A method and system for controlling the use of a microphone
Through the digital numbering and horizontal sliding operation of the touch screen on the surface of the microphone, the problem of inconvenient switching of the existing microphone sound effects is solved, convenient sound effect control and song matching are achieved, and smooth operation of the performer is ensured.
Patent Information
- Application Number
- CN202510261023.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2045-03-06
AI Technical Summary
The existing microphones need to rely on external controllers or computer software when switching sound effects, and the operation is not flexible and convenient enough, and the existing touch screen control scheme is complex, which affects the performance of performers.
The speakers are set to broadcast the upcoming sound effect name to be used to support the song sound effect library matching.
It realizes sound effect switching without browsing complex menus, ensures the overall performance and smooth operation of the performer, and supports automatic switching of multiple sound effects and song matching.
Smart Images

Figure CN119767185B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of microphone control, and particularly to a method and system for controlling the use of a microphone. Background Art
[0002] In current audio recording, live performances, conference speeches, and entertainment activities, as a key device for sound input, the diversity of functions and convenience of operation of microphones are increasingly valued by users. Traditional microphones usually only have basic sound pickup functions. With the progress of technology, modern microphones have begun to integrate various sound effects, such as echo, reverb, noise reduction, voice conversion, etc., to meet the sound processing requirements in different scenarios. However, when in use, if users want to switch sound effects, they need to rely on external controllers or computer software, which limits the flexibility and convenience of use. Although some high-end microphones have begun to be equipped with touch screen interfaces to simplify operations, the existing touch screen control solutions have the problem of complex operations. Users need to stare at the touch screen to perform sound effect switching operations, and the operations are not smooth, which will affect the overall performance of performers. Therefore, a method and system for controlling the use of a microphone are needed to solve the above problems. Summary of the Invention
[0003] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a method and system for controlling the use of a microphone to solve the problems in the above background art.
[0004] The present invention is implemented as follows. A method for controlling the use of a microphone, the method comprising the following steps:
[0005] Receiving a microphone sound effect number editing instruction to obtain sound effect number information, such that each microphone sound effect corresponds to a digital number, and the microphone provides a variety of microphone sound effects;
[0006] Receiving a microphone sound effect sequence editing instruction to determine a microphone sound effect sequence, in which several microphone sound effects are arranged in order, and determining the first arranged microphone sound effect as the current sound effect;
[0007] Receiving sound effect control information input by the user through the touch screen on the surface of the microphone, and determining the upcoming sound effect according to the sound effect control information. The sound effect control information is digital information or a horizontal slide, and the user can accurately input the sound effect control information with a single finger without looking at the touch screen;
[0008] Receiving a sound effect confirmation command input by the user, and switching the current sound effect to the upcoming sound effect.
[0009] As a further solution of the present invention: the step of receiving a microphone sound effect number editing instruction to obtain sound effect number information specifically includes:
[0010] Receive a microphone pairing instruction to pair the microphone hardware with the control software;
[0011] Receive a microphone sound effect number editing instruction through the control software, determine a digital number for each microphone sound effect, and obtain sound effect number information;
[0012] Receive a user number through the control software and determine a user number for the sound effect number information.
[0013] As a further solution of the present invention: The step of receiving a microphone sound effect sequence editing instruction and determining a microphone sound effect sequence specifically includes:
[0014] Receive a microphone sound effect sequence editing instruction through the control software and display all microphone sound effects;
[0015] Receive a plurality of microphone sound effect selection instructions, and determine a microphone sound effect sequence according to the input time sequence of the microphone sound effect selection instructions;
[0016] Receive a user number through the control software and determine a user number for the microphone sound effect sequence.
[0017] As a further solution of the present invention: The previous steps of receiving sound effect control information input by the user through the touch screen on the surface of the microphone include:
[0018] Receive user number information input by the user through the touch screen on the surface of the microphone, and retrieve the corresponding sound effect number information and microphone sound effect sequence according to the user number information;
[0019] Receive a formal use instruction input by the user through the touch screen on the surface of the microphone, so that the touch screen enters the full-screen sound effect control receiving mode.
