Broadcast speech recognition and control system based on Internet of Things sensors for smart cities

Author:

Qin Min1,Kumar Ravi2,Shabaz Mohammad3,Agal Sanjay4,Singh Pavitar Parkash5,Ammini Anooja6

Affiliation:

1. School of Arts, Southwest Petroleum University , Chengdu , Sichuan, 610500 , China

2. Department of Electronics and Communication Engineering, Jaypee University of Engineering and Technology , Guna, 473226 , India

3. Department of Computer Science and Engineering, Model Institute of Engineering and Technology , Jammu , J&K, 181122 , India

4. Department of Computer Engineering, Dr. V. R. Godhania College of Engineering and Technology, Chhaya , Porbandar , 360578, Gujarat , India

5. Department of Management, Lovely Professional University , Phagwara, 144402 , India

6. Department of Computer Applications, JECRC University , Jaipur, 303905 , India

Abstract

Abstract With the wide popularization of Internet of Things (IoT) technology, the design and implementation of intelligent speech equipment have attracted more and more researchers’ attention. Speech recognition is one of the core technologies to control intelligent mechanical equipment. An industrial IoT sensor-based broadcast speech recognition and control system is presented to address the issue of integrating a broadcast speech recognition and control system with an IoT sensor for smart cities. In this work, a design approach for creating an intelligent voice control system for the Robot operating system (ROS) is provided. The speech recognition control program for the ROS is created using the Baidu intelligent voice software development kit, and the experiment is run on a particular robot platform. ROS makes use of communication modules to implement network connections between various system modules, mostly via topic-based asynchronous data transmission. A point-to-point network structure serves as the communication channel for the many operations that make up the ROS. The hardware component is mostly made up of the main controller’s motor driving module, a power module, a WiFi module, a Bluetooth module, a laser ranging module, etc. According to the experimental findings, the control system can identify the gathered sound signals, translate them into control instructions, and then direct the robot platform to carry out the necessary actions in accordance with the control instructions. Over 95% of speech is recognized. The control system has a high recognition rate and is simple to use, which is what most industrial controls require. It has significant implications for the advancement of control technology and may significantly increase production and life efficiency.

Publisher

Walter de Gruyter GmbH

Subject

Artificial Intelligence,Information Systems,Software

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