end of the microphone kit communication method of the present application;
[0015] Figure 3 It is a schematic flowchart of an embodiment of the receiver end of the communication method of the microphone kit of the present application;
[0016] Figure 4 It is a schematic flowchart of an embodiment of the communication method of the microphone kit of the present application;
[0017] Figure 5 It is a schematic framework diagram of an embodiment of the communication device of the microphone kit of the present application;
[0018] Figure 6 It is a schematic framework diagram of an embodiment of the communication device of the microphone kit of the present application;
[0019] Figure 7 It is a schematic framework diagram of an embodiment of the communication device of the microphone kit of the present application;
[0020] Figure 8 It is a schematic framework diagram of an embodiment of the electronic device of the present application;
[0021] Figure 9 It is a schematic framework diagram of an embodiment of the battery compartment of the present application;
[0022] Figure 10 It is a schematic framework diagram of an embodiment of the transmitter of the present application;
[0023] Figure 11 It is a schematic framework diagram of an embodiment of the receiver of the present application;
[0024] Figure 12 It is a schematic framework diagram of an embodiment of the microphone kit of the present application;
[0025] Figure 13 It is a schematic framework diagram of an embodiment of the computer-readable storage medium of the present application. Detailed implementation manners
[0026] The following will describe the solutions of the embodiments of the present application in detail with reference to the accompanying drawings of the specification.
[0027] In the following description, specific details such as specific system architectures, interfaces, and technologies are presented for the purpose of illustration rather than limitation, so as to thoroughly understand the present application.
[0028] The terms "system" and "network" are often used interchangeably in this document. The term " / or" in this document is merely a description of the relationship between associated objects, indicating that there can be three relationships. For example, A / or B can represent three situations: A exists alone, both A and B exist simultaneously, and B exists alone. In addition, the fragment " / " in this document generally indicates that the associated objects before and after are in an "or" relationship. Furthermore, "plurality" in this document means two or more than two.
[0029] Please refer to Figure 1 , Figure 1 is a schematic flowchart of an embodiment of the battery compartment end of the communication method of the microphone kit of the present application, and may include the following steps:
[0030] Step S11: In response to the device identifier reported by the transmitter to the battery compartment when it is inserted into the compartment, based on the actual insertion position of the transmitter detected by the battery compartment and the device identifier, obtain the verification identifier of the transmitter.
[0031] In the embodiments of the present disclosure, the device identifier corresponds to the default insertion position of the transmitter one by one, and the device identifier will be reported to the battery compartment when the transmitter is inserted into the compartment. According to the detected actual insertion position of the transmitter and the device identifier, a verification identifier that can be used to verify the device identifier is obtained to confirm the actual insertion position. Specifically, when the microphone kit is used for the first time, the transmitter is bound to the battery compartment where it is inserted for the first time. The binding method can be to electrically connect the second connector of the transmitter to the first connector of the battery compartment, and bind according to the device information of the transmitter inserted for the first time to obtain the corresponding default insertion position of the transmitter and obtain the device identifier. For example, taking the battery compartment having two compartments and the microphone kit including two transmitters as an example, during the first pairing, the transmitter TX1 and the transmitter TX2 are respectively placed in the first compartment on the left side and the second compartment on the right side of the battery compartment, and are bound according to the device information to obtain the device identifiers of the transmitters TX1 and TX2. The device identifier of the transmitter TX1 is deviceID1 (for example, identified by the number 1), and the device identifier of the transmitter TX2 is deviceID2 (for example, identified by the number 2). Through the above method, the battery compartment can obtain the actual insertion position and the device identifier of the transmitter, and obtain the verification identifier of the inserted transmitter according to the actual insertion position and the device identifier. The verification identifier can be used by the receiver to judge the insertion position of the transmitter. Even if the transmitter is not placed in the default insertion position, the receiver can accurately judge the information of the inserted transmitter according to the verification identifier, thereby improving the practicability and reliability of the microphone kit.
[0032] In an implementation scenario, the verification identifier is determined through data interaction between the battery compartment and the transmitter. The data interaction is for tracking and negotiating the amount of data sent each time to ensure the synchronization of data segment transmission and reception, determining when to revoke the connection after the data sending and receiving are completed according to the received data volume, and establishing a virtual connection. To provide reliable transmission, before sending new data, the sequence numbers of the data packets are arranged in a specific order, and acknowledgment messages after these packets are transmitted to the target machine are required. Through the above method, the verification identifier is determined through data interaction. When multiple transmitters are not placed according to the default loading position, the reliability of data transmission can be improved, and the obtained verification identifier of the transmitter is more accurate, thereby enhancing the practicability and reliability of the microphone kit.
[0033] In a specific implementation scenario, after the transmitter is loaded into the battery compartment, the battery compartment sends a first data packet containing a loading identifier representing the actual loading position of the transmitter to the transmitter. After receiving the first data packet, the transmitter packs the loading identifier in the first data packet and the device identifier of the transmitter into a second data packet and sends it to the battery compartment. After receiving the second data packet sent by the transmitter, the battery compartment can parse the second data packet to obtain the verification identifier of the transmitter. For example, the device identifier of transmitter TX1 is deviceID1, and the default loading position is the first position on the left side of the battery compartment. When the actual loading position of transmitter TX1 is the first position on the left side, the loading identifier is 1, and the battery compartment sends a first data packet containing "1" to transmitter TX1. Transmitter TX1 then sends a second data packet containing "1" and "deviceID1" to the battery compartment. The battery compartment can obtain the verification identifier of transmitter TX1 as mirror0 by parsing the second data packet. When the actual loading position of transmitter TX1 is the second position on the right side, the loading identifier is 2, and the battery compartment sends a first data packet containing "2" to transmitter TX1. Transmitter TX1 then sends a second data packet containing "2" and "deviceID1" to the battery compartment. The battery compartment can obtain the verification identifier of transmitter TX1 as mirror1 by parsing the second data packet.