[0020] As a further solution of the present invention: The step of determining the sound effect to be used according to the sound effect control information specifically includes:
[0021] When the sound effect control information is digital information, determine the microphone sound effect corresponding to the digital information according to the sound effect number information, and the microphone sound effect is the sound effect to be used;
[0022] When the sound effect control information is a horizontal swipe, determine the next sound effect according to the microphone sound effect sequence and the current sound effect, and the next sound effect is the sound effect to be used;
[0023] Broadcast the sound effect name of the sound effect to be used through the speaker on the microphone. The sound range of the speaker broadcast is less than 30 cm. The microphone has a cardioid directivity function, and the speaker is set outside the pickup range of the cardioid directivity.
[0024] As a further solution of the present invention: The method further includes controlling the microphone sound effect through a song, and the specific steps include:
[0025] Receiving a song audio file input by a user, determining a microphone sound effect for each track in the song audio file, and a song can use multiple microphone sound effects to build a song sound effect library;
[0026] After the microphone is enabled, collecting background music, matching the background music with the song sound effect library, outputting a matching microphone sound effect, and controlling the microphone to use the microphone sound effect.
[0027] Another object of the present invention is to provide a microphone usage control system, and the system includes:
[0028] A sound effect number editing module, which is used to receive a microphone sound effect number editing instruction to obtain sound effect number information, so that each microphone sound effect corresponds to a digital number, and the microphone provides multiple microphone sound effects;
[0029] A sound effect sequence determination module, which is used to receive a microphone sound effect order editing instruction to determine a microphone sound effect sequence. In the microphone sound effect sequence, several microphone sound effects are arranged in order, and the first arranged microphone sound effect is determined as the current sound effect;
[0030] A sound effect control information module, which is used to receive sound effect control information input by a user through a touch screen on the surface of the microphone, and determine the sound effect to be used according to the sound effect control information. The sound effect control information is digital information or a horizontal slide, and the user can accurately input the sound effect control information with a single finger without looking at the touch screen;
[0031] A sound effect switching determination module, which is used to receive a sound effect confirmation command input by a user and switch the current sound effect to the sound effect to be used.
[0032] As a further solution of the present invention: The sound effect number editing module includes:
[0033] A hardware-software pairing unit, which is used to receive a microphone pairing instruction to pair the microphone hardware with the control software;
[0034] A sound effect number information unit, which is used to receive a microphone sound effect number editing instruction through the control software to determine a digital number for each microphone sound effect to obtain sound effect number information;
[0035] A user number determination unit, which is used to receive a user number through the control software to determine a user number for the sound effect number information.
[0036] As a further solution of the present invention: The sound effect control information module includes:
[0037] The first sound effect determination unit is configured to, when the sound effect control information is digital information, determine the microphone sound effect corresponding to the digital information according to the sound effect number information, and the microphone sound effect is the sound effect to be used.
[0038] The second sound effect determination unit is configured to, when the sound effect control information is a horizontal slide, determine the next sound effect according to the microphone sound effect sequence and the current sound effect, and the next sound effect is the sound effect to be used.
[0039] The speaker broadcast prompt unit is configured to broadcast the sound effect name of the sound effect to be used through the speaker on the microphone, the sound range of the speaker broadcast is less than 30 cm, the microphone has a cardioid directivity function, and the speaker is arranged outside the pickup range of the cardioid directivity.
[0040] As a further solution of the present invention: the system further includes a song sound effect control module, and the song sound effect control module specifically includes:
[0041] The track sound effect determination unit is configured to receive the song audio file input by the user, determine a microphone sound effect for each track in the song audio file, and a song can use multiple microphone sound effects to build a song sound effect library.
[0042] The song sound effect matching unit is configured to, when the microphone is enabled, collect the background music, match the background music with the song sound effect library, output the matched microphone sound effect, and control the microphone to use the microphone sound effect.
