CN112687268A - Voice emotion interaction control method and system - Google Patents

Voice emotion interaction control method and system Download PDF

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Publication number
CN112687268A
CN112687268A CN202011396057.XA CN202011396057A CN112687268A CN 112687268 A CN112687268 A CN 112687268A CN 202011396057 A CN202011396057 A CN 202011396057A CN 112687268 A CN112687268 A CN 112687268A
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China
Prior art keywords
pin
expansion board
main controller
voice
control
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Pending
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CN202011396057.XA
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Chinese (zh)
Inventor
罗春燕
李童童
周钡欣
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Foshan University
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Foshan University
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Priority to CN202011396057.XA priority Critical patent/CN112687268A/en
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Abstract

The invention relates to the technical field of intelligent control, in particular to a voice emotion interaction control method and a system, wherein the system comprises the following components: the power supply module is respectively connected with the control component, the voice recognition module and the dot matrix display; the control assembly comprises a main controller and an expansion board which are connected with each other, the input end of the expansion board is connected with the output end of the voice recognition module, and the output end of the expansion board is connected with the input end of the array display; the method comprises the following steps: the voice recognition module recognizes the collected voice signals, extracts voice instructions from the voice signals, and then searches a control program corresponding to the voice instructions from a pre-stored database; when the control program corresponding to the voice instruction is found, the control program is sent to the control assembly; the control component triggers the dot matrix display to display the dot matrix arrangement corresponding to the voice command by executing the control program, and the invention can better meet the emotional and visual use requirements of user interaction.