[0034] In another implementation scenario, different from determining the verification identifier through data interaction as described above, the verification identifier can also be determined locally in the battery compartment after receiving the device identifier. Specifically, when the transmitter TX1 is inserted into the battery compartment, the battery compartment can obtain the insertion identifier of the transmitter TX1. When the actual insertion position of the transmitter TX1 is the first position on the left, the insertion identifier is 1. When the actual insertion position of the transmitter TX1 is the second position on the right, the insertion identifier is 2. The battery compartment can analyze whether the actual insertion position of the transmitter TX1 is consistent with the insertion identifier through the local processor, thereby obtaining the verification identifier of the transmitter TX1. When the actual insertion position of the transmitter TX1 is consistent with the insertion identifier, the verification identifier of the transmitter TX1 is mirror0. When the actual insertion position of the transmitter TX1 is inconsistent with the insertion identifier, the verification identifier of the transmitter TX1 is mirror1.
[0035] Step S12: Send the identifier information of the transmitter to the receiver.
[0036] In an embodiment of the present disclosure, the receiver in the microphone kit has a first interface by itself, and there are default display positions corresponding one by one to the device identifiers of each transmitter. For example, taking the battery compartment having two compartments and the microphone kit including two transmitters as an example, the transmitter TX1 is defaultly placed in the first compartment on the left, and the transmitter TX2 is defaultly placed in the second compartment on the right. The receiver has an LED display interface by itself, and the display interface can display the in-compartment status, power, configuration information, etc. of the corresponding transmitter. The corresponding information of the transmitter TX1 is defaultly displayed on the left side of the display interface, and the corresponding information of the transmitter TX2 is defaultly displayed on the right side of the display interface. The receiver can obtain the identifier information including the device identifier and the verification identifier of the transmitter, and synchronize the first interface based on the identifier information. When the transmitter TX1 is placed in the second compartment on the right, the first interface can synchronize its own display interface according to the identifier information of the transmitter TX1, and synchronize the corresponding information of the transmitter TX1 on the right side of the display interface. And the receiver can send the identifier information to the mobile terminal. The mobile terminal has a second interface by itself, and there are also default display positions corresponding one by one to the device identifiers of each transmitter. The second interface of the mobile terminal can display the corresponding information of the transmitter and the receiver. The corresponding information of the transmitter TX1 is defaultly displayed on the left side of the second interface, and the corresponding information of the transmitter TX2 is defaultly displayed on the right side of the second interface. The corresponding information of the receiver can be displayed in the middle. When the transmitter TX1 is placed in the second compartment on the right, the mobile terminal can synchronize its own second interface according to the identifier information, and display the corresponding information of the transmitter TX1 on the right side of the second interface. The specific synchronization process can refer to the following disclosed embodiments and will not be elaborated here for the time being. By the above method, since the identifier information of the transmitter is obtained according to the actual position where the transmitter enters the battery compartment during the communication of the microphone kit, even in the scenario where the transmitter is not placed at the predetermined position in the charging compartment, the corresponding information in the microphone kit can be synchronized according to the actual in-compartment position of the transmitter, and the device information corresponding one by one to the device identifier of the transmitter is displayed on the first interface and the second interface. Thus, even if the transmitter is not placed at the predetermined position, the receiver and the mobile terminal can synchronize the corresponding information displayed on the display interface according to the actual in-compartment position of the transmitter, thereby improving the practicability and reliability of the microphone kit.
[0037] Please refer to Figure 2 , Figure 2 FIG. is a schematic flowchart of an embodiment of the transmitter end of the communication method of the microphone kit of the present application, which may include the following steps:
[0038] Step S21: Detect whether the transmitter itself enters the battery compartment.
[0039] In the embodiments of the present disclosure, the transmitter is provided with a second connector, and the battery compartment is provided with a first connector. The first connector and the second connector can achieve end-to-end electrical connection for realizing the charging function of the transmitter and the data communication function with the battery compartment. When the second connector of the transmitter is electrically connected to the first connector of the battery compartment, the battery compartment can detect the entry of the transmitter.
[0040] Step S22: In response to detecting that the transmitter has entered the battery compartment, report the device identifier of the transmitter to the battery compartment, so that the battery compartment can obtain the verification identifier of the transmitter based on the device identifier and the actual entry position of the transmitter detected by the battery compartment.
[0041] In the embodiments of the present disclosure, when the microphone kit is used for the first time, the transmitter is bound to the battery compartment that it first enters. The binding method can be to electrically connect the second connector of the transmitter to the first connector of the battery compartment, and bind according to the device information of the transmitter that first enters the compartment, obtain the corresponding default entry position of the transmitter, and obtain the device identifier. For example, taking the battery compartment having two compartments and the microphone kit including two transmitters as an example, during the first pairing, the transmitter TX1 and the transmitter TX2 are respectively placed in the first compartment on the left side and the second compartment on the right side of the battery compartment, and are bound according to the device information to obtain the device identifiers of the transmitter TX1 and the transmitter TX2. The device identifier of the transmitter TX1 is deviceID1, and the device identifier of the transmitter TX2 is deviceID2. Through the above method, the battery compartment can obtain the actual entry position and the device identifier of the transmitter, and obtain the verification identifier of the transmitter that enters the compartment according to the actual entry position and the device identifier. The verification identifier can be used for the receiver to judge the entry position of the transmitter. Even if the transmitter is not placed in the default entry position, the receiver and the mobile terminal can accurately judge the information of the transmitter that enters the compartment according to the verification identifier, thereby improving the practicability and reliability of the microphone kit.