[0043] Compared with the prior art, the beneficial effects of the present invention are:
[0044] The present invention makes each microphone sound effect correspond to a digital number, and can determine the microphone sound effect sequence, and several microphone sound effects are arranged in sequence in the microphone sound effect sequence; when in use, the sound effect control information input by the user is received through the touch screen on the surface of the microphone, and the sound effect to be used is determined according to the sound effect control information. The sound effect control information is digital information or a horizontal slide. The user can accurately input the sound effect control information with a single finger without looking at the touch screen, without browsing complex menus or interfaces, the operation is smooth, and there is no need to stare at the touch screen when selecting the sound effect, ensuring the overall performance of the performer. BRIEF DESCRIPTION OF THE DRAWINGS
[0045] Figure 1 It is a flowchart of a method for controlling the use of a microphone.
[0046] Figure 2 It is a flowchart for determining the sound effect number information in a method for controlling the use of a microphone.
[0047] Figure 3It is a flowchart for determining a microphone sound effect sequence in a method for controlling the use of a microphone.
[0048] Figure 4 It is a flowchart for inputting user number information in a method for controlling the use of a microphone.
[0049] Figure 5 It is a flowchart for determining the sound effect to be used in a method for controlling the use of a microphone.
[0050] Figure 6 It is a flowchart for controlling the microphone sound effect through a song in a method for controlling the use of a microphone.
[0051] Figure 7 It is a schematic structural diagram of a microphone use control system. Detailed implementation manners
[0052] In order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0053] The following describes in detail the specific implementation of the present invention with reference to specific embodiments.
[0054] As Figure 1 shown, an embodiment of the present invention provides a method for controlling the use of a microphone, and the method includes the following steps:
[0055] S100, receiving a microphone sound effect number editing instruction to obtain sound effect number information, so that each microphone sound effect corresponds to a digital number, and the microphone provides a variety of microphone sound effects;
[0056] S200, receiving a microphone sound effect order editing instruction to determine a microphone sound effect sequence, where multiple microphone sound effects are arranged in sequence in the microphone sound effect sequence, and the first arranged microphone sound effect is determined as the current sound effect;
[0057] S300, receiving sound effect control information input by a user through a touch screen on the surface of the microphone, and determining the sound effect to be used according to the sound effect control information, where the sound effect control information is digital information or a horizontal slide, and the user can accurately input the sound effect control information with a single finger without looking at the touch screen;
[0058] S400, receiving a sound effect confirmation command input by the user, and switching the current sound effect to the sound effect to be used.
[0059] It should be noted that existing microphones have begun to integrate various sound effects to meet the sound processing requirements in different scenarios. However, when in use, if the user wants to switch the sound effects, they need to rely on an external controller or computer software, which limits the flexibility and convenience of use. Although some high-end microphones have started to be equipped with a touch screen interface to simplify the operation, the existing touch screen control solutions have the problem of complex operations. The user needs to stare at the touch screen to perform the sound effect switching operation, the operation is not smooth enough, and it will affect the overall performance of the performer. The embodiments of the present invention aim to solve the above problems.
[0060] In the embodiments of the present invention, first, the microphone needs to be customized through the microphone software. Specifically, the user needs to input a microphone sound effect number editing instruction to obtain sound effect number information. The sound effect number information includes several microphone sound effects, and each microphone sound effect corresponds to a digital number. The digital numbers are relatively simple, such as 1, 2, 3, 4, etc.; in addition, the user can also input a microphone sound effect sequence editing instruction in the software interface to determine a microphone sound effect sequence. Several microphone sound effects are arranged in sequence in the microphone sound effect sequence, and the microphone sound effect determined to be the first in the arrangement is the current sound effect. Then the user can use the microphone. A touch screen is provided on the microphone. The touch screen is concave or convex on the surface of the microphone. In this way, the user can feel the size and specific position of the touch screen area through the finger. During the use process, the user can input sound effect control information through the touch screen on the surface of the microphone, and determine the sound effect to be used according to the sound effect control information. The sound effect control information is digital information or a horizontal swipe. The digital information is one of 1, 2, 3, 4, etc., indicating the sound effect corresponding to the selected number; the horizontal swipe means swiping the finger horizontally for a long time, indicating selecting the next sound effect in the microphone sound effect sequence. The sound effect control information is relatively simple. In this way, the user can accurately and quickly input the sound effect control information with a single finger without looking at the touch screen, without having to browse a complex menu or interface, the operation is smooth, and there is no need to stare at the touch screen when selecting the sound effect, ensuring the overall performance of the performer. Preferably, a sound effect confirmation button is also provided on the microphone. When the user presses the sound effect confirmation button, it is equivalent to inputting a sound effect confirmation command, and immediately switches the current sound effect to the sound effect to be used. In this way, the accuracy of the sound effect switching time is ensured.
