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Article type: Research Article
Authors: Chen, Guangshenga; * | Zhao, Minghuib | Zou, Huadonga | Ma, Zehuaa
Affiliations: [a] Qingyuan Polytechnic, Qingyuan, Guangdong, China | [b] CCTEG Shanghai Research Institute, Shanghai, China
Correspondence: [*] Corresponding author: Guangsheng Chen, Qingyuan Polytechnic, Jinshijihaoyuan, Renmin 3rd Road, Qingyuan, Guandong 511510, China. Tel.: +86 13729617017; E-mail: [email protected].
Abstract: With the development of technology, the application of intelligent coal gangue sorting is more and more favored by coal mining enterprises. The coal gangue intelligent sorting system has higher requirements on the coal conveyor belt. The traditional transmission system has the problems of slow speed response, unstable operation, high energy consumption and jitter in the process of speed change. Using PLC, touch screen, frequency converter, RS-485, sensors and so on, the speed control and speed monitoring system of belt transport mechanism is constructed. By analyzing the error law of the system speed control and using Numpy system analysis and calculation, speed pre-compensation can be made. Then by controling speed precision through the PID and monitoring display through the time-speed curve, the real-time automation gives an alarm for abnormal speed situation. According to the speed requirement of the intelligent sorting system of coal gangue, the system can quickly reach the predetermined speed value, and effectively eliminate the shaking phenomenon in the process of changing speed. The system has strong universality, easy maintenance, and stable speed control, which is conducive to improving the reliability and efficiency of the intelligent sorting system for coal gangue and reduceing transmission mechanism wear caused by dithering.
Keywords: Belt transmission, numpy, frequency control, coal gangue sorting
DOI: 10.3233/JCM-215239
Journal: Journal of Computational Methods in Sciences and Engineering, vol. 21, no. 6, pp. 1947-1955, 2021
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