[0042] In an implementation scenario, the verification identifier is determined by data interaction between the battery compartment and the transmitter. The data interaction is to track and negotiate the amount of data sent each time to ensure the synchronization of the sending and receiving of data segments, determine when to cancel the connection after the sending and receiving of the data segment are confirmed according to the received amount of data, and establish a virtual connection. To provide reliable transmission, before sending new data, the sequence numbers of the data packets are arranged in a specific order, and the confirmation messages after these packets are sent to the target machine are required. Through the above method, the verification identifier is determined by data interaction. When multiple transmitters are not placed according to the default entry position, the reliability of data transmission can be improved, and the obtained verification identifier of the transmitter is more accurate, thereby improving the practicability and reliability of the microphone kit.
[0043] In a specific implementation scenario, after the transmitter is placed in the battery compartment, the battery compartment sends a first data packet containing a placement identifier representing the actual placement position of the transmitter to the transmitter. After receiving the first data packet, the transmitter packs the placement identifier in the first data packet and its device identifier into a second data packet and sends it to the battery compartment. After receiving the second data packet sent by the transmitter, the battery compartment can parse the second data packet to obtain the verification identifier of the transmitter. For example, the battery compartment has two positions, which are bound according to device information. The device identifier of transmitter TX1 is deviceID1, and the default placement position is the first position on the left side of the battery compartment. When the actual placement position of transmitter TX1 is the first position on the left side, the placement identifier is 1. The battery compartment sends a first data packet containing "1" to transmitter TX1. Transmitter TX1 then sends a second data packet containing "1" and "deviceID1" to the battery compartment. The battery compartment can obtain the verification identifier of transmitter TX1 as mirror0 (e.g., identified by the number 0) by parsing the second data packet. When the actual placement position of transmitter TX1 is the second position on the right side, the placement identifier is 2. The battery compartment sends a first data packet containing "2" to transmitter TX1. Transmitter TX1 then sends a second data packet containing "2" and "deviceID1" to the battery compartment. The battery compartment can obtain the verification identifier of transmitter TX1 as mirror1 (e.g., identified by the number 1) by parsing the second data packet.
[0044] In another implementation scenario, different from determining the verification identifier through data interaction as described above, the verification identifier can also be determined locally in the battery compartment after receiving the device identifier. Specifically, when transmitter TX1 is placed in the battery compartment, the battery compartment can obtain the placement identifier of transmitter TX1. When the actual placement position of transmitter TX1 is the first position on the left side, the placement identifier is 1. When the actual placement position of transmitter TX1 is the second position on the right side, the placement identifier is 2. The battery compartment can analyze whether the actual placement position of transmitter TX1 is consistent with the placement identifier through a local processor, thereby obtaining the verification identifier of transmitter TX1. When the actual placement position of transmitter TX1 is consistent with the placement identifier, the verification identifier of transmitter TX1 is mirror0. When the actual placement position of transmitter TX1 is inconsistent with the placement identifier, the verification identifier of transmitter TX1 is mirror1.
[0045] Please refer to Figure 3 , Figure 3 which is a schematic flowchart of an embodiment of the receiver end of the communication method of the microphone kit of the present application, and may include the following steps:
[0046] Step S31: Receive the identification information sent by the battery compartment.
[0047] In an embodiment of the present disclosure, the identification information received by the receiver includes the device identification reported by the transmitter to the battery compartment when the transmitter is placed in the compartment and the verification identification of the transmitter. For example, the device identification of the transmitter TX1 is deviceID1, and the default placement position in the compartment is the first position on the left side of the battery compartment. When the actual placement position of the transmitter TX1 is the first position on the left side, the placement identification is 1. At this time, the verification identification of the transmitter TX1 is mirror0. The identification information received by the receiver from the battery compartment includes the device identification deviceID1 and the verification identification mirror0.
[0048] Step S32: Perform at least one of the following: synchronize the first interface of the receiver itself based on the identification information, and send the identification information to the mobile terminal for the mobile terminal to synchronize its own second interface based on the identification information.
[0049] In the embodiments of the present disclosure, the receiver in the microphone kit itself has a first interface, which is provided with default display positions corresponding one by one to the device identifiers of each transmitter. For example, taking the battery compartment having two compartments and the microphone kit including two transmitters as an example, transmitter TX1 is default placed in the first compartment on the left, and transmitter TX2 is default placed in the second compartment on the right. The receiver itself has an LED display interface, and the display interface can display the in-compartment status, power, configuration information, etc. of the corresponding transmitter. The corresponding information of transmitter TX1 is default displayed on the left side of the display interface, and the corresponding information of transmitter TX2 is default displayed on the right side of the display interface. The receiver can obtain the identification information including the device identifier and the verification identifier of the transmitter, and synchronize the first interface based on the identification information. When transmitter TX1 is placed in the second compartment on the right, the first interface can synchronize its own display interface according to the identification information of transmitter TX1, and synchronize the corresponding information of transmitter TX1 on the right side of the display interface. And the receiver can send the identification information to the mobile terminal. The mobile terminal itself has a second interface, which is also provided with default display positions corresponding one by one to the device identifiers of each transmitter. The second interface of the mobile terminal can display the corresponding information of the transmitter and the receiver. The corresponding information of transmitter TX1 is default displayed on the left side of the second interface, and the corresponding information of transmitter TX2 is default displayed on the right side of the second interface. The corresponding information of the receiver can be displayed in the middle. When transmitter TX1 is placed in the second compartment on the right, the mobile terminal can synchronize its own second interface according to the identification information, and display the corresponding information of transmitter TX1 on the right side of the second interface. The specific synchronization process can refer to the following disclosed embodiments and will not be elaborated here. Through the above method, since during the communication of the microphone kit, the identification information of the transmitter is obtained according to the actual position of the transmitter entering the battery compartment, even in the scenario where the transmitter is not placed in the predetermined position in the charging compartment, the corresponding information in the microphone kit can be synchronized according to the actual in-compartment position of the transmitter, and the device information corresponding one by one to the device identifier of the transmitter is displayed on the first interface and the second interface. Thus, even if the transmitter is not placed in the predetermined position, the receiver and the mobile terminal can synchronize the corresponding information displayed on the display interface according to the actual in-compartment position of the transmitter, thereby improving the practicability and reliability of the microphone kit. It should be noted that when the microphone kit performs the function of interface synchronization, it can select to synchronize the first interface at the transmitter end and / or the second interface of the mobile terminal according to the actual application scenario, which is not limited here.