[0061] As Figure 2 shown, as a preferred embodiment of the present invention, the step of receiving the microphone sound effect number editing instruction and obtaining the sound effect number information specifically includes:
[0062] S101, receiving a microphone pairing instruction to pair the microphone hardware with the control software;
[0063] S102, receive a microphone sound effect number editing instruction through the control software, determine a digital number for each microphone sound effect, and obtain sound effect number information;
[0064] S103, receive a user number through the control software, and determine a user number for the sound effect number information.
[0065] In the embodiment of the present invention, before formal use, it is necessary to install software supporting the microphone on a computer or a mobile phone, and then obtain a microphone pairing instruction by turning on Bluetooth, so that the microphone hardware is paired with the control software. In this way, the microphone can be set through the software. For example, the user can input a microphone sound effect number editing instruction through the control software, determine a digital number for each microphone sound effect, and obtain sound effect number information. In addition, a user number can be bound to each sound effect number information. In this way, a microphone can be adaptively used by multiple users.
[0066] As Figure 3 shown, as a preferred embodiment of the present invention, the step of receiving a microphone sound effect sequence editing instruction and determining a microphone sound effect sequence specifically includes:
[0067] S201, receive a microphone sound effect sequence editing instruction through the control software, and display all microphone sound effects;
[0068] S202, receive several microphone sound effect selection instructions, and determine a microphone sound effect sequence according to the input time sequence of the microphone sound effect selection instructions;
[0069] S203, receive a user number through the control software, and determine a user number for the microphone sound effect sequence.
[0070] In the embodiment of the present invention, when it is necessary to determine a microphone sound effect sequence, the user inputs a microphone sound effect sequence editing instruction through the control software. At this time, all microphone sound effects will be displayed on the software interface. When the user clicks on the displayed microphone sound effect, it is equivalent to inputting a microphone sound effect selection instruction. Finally, a microphone sound effect sequence will be determined according to the input time sequence of the microphone sound effect selection instructions. It is easy to understand that the first clicked microphone sound effect will be arranged in the first place. In addition, a user number can be bound to each microphone sound effect sequence, and the user number can be input through the control software. In this way, a microphone can be adaptively used by multiple users.
[0071] As Figure 4 shown, as a preferred embodiment of the present invention, the previous step of receiving sound effect control information input by the user through the touch screen on the surface of the microphone includes:
[0072] S301. Receive the user ID information input by the user through the touch screen on the surface of the microphone, and retrieve the corresponding sound effect number information and the microphone sound effect sequence according to the user ID information.
[0073] S302. Receive the official use instruction input by the user through the touch screen on the surface of the microphone, so that the touch screen enters the full-screen sound effect control receiving mode.
[0074] In the embodiment of the present invention, before officially using the microphone, the user can input the user ID information through the touch screen on the surface of the microphone, and then the corresponding sound effect number information and the microphone sound effect sequence will be automatically retrieved according to the user ID information. Then, input the official use instruction through the touch screen on the surface of the microphone. At this time, the touch screen will enter the full-screen sound effect control receiving mode. The touch screen only has the function of receiving sound effect control information at this time, avoiding accidental touch. Preferably, the user long presses the sound effect confirmation button, for example, long presses for more than 8 seconds, to cancel the full-screen sound effect control receiving mode.
[0075] As Figure 5 shown, as a preferred embodiment of the present invention, the step of determining the sound effect to be used according to the sound effect control information specifically includes:
[0076] S303. When the sound effect control information is digital information, determine the microphone sound effect corresponding to the digital information according to the sound effect number information, and the microphone sound effect is the sound effect to be used.
[0077] S304. When the sound effect control information is a horizontal slide, determine the next sound effect according to the microphone sound effect sequence and the current sound effect, and the next sound effect is the sound effect to be used.