Description

Voice emotion interaction control method and system
Technical Field
The invention relates to the technical field of intelligent control, in particular to a voice emotion interaction control method and system.
Background
With the popularization of computer technology, people's lives have gradually entered the intelligent era nowadays. Not only computer, cell-phone, PAD, people's clothing and eating the square of the line all begin to use the intelligent voice interaction that appears soon, and voice interaction provides convenient and fast's service in each aspect of people's life. With the increasing attention of society to individual mental health, the application of various emotions is gradually increased, wherein visual emotion interaction is increasingly popular;
however, in the prior art, the problems of too complex operation mode of emotion interaction, single interface of emotion interaction, too mechanized feedback of emotion interaction, weak visual impression and the like exist, the operation and the use environment of a user are limited to a certain extent, and the emotion and visual use requirements of user interaction are difficult to meet.
Disclosure of Invention
In order to solve the above problems, the present invention provides a method and a system for controlling speech emotion interaction, so as to solve one or more technical problems in the prior art and provide at least one useful choice or creation condition.
In order to achieve the purpose, the invention provides the following technical scheme:
a voice emotion interaction control system, the system comprising: the control assembly, the voice recognition module and the dot matrix display are electrically connected with the power supply module; the control assembly is main control unit and expansion board based on Arduino platform, main control unit and expansion board are connected, the input of expansion board is connected the output of speech recognition module, the output of expansion board is connected the input of dot-matrix display.
Further, the model of the main controller is ATMega 328.
Further, the extension board is of the model ArduPilot Mega.
Furthermore, pins A0 of the main controller are connected with pins PC0 of the expansion board, pins A1 of the main controller are connected with pins PC1 of the expansion board, pins A2 of the main controller are connected with pins PC2 of the expansion board, pins A3 of the main controller are connected with pins PC3 of the expansion board, pins A4 of the main controller are connected with pins PC4 of the expansion board, and pins A5 of the main controller are connected with pins PC5 of the expansion board;
pin No. D0 of the main controller is connected with pin No. PD0 of the expansion board, pin No. D1 of the main controller is connected with pin No. PD1 of the expansion board, pin No. D2 of the main controller is connected with pin No. PD2 of the expansion board, pin No. D3 of the main controller is connected with pin No. PD3 of the expansion board, pin No. D4 of the main controller is connected with pin No. PD4 of the expansion board, pin No. D5 of the main controller is connected with pin No. PD5 of the expansion board, pin No. D6 of the main controller is connected with pin No. PD6 of the expansion board, and pin No. D7 of the main controller is connected with pin No. PD7 of the expansion board;
the pin D8 of the main controller is connected to the pin PB0 of the expansion board, the pin D9 of the main controller is connected to the pin PB1 of the expansion board, the pin D10 of the main controller is connected to the pin PB2 of the expansion board, the pin D11 of the main controller is connected to the pin PB3 of the expansion board, the pin D12 of the main controller is connected to the pin PB4 of the expansion board, and the pin D13 of the main controller is connected to the pin PB5 of the expansion board.
Further, the dot matrix display is connected with 12 numbers of pins, GND pins and 5V pins of the expansion board through 4Pin connectors respectively, and the voice recognition module is connected with 12 numbers of pins, GND pins and 5V pins of the expansion board through the Pin connectors respectively.
Further, the model of the voice recognition module is STC8F1K08S 2.
Further, the model of the dot matrix type display is LY-LED16X 8-B.
A voice emotion interaction control method is applied to any one of the voice emotion interaction control systems, and comprises the following steps:
s100, a voice recognition module recognizes the collected voice signal and extracts a voice instruction from the voice signal;
s200, searching a control program corresponding to the voice instruction from a pre-stored database by a voice recognition module, and sending the control program to a control assembly when the control program corresponding to the voice instruction is searched;
and step S300, after the control component receives the control program, triggering a dot matrix display to display dot matrix arrangement corresponding to the voice command by executing the control program.
The invention has the beneficial effects that: the invention applies for a voice emotion interaction control method and a system, the processing capacity and the speed of voice emotion interaction can be improved by expanding a main controller, a voice recognition module is used as an input end of the voice emotion interaction to collect and recognize voice signals of a user, a control assembly is used as a control center of the voice emotion interaction to respectively carry out data interaction with the voice recognition module and a dot matrix type display, and corresponding signals are triggered to the dot matrix type display by executing data sent by the voice recognition module, so that dot matrix arrangement corresponding to the voice signals of the user is displayed in a visual form. The emotion information of the user is accurately, conveniently and visually fed back and interacted, and emotion and visualization using requirements of user interaction are better met.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without inventive exercise.
FIG. 1 is a circuit block diagram of a speech emotion interaction control system according to an embodiment of the present invention;
FIG. 2 is a circuit diagram of a speech emotion interaction control system according to an embodiment of the present invention;
FIG. 3 is a flowchart illustrating a method for controlling speech emotion interaction according to an embodiment of the present invention.
Detailed Description
The conception, specific structure and technical effects of the present application will be described clearly and completely with reference to the following embodiments and the accompanying drawings, so that the purpose, scheme and effects of the present application can be fully understood. It should be noted that the embodiments and features of the embodiments in the present application may be combined with each other without conflict.