[0050] In an implementation scenario, the receiver includes at least a first processor and a second processor. The first processor can be used to synchronize a first interface based on identification information, and the second processor can be used to interact with the mobile terminal for the identification information, so that the mobile terminal synchronizes a second interface based on the identification information. The receiver synchronizes the first interface by interacting with the battery compartment data, and the receiver synchronizes the second interface by interacting with the mobile terminal data. For the specific synchronization process, reference can be made to the above-mentioned disclosed embodiments. For the sake of brevity, it will not be described here.
[0051] In another implementation scenario, the receiver may further include a third processor, and the third processor can be used to process the audio information received at the transmitter end. Specifically, the volume of the audio information collected by the transmitter can be adjusted through the receiver, or operations such as mixing and noise reduction can be performed on the collected audio information. At this time, the corresponding functions need to be implemented through the third processor in the receiver to improve the practicability of the microphone kit.
[0052] In an implementation scenario, the receiver can parse the identification information to obtain the device identification and the verification identification. Based on the verification identification, it selects to maintain or update the default display position corresponding to the device identification. Specifically, when the verification identification indicates that the transmitter insertion position is the same as the default insertion position, it selects to maintain the default display position corresponding to the device identification. When the verification identification indicates that the transmitter insertion position is different from the default insertion position, it selects to update the default display position corresponding to the device identification. For example, the default insertion position of the transmitter TX1 is the first bin on the left, and the corresponding information is defaultly displayed on the left side of the first interface of the transmitter. When the actual insertion position of the transmitter TX1 is the same as the insertion identification, the verification identification of the transmitter TX1 is mirror0. When the actual insertion position of the transmitter TX1 is different from the insertion identification, the verification identification of the transmitter TX1 is mirror1. When the receiver obtains the verification identification as mirror0, it selects to maintain the display position on the left side of the transmitter TX1. When the receiver obtains the verification identification as mirror1, it selects to update the display position of the transmitter TX1 and display the corresponding information of the transmitter TX1 on the right side of the first interface. The receiver determines the target display position corresponding to the device identification in the first interface, and a in-bin mark can be displayed at the target display position in the first interface. Specifically, the first display interface of the receiver can be on a display screen with a suitable size, and there are different icons in the display screen for marking the power, usage status, etc. of the transmitter. Through the above method, the receiver can select to update or maintain the default display position corresponding to the device identification according to the received identification information. The user can understand the status of the corresponding transmitter according to the relevant information displayed on the first interface, and there will be no situation of accidentally operating other uninserted transmitters through the receiver, which can improve the practicability and reliability of the microphone kit.
[0053] In an implementation scenario, the relevant information of the microphone kit can be connected to the corresponding mobile terminal. Specifically, it can be a smart phone, a computer, a tablet computer, etc. There is also a second interface in the mobile terminal that can display the relevant information of the microphone kit. The receiver can obtain a control data packet by packing based on the identification information and send the control data packet to the mobile terminal. The mobile terminal can obtain the device identification and the verification identification by parsing the control data packet, and based on the verification identification, select to maintain or update the default display position corresponding to the device identification, and determine the target display position corresponding to the device identification in the second interface. Specifically, when the verification identification indicates that the transmitter's in-warehouse position is consistent with the default in-warehouse position, select to maintain the default display position corresponding to the device identification; when the verification identification indicates that the transmitter's in-warehouse position is inconsistent with the default in-warehouse position, select to update the default display position corresponding to the device identification. Display the in-warehouse mark at the target display position in the second interface. Through the above method, the transmitter sends a control data packet to the mobile terminal for the mobile terminal to synchronize its own second interface based on the identification information. The user can understand the status of the corresponding transmitter according to the relevant information displayed on the second interface, and there will be no misoperation of the other transmitters that have not been put into the warehouse, which can improve the practicability and reliability of the microphone kit.
[0054] In an implementation scenario, the receiver is also provided with control elements corresponding one-to-one to the device identifications of each transmitter for the user to configure each transmitter through the control elements. Specifically, the control elements can be control knobs, mechanical buttons, etc., which can be used to adjust the volume of the audio information collected by the transmitter or change functions such as the working state of the transmitter. After the receiver receives the identification information sent by the battery compartment, the target transmitter is the transmitter corresponding to the device identification in the identification information, and both the configuration instruction and the remote control instruction are triggered by the user through the control element. It can respond to obtaining a configuration instruction for the target transmitter and update the configuration information corresponding to the device identification of the target transmitter in the receiver based on the configuration instruction; and / or respond to obtaining a remote control instruction for the target transmitter, determine the actual in-warehouse position of the target transmitter based on the device identification and the verification identification of the target transmitter, and send the remote control instruction and the actual in-warehouse position to the battery compartment so that the battery compartment can transmit the remote control instruction to the target transmitter located at the actual in-warehouse position.
[0055] Please refer to Figure 4 , Figure 4 is a schematic flowchart of an embodiment of the communication method of the microphone kit of the present application. Specifically, it can include the following steps:
[0056] Step S41: The transmitter reports the device identification of the transmitter to the battery compartment in response to detecting that it enters the battery compartment.
[0057] Specifically, reference can be made to the foregoing disclosed embodiments, which will not be elaborated herein.
[0058] Step S42: Based on the detected actual insertion position of the transmitter and the device identifier, the battery compartment obtains the verification identifier of the transmitter.
[0059] For details, reference may be made to the foregoing disclosed embodiments, which will not be elaborated herein.
[0060] Step S43: The battery compartment sends the identifier information of the transmitter to the receiver.
[0061] For details, reference may be made to the foregoing disclosed embodiments, which will not be elaborated herein.