[0078] S305. Broadcast the sound effect name of the sound effect to be used through the speaker on the microphone. The sound range of the speaker broadcast is less than 30 cm. The microphone has a cardioid directivity function, and the speaker is set outside the pickup range of the cardioid directivity.
[0079] In the embodiment of the present invention, when the sound effect control information is digital information, the microphone sound effect corresponding to the digital information will be automatically determined according to the sound effect number information, and this microphone sound effect is the sound effect to be used. When the sound effect control information is a horizontal slide, determine the next sound effect in the arrangement according to the microphone sound effect sequence and the current sound effect, and this next sound effect is the sound effect to be used. In addition, a small speaker is also installed on the microphone, and the sound effect name of the sound effect to be used can be broadcast through the speaker on the microphone to prompt the user, and the use effect is better. Preferably, the sound range of the speaker broadcast is less than 30 cm, and only the user can hear it. The microphone has a cardioid directivity function, and the speaker is set outside the pickup range of the cardioid directivity. In this way, the prompt sound broadcast by the speaker will not be collected by the microphone.
[0080] As Figure 6 shown, as a preferred embodiment of the present invention, the method further includes controlling the microphone sound effect through a song, and the specific steps include:
[0081] S501, receiving a song audio file input by a user, determining a microphone sound effect for each track in the song audio file. A song can use multiple microphone sound effects, and a song sound effect library is constructed;
[0082] S502, when the microphone is enabled, collecting background music, matching the background music with the song sound effect library, outputting a matching microphone sound effect, and controlling the microphone to use the microphone sound effect.
[0083] In the embodiment of the present invention, the song can also be matched with the microphone sound effect through software. Specifically, the user inputs a song audio file in the software interface and determines a microphone sound effect for each track in the song audio file. For example, the track from 0 to 33 s of the song is determined as the first microphone sound effect, the track from 33 to 102 s is determined as the fourth microphone sound effect, and the track from 102 to 186 s is determined as the sixth microphone sound effect. A song can use multiple microphone sound effects. Based on this, a song sound effect library can be constructed. The constructed song sound effect library contains many song audio files, and each song audio file corresponds to a microphone sound effect. When the microphone is enabled, background music will be collected, the background music will be matched with the song sound effect library, the corresponding song and the track position where it is located will be determined, and a matching microphone sound effect will be output to control the microphone to use the microphone sound effect, thus realizing the automatic switching of multiple microphone sound effects.
[0084] As Figure 7 shown, the embodiment of the present invention also provides a microphone usage control system, and the system includes:
[0085] A sound effect number editing module 100, configured to receive a microphone sound effect number editing instruction to obtain sound effect number information, so that each microphone sound effect corresponds to a digital number, and the microphone provides multiple microphone sound effects;
[0086] A sound effect sequence determining module 200, configured to receive a microphone sound effect order editing instruction to determine a microphone sound effect sequence. In the microphone sound effect sequence, several microphone sound effects are arranged in order, and the microphone sound effect arranged first is determined as the current sound effect;
[0087] A sound effect control information module 300, configured to receive sound effect control information input by a user through a touch screen on the surface of the microphone, and determine the sound effect to be used according to the sound effect control information. The sound effect control information is digital information or a horizontal slide, and the user can accurately input the sound effect control information with a single finger without looking at the touch screen;
[0088] The sound effect switching confirmation module 400 is configured to receive a sound effect confirmation command input by a user, and switch the current sound effect to the upcoming sound effect.
[0089] As a preferred embodiment of the present invention, the sound effect number editing module 100 includes:
[0090] A hardware-software pairing unit, configured to receive a microphone pairing instruction, so that the microphone hardware is paired with the control software;
[0091] A sound effect number information unit, configured to receive a microphone sound effect number editing instruction through the control software, determine a digital number for each microphone sound effect, and obtain sound effect number information;
[0092] A user number determination unit, configured to receive a user number through the control software, and determine a user number for the sound effect number information.
