Abstract

In order to improve the quality of network monitoring, the monitoring design of the multi-motor synchronization control system based on IOT was present. In the paper IOT technology was adopted. The server part was completed on PC. And the client system was implemented on Android smart phone platform. And the motor control parameters were saved in text mode. Various parameters of multi motor synchronous system were monitored in text and graphics on Android smart phone. The parameter changes of the master motor speed and the tension were monitored on-line and shown in data curve mode. Users could browse in real time by mobile phone. Users could use manual / automatic two control methods to implement real-time control on the system. The communication parameters were stored in SQLite database. Socket network communication based on message notification was used in the system. More and more experiments showed that: The monitoring system was cost-effective, and good real-time performance. And the same time the system was quickly, low demand on the network, and easy to use.

Highlights

  • With the development of modern industrialization, the synchronous control of multi-Motor has been applied more and more widely, such as in textile, paper making, printing and dyeing industries [1-10]

  • The technology of the Internet of things in China started late, but the development momentum is very strong, and the synchronous monitoring of multi-motor based on Android smart phone has not yet been reported

  • Li Hui et al.: The Design of Multi-Motor Synchronous Monitoring System Based on IOT

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Summary

Introduction

With the development of modern industrialization, the synchronous control of multi-Motor has been applied more and more widely, such as in textile, paper making, printing and dyeing industries [1-10]. With the development of the Internet of things technology, the intelligent monitoring of the water line was becoming more and more important. The technology of the Internet of things in China started late, but the development momentum is very strong, and the synchronous monitoring of multi-motor based on Android smart phone has not yet been reported. The receiving data was displayed in graphic and textual way, and the operation is humanized. It provides first-hand information for the working status of multi motor production lines, and can directly control the operation of the production line after password verification

Overall System Structure
Multi-motor Synchronization System Introduction
Android Mobile Phone Monitoring Platform Design
Android Monitoring System Process Design
Database Module Design
Text Online Storage Module Design
Server Part Program Design
Experiment and Analysis
PID Tracking Performance Test
PID Decoupling Performance Test
Communication Packet Loss Rate Test
Conclusion
Full Text
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