[0062] Step S44: In response to receiving the identifier information sent by the battery compartment, the receiver performs at least one of the following: synchronize its own first interface based on the identifier information, and send the identifier information to the mobile terminal for the mobile terminal to synchronize its own second interface based on the identifier information.
[0063] For details, reference may be made to the foregoing disclosed embodiments, which will not be elaborated herein.
[0064] In the above solution, in response to detecting that it enters the battery compartment, the transmitter reports its device identifier to the battery compartment according to the device identifier corresponding one-to-one to the default insertion position of the transmitter. Based on the detected actual insertion position of the transmitter and the device identifier, the battery compartment can obtain the verification identifier of the transmitter, and the verification identifier is used to verify the device identifier to confirm the actual insertion position. After obtaining the verification identifier of the transmitter, the battery compartment sends the identifier information of the transmitter to the receiver, where the identifier information includes the device identifier and the verification identifier of the transmitter. In response to receiving the identifier information sent by the battery compartment, the receiver performs at least one of the following: synchronize its own first interface based on the identifier information, and send the identifier information to the mobile terminal for the mobile terminal to synchronize its own second interface based on the identifier information, and both the first interface and the second interface are provided with default display positions corresponding one-to-one to the device identifiers of the respective transmitters. In this way, since during the communication of the microphone kit, the identifier information of the transmitter is obtained according to the actual position where the transmitter enters the battery compartment, even in the scenario where the transmitter is not placed at the predetermined position in the charging compartment, the corresponding information in the microphone kit can be synchronized according to the actual insertion position of the transmitter, and the device information corresponding one-to-one to the device identifier of the transmitter is displayed on the first interface and the second interface. Therefore, even if the transmitter is not placed at the predetermined position, the receiver and the mobile terminal can synchronize and display the corresponding information shown on the interface according to the actual insertion position of the transmitter, thereby improving the practicability and reliability of the microphone kit.
[0065] Please refer to Figure 5 , Figure 5It is a schematic framework diagram of an embodiment of the microphone kit communication device 50 of the present application. The microphone kit communication device 50 includes: an identification acquisition module 410 and an information sending module 420. The identification acquisition module 410 is configured to, in response to the device identification reported to the battery compartment when the transmitter is inserted into the battery compartment, obtain the verification identification of the transmitter based on the actual insertion position of the transmitter detected by the battery compartment and the device identification. The information sending module 420 is configured to send the identification information of the transmitter to the receiver.
[0066] In the above solution, during the communication of the microphone kit, the identification information of the transmitter is obtained according to the actual position where the transmitter enters the battery compartment. Therefore, even in the scenario where the transmitter is not placed at the predetermined position in the charging compartment, the corresponding information in the microphone kit can be synchronized according to the actual insertion position of the transmitter, and the device information corresponding to the device identification of the transmitter is displayed on the first interface and the second interface. Thus, even if the transmitter is not placed at the predetermined position, the receiver and the mobile terminal can synchronously display the corresponding information shown on the interface according to the actual insertion position of the transmitter, thereby improving the practicability and reliability of the microphone kit.
[0067] In some disclosed embodiments, the identification acquisition module 410 includes a data packet sending module (not shown) and a data packet parsing module (not shown). The data packet sending module sends a first data packet to the transmitter based on the received device identification. The first data packet contains a warehousing identification representing the actual insertion position. The data packet parsing module receives the second data packet sent by the transmitter and parses the second data packet to obtain the verification identification. The second data packet contains at least the verification identification, and the verification identification is obtained by the transmitter based on the warehousing identification and the device identification.
[0068] Please refer to Figure 6 , Figure 6 It is a schematic framework diagram of an embodiment of the microphone kit communication device 60 of the present application. The microphone kit communication device 60 includes: a warehousing detection module 430 and an identification reporting module 440. The warehousing detection module 430 is configured to detect whether the transmitter itself enters the battery compartment. The identification reporting module 440 is configured to, in response to detecting that the transmitter has entered the battery compartment, report the device identification of the transmitter to the battery compartment, so that the battery compartment obtains the verification identification of the transmitter based on the device identification and the actual insertion position of the transmitter detected by the battery compartment.
[0069] In the above solution, since the identification information of the transmitter is obtained according to the actual position of the transmitter entering the battery compartment during the communication of the microphone kit, even in the scenario where the transmitter is not placed in the charging compartment at the predetermined position, the corresponding information in the microphone kit can be synchronized according to the actual position of the transmitter entering the compartment, and the device information corresponding one-to-one to the device identification of the transmitter is displayed on the first interface and the second interface. Therefore, even if the transmitter is not placed at the predetermined position, the receiver and the mobile terminal can synchronously display the corresponding information shown on the interface according to the actual position of the transmitter entering the compartment, thereby improving the practicability and reliability of the microphone kit.
[0070] In some disclosed embodiments, the identification reporting module 440 includes a data receiving module (not shown), a data parsing module (not shown), and a data sending module (not shown). The data receiving module receives a first data packet sent by the battery compartment based on the device identification. The first data includes a compartment entry identification representing the actual position of entering the compartment. The data parsing module parses the first data packet to obtain the compartment entry identification, and analyzes and obtains a verification identification based on the compartment entry identification and the device identification. The data sending module sends a second data packet to the battery compartment. The second data packet contains at least the verification identification, and the battery compartment parses the second data packet to obtain the verification identification.
[0071] Please refer to Figure 7 , Figure 7 FIG. is a schematic framework diagram of an embodiment of the microphone kit communication device 70 of the present application. The microphone kit communication device 70 includes an information receiving module 450 and an interface synchronization module 460. The information receiving module 450 is configured to receive the identification information sent by the battery compartment. The interface synchronization module 460 is configured to perform at least one of the following: synchronize the first interface of the receiver itself based on the identification information, and send the identification information to the mobile terminal for the mobile terminal to synchronize the second interface of the mobile terminal itself based on the identification information.