Referring to fig. 1 and fig. 2, an embodiment of the present application provides a speech emotion interaction control system, including: the control assembly, the voice recognition module and the dot matrix display are electrically connected with the power supply module; the control assembly is main control unit and expansion board based on Arduino platform, main control unit and expansion board are connected, the input of expansion board is connected the output of speech recognition module, the output of expansion board is connected the input of dot-matrix display.
The invention can improve the processing capacity and speed of voice emotion interaction by expanding the main controller, and the embodiment of the invention takes the voice recognition module as the input end of the voice emotion interaction to collect and recognize the voice signal of a user, takes the control assembly as the control center of the voice emotion interaction to respectively carry out data interaction with the voice recognition module and the dot matrix display, and triggers corresponding signals to the dot matrix display by executing the data sent by the voice recognition module, thereby visually displaying the dot matrix arrangement corresponding to the voice signal of the user. The method and the device can directly process and transmit the information of the voice of the user without excessive operation of the user, and feedback and interaction are carried out on the emotion information of the user through visual design, so that the emotional and visual use requirements of user interaction are better met.
In a modified embodiment, the host controller is model ATMega 328.
In a modified embodiment, the expansion board is of the type ArduPilot Mega.
In a modified embodiment, the pin A0 of the main controller is connected with the pin PC0 of the expansion board, the pin A1 of the main controller is connected with the pin PC1 of the expansion board, the pin A2 of the main controller is connected with the pin PC2 of the expansion board, the pin A3 of the main controller is connected with the pin PC3 of the expansion board, the pin A4 of the main controller is connected with the pin PC4 of the expansion board, and the pin A5 of the main controller is connected with the pin PC5 of the expansion board;
pin No. D0 (RX) of the main controller is connected with pin No. PD0 of the expansion board, pin No. D1 (TX) of the main controller is connected with pin No. PD1 of the expansion board, pin No. D2 of the main controller is connected with pin No. PD2 of the expansion board, pin No. D3 (PWM) of the main controller is connected with pin No. PD3 of the expansion board, pin No. D4 of the main controller is connected with pin No. PD4 of the expansion board, pin No. D5 (PWM) of the main controller is connected with pin No. PD5 of the expansion board, pin No. D6 (PWM) of the main controller is connected with pin No. PD6 of the expansion board, and pin No. D7 of the main controller is connected with pin No. PD7 of the expansion board;
the pin D8 of the main controller is connected with the pin PB0 of the expansion board, the pin D9 (PWM) of the main controller is connected with the pin PB1 of the expansion board, the pin D10 (PWM/SS) of the main controller is connected with the pin PB2 of the expansion board, the pin D11 (PWM/MOSI) of the main controller is connected with the pin PB3 of the expansion board, the pin D12 (PWM/MISO) of the main controller is connected with the pin PB4 of the expansion board, and the pin D13 (SCK) of the main controller is connected with the pin PB5 of the expansion board.
In an improved embodiment, the dot matrix display is respectively connected with the Pin No. 12, the Pin GND and the Pin 5V of the expansion board through a 4Pin connector, and the voice recognition module is respectively connected with the Pin No. 12, the Pin GND and the Pin 5V of the expansion board through the Pin connector.
In a modified embodiment, the voice recognition module has a model number of STC8F1K08S 2.
In a modified embodiment, the matrix display is model LY-LED16X 8-B.
Referring to fig. 3, an embodiment of the present application further provides a speech emotion interaction control method, which is applied to the speech emotion interaction control system according to any of the above embodiments, where the method includes the following steps:
s100, a voice recognition module recognizes the collected voice signal and extracts a voice instruction from the voice signal;
s200, searching a control program corresponding to the voice instruction from a pre-stored database by a voice recognition module, and sending the control program to a control assembly when the control program corresponding to the voice instruction is searched;
and step S300, after the control component receives the control program, triggering a dot matrix display to display dot matrix arrangement corresponding to the voice command by executing the control program.
In this embodiment, the voice recognition module stores a plurality of voice commands in advance, each voice command corresponds to one control program, the control program is an executable program (EXE File), and the correspondence between the voice commands and the control program is stored in a database; the control program is used for triggering the dot matrix type display to display the dot matrix arrangement corresponding to the voice instruction when being executed; it is understood that the control program, voice commands, and dot matrix arrangement herein are in a uniquely corresponding relationship.
In the embodiment provided by the invention, the voice recognition module collects and recognizes the voice signal of the user to generate the executable program, and sends the executable program generated after the voice signal is processed to the control component, the control component triggers the dot matrix type display to display the dot matrix arrangement corresponding to the voice signal of the user by executing the executable program sent by the voice recognition module,
the method and the device can directly carry out voice interaction without excessive operation of users, carry out emotion feedback on the users through the visual images, form meaningful patterns by displaying corresponding dot matrix arrangement, accurately feed back voice instructions of the users, provide good voice interaction, and better meet the emotional and visual use requirements of the user interaction.
Although the embodiments of the present invention have been described with reference to the accompanying drawings, it is not intended to limit the scope of the present invention, and it should be understood by those skilled in the art that various modifications and variations can be made without inventive efforts by those skilled in the art based on the technical solution of the present invention.