[0093] As a preferred embodiment of the present invention, the sound effect control information module 300 includes:
[0094] A first sound effect determination unit, configured to, when the sound effect control information is digital information, determine the microphone sound effect corresponding to the digital information according to the sound effect number information, and the microphone sound effect is the upcoming sound effect;
[0095] A second sound effect determination unit, configured to, when the sound effect control information is a horizontal slide, determine the next sound effect according to the microphone sound effect sequence and the current sound effect, and the next sound effect is the upcoming sound effect;
[0096] A speaker broadcast prompt unit, configured to broadcast the sound effect name of the upcoming sound effect through a speaker on the microphone, the sound range of the speaker broadcast is less than 30 cm, the microphone has a cardioid directivity function, and the speaker is arranged outside the pickup range of the cardioid directivity.
[0097] As a preferred embodiment of the present invention, the system further includes a song sound effect control module, and the song sound effect control module specifically includes:
[0098] A track sound effect determination unit, configured to receive a song audio file input by a user, determine a microphone sound effect for each track in the song audio file, and a song can use multiple microphone sound effects to build a song sound effect library;
[0099] A song sound effect matching unit, configured to, when the microphone is enabled, collect background music, match the background music with the song sound effect library, output the matched microphone sound effect, and control the microphone to use the microphone sound effect.
[0100] The above only describes the preferred embodiments of the present invention in detail and is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
[0101] It should be understood that although the steps in the flowcharts of the embodiments of the present invention are shown in sequence according to the arrows, these steps do not necessarily have to be executed in the order indicated by the arrows. Unless otherwise clearly stated in this article, there is no strict order restriction for the execution of these steps, and these steps can be executed in other orders. Moreover, at least a part of the steps in each embodiment may include multiple sub-steps or multiple stages. These sub-steps or stages do not necessarily have to be executed at the same time, but can be executed at different times. The execution order of these sub-steps or stages does not necessarily have to be sequential, but can be executed alternately or in turn with at least a part of other steps or sub-steps or stages of other steps.
[0102] Those of ordinary skill in the art can understand that all or part of the processes of implementing the methods in the above embodiments can be completed by instructing relevant hardware through a computer program. The program can be stored in a non-volatile computer-readable storage medium. When the program is executed, it can include the processes of the embodiments of the above methods. Among them, any reference to a memory, storage, database, or other medium used in the embodiments provided in the present application can include non-volatile and / or volatile memories. Non-volatile memories can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memories can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), Rambus direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and Rambus dynamic RAM (RDRAM), etc.
[0103] Other embodiments of the present disclosure will be readily contemplated by those skilled in the art after considering the disclosure in the specification and the embodiments. This application is intended to cover any variations, uses, or adaptations of the present disclosure that follow the general principles of the present disclosure and include known common general knowledge or conventional technical means in the technical field not disclosed in the present disclosure. The specification and the embodiments are only regarded as exemplary, and the true scope and spirit of the present disclosure are pointed out by the claims.
Claims
1. A method for controlling the use of a microphone, characterized in that, The method includes the following steps: Receive a microphone sound effect number editing instruction to obtain sound effect number information, such that each microphone sound effect corresponds to a digital number, and the microphone provides multiple microphone sound effects; Receive a microphone sound effect order editing instruction to determine a microphone sound effect sequence. In the microphone sound effect sequence, several microphone sound effects are arranged in order, and the first arranged microphone sound effect is determined as the current sound effect; Receive sound effect control information input by the user through the touch screen on the surface of the microphone, and determine the sound effect to be used according to the sound effect control information. The sound effect control information is digital information or a horizontal swipe, and the user can accurately input the sound effect control information with a single finger without looking at the touch screen; announce the sound effect name of the sound effect to be used through the speaker on the microphone. The sound range of the speaker announcement is less than 30 cm. The microphone has a cardioid directivity function, and the speaker is set outside the pickup range of the cardioid directivity; Receive a sound effect confirmation command input by the user, and switch the current sound effect to the sound effect to be used; The method further includes controlling the microphone sound effect through a song. The specific steps include: receiving a song audio file input by the user, determining a microphone sound effect for each track in the song audio file. A song can use multiple microphone sound effects to construct a song sound effect library; when the microphone is enabled, collect background music, match the background music with the song sound effect library, output the matched microphone sound effect, and control the microphone to use the microphone sound effect.