[0072] In the above solution, since the identification information of the transmitter is obtained according to the actual position of the transmitter entering the battery compartment during the communication of the microphone kit, even in the scenario where the transmitter is not placed in the charging compartment at the predetermined position, the corresponding information in the microphone kit can be synchronized according to the actual position of the transmitter entering the compartment, and the device information corresponding one-to-one to the device identification of the transmitter is displayed on the first interface and the second interface. Therefore, even if the transmitter is not placed at the predetermined position, the receiver and the mobile terminal can synchronously display the corresponding information shown on the interface according to the actual position of the transmitter entering the compartment, thereby improving the practicability and reliability of the microphone kit.
[0073] In some disclosed embodiments, the interface synchronization module 460 includes a first interface module (not shown) and a second interface module (not shown). The first interface module further includes an identification resolution module (not shown), a determination module (not shown), and a display module (not shown). The identification resolution module resolves identification information to obtain a device identification and a verification identification. The determination module, based on the verification identification, selects to maintain or update the default display position corresponding to the device identification, and determines the target display position corresponding to the device identification in the first interface. The display module displays the in-bin mark at the target display position in the first interface. The second interface module includes a data packet acquisition module (not shown) and a data packet transmission module (not shown). The data packet acquisition module packs data based on the identification information to obtain a control data packet. The data packet transmission module sends the control data packet to the mobile terminal. Wherein, the mobile terminal resolves the control data packet to obtain the device identification and the verification identification, and based on the verification identification, selects to maintain or update the default display position corresponding to the device identification, determines the target display position corresponding to the device identification in the second interface, and displays the in-bin mark at the target display position in the second interface.
[0074] In some disclosed embodiments, the microphone kit communication device 70 further includes a configuration update module (not shown) and an instruction transmission module (module). The configuration update module, in response to obtaining a configuration instruction for a target transmitter, updates the configuration information corresponding to the device identification of the target transmitter in the receiver based on the configuration instruction. The instruction transmission module, in response to obtaining a remote control instruction for the target transmitter, determines the actual bin entry position of the target transmitter based on the device identification and the verification identification of the target transmitter, and sends the remote control instruction and the actual bin entry position to the battery bin, so that the battery bin transmits the remote control instruction to the target transmitter located at the actual bin entry position.
[0075] Please refer to Figure 8 , Figure 8 which is a schematic framework diagram of an embodiment of the electronic device 40 of the present application. The electronic device 40 includes a memory 240 and a processor 230 that are coupled to each other. Program instructions are stored in the memory 240, and the processor 230 is configured to execute the program instructions to implement the steps in any of the above embodiments of the microphone kit communication method. Specifically, the electronic device 40 may include: a battery bin 20, a transmitter 10, a receiver 30, etc., and specific details can be referred to the following related descriptions.
[0076] Please refer to Figure 9 , Figure 9It is a schematic diagram of the framework of an embodiment of the battery compartment 20 of the present application. The battery compartment 20 includes: a housing 210, a first connector 220, a memory 240, and a processor 230. The first connector 220 and the memory 240 are respectively coupled to the processor 230. The housing 210 is recessed to form a first compartment D1 and a plurality of second compartments D2. The first compartment D1 is used to carry the receiver 30, and the plurality of second compartments D2 are used to carry different transmitters 10. A first connector 220 is provided under the first compartment D1 and the plurality of second compartments D2, for contacting the transmitter 10 and the receiver 30 to achieve electrical connection with the battery compartment 20 when put into the compartment. The memory 240 and the processor 230 are arranged in the accommodation space formed by the housing 210. Program instructions are stored in the memory 240, and the processor 230 is used to execute the program instructions to implement any of the above microphone kit communication methods. It should be noted that the number of the second compartments D2 included in the battery compartment 20 may not be limited to Figure 12 the two shown, and can also be set to three, four, etc., which is not limited herein.
[0077] Please refer to Figure 10 , Figure 10 It is a schematic diagram of the framework of an embodiment of the transmitter 10 of the present application. The transmitter 10 includes: a second connector 110, a microphone 120, a memory 240, and a processor 230. The second connector 110, the microphone 120, and the memory 240 are respectively coupled to the processor 230. The second connector 110 is used to contact the first connector 220 of the battery compartment 20 to achieve electrical connection with the battery compartment 20 when put into the compartment. Program instructions are stored in the memory 240, and the processor 230 is used to execute the program instructions to implement any of the above microphone kit communication methods.
[0078] Please refer to Figure 11 , Figure 11 It is a schematic diagram of the framework of an embodiment of the receiver 30 of the present application. The receiver 30 includes: a third connector 310, a display screen 320, a memory 240, and a processor 230. The third connector 310, the display screen 320, and the memory 240 are respectively coupled to the processor 230. The third connector 310 is used to contact the first connector 220 of the battery compartment 20 to achieve electrical connection with the battery compartment 20 when put into the compartment. The display screen 320 is used to display a first interface, and the first interface is provided with default display positions corresponding one by one to the device identifiers of the respective transmitters 10. Program instructions are stored in the memory 240, and the processor 230 is used to execute the program instructions to implement any of the above microphone kit communication methods. It should be noted that the processor 230 may include a first processor, a second processor, and a third processor. For the specific functions of the above three processors 230, reference can be made to the relevant descriptions in the foregoing disclosed embodiments, which will not be elaborated herein.
[0079] Please refer to Figure 12 ,Figure 12 It is a schematic diagram of the framework of an embodiment of the microphone kit 80 of the present application. The microphone kit 80 includes: a plurality of transmitters 10, a receiver 30, and a battery compartment 20. The battery compartment 20 is provided with a first compartment D1 and a plurality of second compartments D2. The first compartment D1 is used to carry the receiver 30, and the plurality of second compartments D2 are used to carry different transmitters 10 respectively. It should be noted that the battery compartment 20 can be used to execute the steps in any of the above battery compartment end method embodiments, the transmitter 10 can be used to execute the steps in any of the above transmitter end method embodiments, and the receiver 30 can be used to execute the steps in any of the above receiver end method embodiments. For details, reference can be made to the foregoing microphone kit communication method embodiments, which will not be elaborated here.