Claims (8)

1. A system for controlling speech emotion interaction, the system comprising: the control assembly, the voice recognition module and the dot matrix display are electrically connected with the power supply module; the control assembly is main control unit and expansion board based on Arduino platform, main control unit and expansion board are connected, the input of expansion board is connected the output of speech recognition module, the output of expansion board is connected the input of dot-matrix display.
2. The system of claim 1, wherein the master controller is ATMega 328.
3. The system of claim 2, wherein the extension board is ArduPilot Mega.
4. The system of claim 3, wherein the pin A0 of the main controller is connected to the pin PC0 of the expansion board, the pin A1 of the main controller is connected to the pin PC1 of the expansion board, the pin A2 of the main controller is connected to the pin PC2 of the expansion board, the pin A3 of the main controller is connected to the pin PC3 of the expansion board, the pin A4 of the main controller is connected to the pin PC4 of the expansion board, and the pin A5 of the main controller is connected to the pin PC5 of the expansion board;
pin No. D0 of the main controller is connected with pin No. PD0 of the expansion board, pin No. D1 of the main controller is connected with pin No. PD1 of the expansion board, pin No. D2 of the main controller is connected with pin No. PD2 of the expansion board, pin No. D3 of the main controller is connected with pin No. PD3 of the expansion board, pin No. D4 of the main controller is connected with pin No. PD4 of the expansion board, pin No. D5 of the main controller is connected with pin No. PD5 of the expansion board, pin No. D6 of the main controller is connected with pin No. PD6 of the expansion board, and pin No. D7 of the main controller is connected with pin No. PD7 of the expansion board;
the pin D8 of the main controller is connected to the pin PB0 of the expansion board, the pin D9 of the main controller is connected to the pin PB1 of the expansion board, the pin D10 of the main controller is connected to the pin PB2 of the expansion board, the pin D11 of the main controller is connected to the pin PB3 of the expansion board, the pin D12 of the main controller is connected to the pin PB4 of the expansion board, and the pin D13 of the main controller is connected to the pin PB5 of the expansion board.
5. The system according to claim 4, wherein the dot matrix display is connected to the 12 th Pin, the GND Pin and the 5V Pin of the expansion board through 4Pin connectors, and the voice recognition module is connected to the 12 th Pin, the GND Pin and the 5V Pin of the expansion board through Pin connectors.
6. The system of claim 5, wherein the voice recognition module has a model number of STC8F1K08S 2.
7. The system of claim 6, wherein the matrix display is LY-LED16X 8-B.
8. A speech emotion interaction control method, which is applied to the speech emotion interaction control system of any one of claims 1 to 7, characterized by comprising the steps of:
s100, a voice recognition module recognizes the collected voice signal and extracts a voice instruction from the voice signal;
s200, searching a control program corresponding to the voice instruction from a pre-stored database by a voice recognition module, and sending the control program to a control assembly when the control program corresponding to the voice instruction is searched;
and step S300, after the control component receives the control program, triggering a dot matrix display to display dot matrix arrangement corresponding to the voice command by executing the control program.
CN202011396057.XA 2020-12-03 2020-12-03 Voice emotion interaction control method and system Pending CN112687268A (en)

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Application Number Priority Date Filing Date Title
CN202011396057.XA CN112687268A (en) 2020-12-03 2020-12-03 Voice emotion interaction control method and system

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Application Number Priority Date Filing Date Title
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CN112687268A true CN112687268A (en) 2021-04-20

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201594206U (en) * 2010-01-08 2010-09-29 研祥智能科技股份有限公司 Industrial control main board and expansion board and industrial computer thereof
CN104076747A (en) * 2013-03-27 2014-10-01 广东工业大学 Robot control system based on Arduino control board and voice recognition module
CN107520849A (en) * 2017-07-25 2017-12-29 北京联合大学 A kind of SCM Based Voice command robot expression display device
CN107632562A (en) * 2017-11-16 2018-01-26 成都伟嘉斯特科技有限公司 A kind of robot that facial expressions and acts are realized by dot matrix lamp
CN211164044U (en) * 2019-12-12 2020-08-04 青岛联合创智科技有限公司 Robot expression display system based on voice interaction

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201594206U (en) * 2010-01-08 2010-09-29 研祥智能科技股份有限公司 Industrial control main board and expansion board and industrial computer thereof
CN104076747A (en) * 2013-03-27 2014-10-01 广东工业大学 Robot control system based on Arduino control board and voice recognition module
CN107520849A (en) * 2017-07-25 2017-12-29 北京联合大学 A kind of SCM Based Voice command robot expression display device
CN107632562A (en) * 2017-11-16 2018-01-26 成都伟嘉斯特科技有限公司 A kind of robot that facial expressions and acts are realized by dot matrix lamp
CN211164044U (en) * 2019-12-12 2020-08-04 青岛联合创智科技有限公司 Robot expression display system based on voice interaction

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Application publication date: 20210420