2. The microphone usage control method according to claim 1, wherein The step of receiving a microphone sound effect number editing instruction to obtain sound effect number information specifically includes: Receive a microphone pairing instruction to pair the microphone hardware with the control software; Receive a microphone sound effect number editing instruction through the control software, determine a digital number for each microphone sound effect, and obtain sound effect number information; Receive a user number through the control software, and determine a user number for the sound effect number information.
3. The microphone usage control method according to claim 2, wherein The step of receiving a microphone sound effect order editing instruction to determine a microphone sound effect sequence specifically includes: Receive a microphone sound effect order editing instruction through the control software to display all microphone sound effects; Receive several microphone sound effect selection instructions, and determine a microphone sound effect sequence according to the input time sequence of the microphone sound effect selection instructions; Receive a user number through the control software, and determine a user number for the microphone sound effect sequence.
4. The microphone usage control method according to claim 3, wherein, The previous steps of receiving sound effect control information input by the user through the touch screen on the surface of the microphone include: Receive user number information input by the user through the touch screen on the surface of the microphone, and retrieve the corresponding sound effect number information and microphone sound effect sequence according to the user number information; Receive a formal use instruction input by the user through the touch screen on the surface of the microphone, such that the touch screen enters the full-screen sound effect control receiving mode.
5. The microphone usage control method according to claim 1, characterized in that The step of determining the sound effect to be used according to the sound effect control information specifically includes: When the sound effect control information is digital information, determine the microphone sound effect corresponding to the digital information according to the sound effect number information, and the microphone sound effect is the sound effect to be used; When the sound effect control information is a horizontal swipe, determine the next sound effect based on the microphone sound effect sequence and the current sound effect, and the next sound effect is the sound effect to be used immediately.
6. A microphone usage control system, characterized in that, The system includes: A sound effect number editing module, configured to receive a microphone sound effect number editing instruction to obtain sound effect number information, such that each microphone sound effect corresponds to a digital number, and the microphone provides multiple microphone sound effects; A sound effect sequence determination module, configured to receive a microphone sound effect order editing instruction to determine a microphone sound effect sequence, where several microphone sound effects are arranged in sequence in the microphone sound effect sequence, and determine the first arranged microphone sound effect as the current sound effect; A sound effect control information module, configured to receive the sound effect control information input by the user through a touch screen on the surface of the microphone, determine the sound effect to be used immediately according to the sound effect control information, where the sound effect control information is digital information or a horizontal swipe, and the user can accurately input the sound effect control information using a single finger without looking at the touch screen; broadcast the sound effect name of the sound effect to be used immediately through a speaker on the microphone, where the sound range of the speaker broadcast is less than 30 cm, the microphone has a cardioid directivity function, and the speaker is arranged outside the pickup range of the cardioid directivity; A sound effect switching determination module, configured to receive the sound effect confirmation command input by the user and switch the current sound effect to the sound effect to be used immediately; The system further includes a song sound effect control module, and the song sound effect control module specifically includes: a track sound effect determination unit, configured to receive the song audio file input by the user and determine a microphone sound effect for each track in the song audio file, where a song can use multiple microphone sound effects to construct a song sound effect library; a song sound effect matching unit, configured to collect the background music when the microphone is enabled, match the background music with the song sound effect library, output the matched microphone sound effect, and control the microphone to use the microphone sound effect.
7. The microphone usage control system according to claim 6, characterized in that, The sound effect number editing module includes: A hardware-software pairing unit, configured to receive a microphone pairing instruction to pair the microphone hardware with the control software; A sound effect number information unit, configured to receive a microphone sound effect number editing instruction through the control software to determine a digital number for each microphone sound effect and obtain the sound effect number information; A user number determination unit, configured to receive the user number through the control software and determine a user number for the sound effect number information.
8. The microphone usage control system according to claim 6, wherein The sound effect control information module includes: A first sound effect determination unit, configured to, when the sound effect control information is digital information, determine the microphone sound effect corresponding to the digital information according to the sound effect number information, and the microphone sound effect is the sound effect to be used immediately; A second sound effect determination unit, configured to, when the sound effect control information is a horizontal swipe, determine the next sound effect based on the microphone sound effect sequence and the current sound effect, and the next sound effect is the sound effect to be used immediately.
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