[0080] Specifically, the processor 230 can also be referred to as a CPU (Central Processing Unit). The processor 230 may be an integrated circuit chip with signal processing capabilities. The processor 230 can also be a general-purpose processor 230, a digital signal processor 230 (Digital Signal Processor, DSP), an application specific integrated circuit (Application Specific Integrated Circuit, ASIC), a field programmable gate array (Field-Programmable Gate Array, FPGA), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components. The general-purpose processor 230 can be a microprocessor 230 or the processor 230 can also be any conventional processor 230, etc. In addition, the processor 230 can be implemented jointly by integrated circuit chips.
[0081] In the above solution, since during the communication of the microphone kit 80, the verification identifier of the transmitter 10 is obtained according to the actual position of the transmitter 10 entering the battery compartment 20, even in the scenario where the transmitter 10 is not placed in the charging compartment at the predetermined position, the corresponding information in the microphone kit 80 can be synchronized according to the actual position of the transmitter 10 entering the compartment, and the device information corresponding to the device identifier of the transmitter 10 is displayed on the first interface and the second interface. Therefore, when the user remotely controls the functions related to the transmitter 10, even if the transmitter 10 is not placed at the predetermined position, the receiver 30 and the mobile terminal can synchronously display the corresponding information shown on the display interface according to the actual position of the transmitter 10 entering the compartment, thereby improving the practicability and reliability of the microphone kit 80.
[0082] Please refer to Figure 13 , Figure 13It is a schematic framework diagram of an embodiment of the computer-readable storage medium 90 of the present application. The computer-readable storage medium 90 stores program instructions 91 that can be run by the processor 230, and the program instructions 91 are used to implement the steps in any of the above-described embodiments of the microphone kit communication method.
[0083] In the above solution, during the communication of the microphone kit 80, the verification identifier of the transmitter 10 is obtained according to the actual position where the transmitter 10 enters the battery compartment 20. Therefore, even in a scenario where the transmitter 10 is not placed at the predetermined position in the charging compartment, the corresponding information in the microphone kit 80 can be synchronized according to the actual position of the transmitter 10 entering the compartment, and the device information corresponding one-to-one to the device identifier of the transmitter 10 is displayed on the first interface and the second interface. Thus, when the user remotely controls the functions related to the transmitter 10, even if the transmitter 10 is not placed at the predetermined position, the receiver 30 and the mobile terminal can synchronously display the corresponding information shown on the display interface according to the actual position of the transmitter 10 entering the compartment, thereby improving the practicability and reliability of the microphone kit 80.
[0084] In some embodiments, the functions or modules included in the device provided by the embodiments of the present disclosure can be used to execute the methods described in the above method embodiments. The specific implementation can refer to the description of the above method embodiments. For the sake of brevity, it will not be repeated here.
[0085] The above descriptions of the various embodiments tend to emphasize the differences between the various embodiments. Their similarities or similarities can be referred to each other. For the sake of brevity, they will not be repeated in this article.
[0086] In several embodiments provided by the present application, it should be understood that the disclosed methods and devices can be implemented in other ways. For example, the device implementation manners described above are only illustrative. For example, the division of modules or units is only a logical function division. In actual implementation, there may be other division methods. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the displayed or discussed couplings or direct couplings or communication connections to each other can be through some interfaces. The indirect couplings or communication connections of the devices or units can be in electrical, mechanical or other forms.
[0087] The units described as separate components may or may not be physically separated. The components shown as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.
[0088] In addition, in each embodiment of the present application, each functional unit may be integrated into one processing unit, or each unit may exist physically alone, or two or more units may be integrated into one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of a software functional unit.
[0089] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it may be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the present application, in essence, or the part that contributes to the prior art, or all or part of the technical solution, may be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) or a processor to execute all or part of the steps of the methods in various embodiments of the present application. The foregoing storage medium includes: various media such as USB flash drives, mobile hard disks, read-only memories (ROMs), random access memories (RAMs), magnetic disks, or optical discs that can store program codes.
Claims
1. A communication method for a microphone kit, characterized in that, Including: In response to the device identifier reported to the battery compartment when the transmitter is placed in the battery compartment, based on the actual placement position of the transmitter detected by the battery compartment and the device identifier, obtain the verification identifier of the transmitter; wherein, the device identifier corresponds one-to-one to the default placement position of the transmitter, and the verification identifier is used to verify the device identifier to confirm the actual placement position. Send the identifier information of the transmitter to the receiver; wherein, the identifier information includes the device identifier and the verification identifier of the transmitter, and the identifier information is used for at least one of the following: enabling the receiver to synchronize its own first interface based on the identifier information, and enabling the receiver to send the identifier information to the mobile terminal for the mobile terminal to synchronize its own second interface based on the identifier information, and the first interface and the second interface are both provided with default display positions corresponding one-to-one to the device identifiers of the respective transmitters.
2. The method according to claim 1, wherein The obtaining of the verification identifier of the transmitter based on the actual placement position of the transmitter detected by the battery compartment and the device identifier includes: Based on the received device identifier, send a first data packet to the transmitter; wherein, the first data packet contains a placement identifier representing the actual placement position. Receive the second data packet sent by the transmitter, and parse the second data packet to obtain the verification identifier; wherein, the second data packet contains at least the verification identifier, and the verification identifier is obtained by the transmitter based on the placement identifier and the device identifier.
3. A communication method for a microphone kit, characterized in that Including: Detect whether the transmitter itself enters the battery compartment. In response to detecting that the transmitter has entered the battery compartment, report the device identifier of the transmitter to the battery compartment, so that the battery compartment obtains the verification identifier of the transmitter based on the device identifier and the actual placement position of the transmitter detected by the battery compartment; wherein, the device identifier corresponds one-to-one to the default placement position of the transmitter, the verification identifier is used to verify the device identifier to confirm the actual placement position, the battery compartment sends the identifier information of the transmitter to the receiver, and the identifier information includes the device identifier and the verification identifier of the transmitter, and the identifier information is used for at least one of the following: enabling the receiver to synchronize its own first interface based on the identifier information, and enabling the receiver to send the identifier information to the mobile terminal for the mobile terminal to synchronize its own second interface based on the identifier information, and the first interface and the second interface are both provided with default display positions corresponding one-to-one to the device identifiers of the respective transmitters.
4. The method according to claim 3, wherein The steps for obtaining the verification identifier include: Receive the first data packet sent by the battery compartment based on the device identifier; wherein, the first data packet contains a placement identifier representing the actual placement position. Parse the first data packet to obtain the placement identifier, and analyze to obtain the verification identifier based on the placement identifier and the device identifier. Send a second data packet to the battery compartment; wherein, the second data packet contains at least the verification identifier, and the battery compartment analyzes the second data packet to obtain the verification identifier.
5. A communication method for a microphone kit, characterized in that, It includes: Receive the identification information sent by the battery compartment; wherein, the identification information includes the device identifier reported by the transmitter to the battery compartment when the transmitter enters the compartment and the verification identifier of the transmitter, the device identifier corresponds to the default entry position of the transmitter one by one, the verification identifier is determined based on the actual entry position of the transmitter detected by the battery compartment and the device identifier, and the verification identifier is used to verify the device identifier to confirm the actual entry position; Execute at least one of the following: Based on the identification information, synchronize the first interface of the receiver itself, and send the identification information to the mobile terminal for the mobile terminal to synchronize the second interface of the mobile terminal itself based on the identification information; wherein, the default display positions corresponding to the device identifiers of each transmitter are respectively provided on the first interface and the second interface.
6. The method according to claim 5, wherein The receiver at least includes a first processor and a second processor. The first processor is used to synchronize the first interface based on the identification information, and the second processor is used to interact with the mobile terminal for the identification information so that the mobile terminal synchronizes the second interface based on the identification information.
7. The method according to claim 5 or 6, characterized in that, The synchronizing the first interface of the receiver itself based on the identification information includes: Analyze the identification information to obtain the device identifier and the verification identifier; Based on the verification identifier, select to maintain or update the default display position corresponding to the device identifier, and determine the target display position corresponding to the device identifier in the first interface; Display the in-compartment mark at the target display position in the first interface.
8. The method according to claim 5 or 6, characterized in that, The sending the identification information to the mobile terminal for the mobile terminal to synchronize the second interface of the mobile terminal itself based on the identification information includes: Pack based on the identification information to obtain a control data packet; Send the control data packet to the mobile terminal; wherein, the mobile terminal analyzes the control data packet to obtain the device identifier and the verification identifier, and based on the verification identifier, selects to maintain or update the default display position corresponding to the device identifier, determines the target display position corresponding to the device identifier in the second interface, and displays the in-compartment mark at the target display position in the second interface.
9. The method according to claim 5 or 6, characterized in that, The receiver is also provided with manipulation elements corresponding to the device identifiers of each transmitter for the user to configure each transmitter through the manipulation elements. After receiving the identification information sent by the battery compartment, the method further includes at least one of the following: In response to obtaining a configuration instruction for a target transmitter, update the configuration information corresponding to the device identifier of the target transmitter in the receiver based on the configuration instruction; In response to obtaining a remote control instruction for a target transmitter, determine the actual storage position of the target transmitter based on the device identifier and verification identifier of the target transmitter, and send the remote control instruction and the actual storage position to the battery compartment, so that the battery compartment transmits the remote control instruction to the target transmitter located at the actual storage position; wherein, the target transmitter is the transmitter corresponding to the device identifier in the identification information, and both the configuration instruction and the remote control instruction are triggered by the user through the control element.
10. A communication method for a microphone kit, characterized in that, Comprising: The transmitter reports the device identifier of the transmitter to the battery compartment in response to detecting that it enters the battery compartment; wherein, the device identifier corresponds one-to-one to the default storage position of the transmitter; The battery compartment obtains the verification identifier of the transmitter based on the detected actual storage position and the device identifier of the transmitter; wherein, the verification identifier is used to verify the device identifier to confirm the actual storage position; The battery compartment sends the identification information of the transmitter to the receiver; wherein, the identification information includes the device identifier and verification identifier of the transmitter; In response to receiving the identification information sent by the battery compartment, the receiver performs at least one of the following: synchronize the first interface of the receiver itself based on the identification information, and send the identification information to the mobile terminal for the mobile terminal to synchronize the second interface of the mobile terminal itself based on the identification information; wherein, the first interface and the second interface are both provided with default display positions respectively corresponding one-to-one to the device identifiers of the respective transmitters.
11. An electronic device, characterized in that, Comprising a memory and a processor coupled to each other, the memory is used to store a computer program, and the processor is used to execute the computer program to implement the microphone kit communication method according to any one of claims 1 to 10.
12. A microphone kit, characterized in that, Comprising a plurality of transmitters, a receiver and a battery compartment, and the battery compartment is provided with a first compartment and a plurality of second compartments, the first compartment is used to carry the receiver, and the plurality of second compartments are used to carry different transmitters respectively; wherein, the battery compartment is used to execute the microphone kit communication method according to any one of claims 1 to 2, the transmitter is used to execute the microphone kit communication method according to any one of claims 3 to 4, and the receiver is used to execute the microphone kit communication method according to any one of claims 5 to 9.
13. A computer-readable storage medium, characterized in that, Stored with program instructions that can be run by a processor, the program instructions are used to implement the microphone kit communication method according to any one of claims 1 to 10.
Citation Information
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