Composite control of the SiC arc welding power source based on the expert system and neuron PID
A third generation wide-band-gap SiC semiconductor device is used in the SiC arc welding power source, which has a higher inverter frequency and greatly improves the dynamic characteristics of the arc welding power source, providing opportunities for control algorithm optimization. A composite contr...
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EDP Sciences
2021-01-01
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doaj-d361eb4586fa451d8265cdb3049244e02021-02-01T08:06:19ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012330400110.1051/e3sconf/202123304001e3sconf_iaecst20_04001Composite control of the SiC arc welding power source based on the expert system and neuron PIDSi-min Chen0Qi-ming Zhong1Zhi-jing Zeng2Zhen-min Wang3School of Electrical Technology, GuangDong Mechanical & Electrical PolytechnicSchool of Mechanical and Automotive Engineering, South China University of TechnologySchool of Electrical Technology, GuangDong Mechanical & Electrical PolytechnicSchool of Mechanical and Automotive Engineering, South China University of TechnologyA third generation wide-band-gap SiC semiconductor device is used in the SiC arc welding power source, which has a higher inverter frequency and greatly improves the dynamic characteristics of the arc welding power source, providing opportunities for control algorithm optimization. A composite control method of the arc welding power source combining the expert system and single neuron Proportional-Integral-Derivative (PID) is proposed in this paper, aimed at the fact that the proportional cofficient of neuron PID can hardly be adapted to rapid welding current changes. The SiC arc welding power source is taken as the plant of study in this paper. A mathematical model of the arc welding power source-arc system is established, and the controller of the arc welding power source based on the neuron PID and corresponding expert rules are defined to adjust the proportional coefficient of neuron PID Finally, the neuron PID controller (SNC) and the composite controller based on the expert system and neuron PID (ESNC) are simulated and verified. The results show that compared with the neuron PID algorithm, this method can adjust the proportional neuron PID coefficient in real time according to the welding current and has a better adaptive ability and superior tracking performance for arc welding power source control.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/09/e3sconf_iaecst20_04001.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Si-min Chen Qi-ming Zhong Zhi-jing Zeng Zhen-min Wang |
spellingShingle |
Si-min Chen Qi-ming Zhong Zhi-jing Zeng Zhen-min Wang Composite control of the SiC arc welding power source based on the expert system and neuron PID E3S Web of Conferences |
author_facet |
Si-min Chen Qi-ming Zhong Zhi-jing Zeng Zhen-min Wang |
author_sort |
Si-min Chen |
title |
Composite control of the SiC arc welding power source based on the expert system and neuron PID |
title_short |
Composite control of the SiC arc welding power source based on the expert system and neuron PID |
title_full |
Composite control of the SiC arc welding power source based on the expert system and neuron PID |
title_fullStr |
Composite control of the SiC arc welding power source based on the expert system and neuron PID |
title_full_unstemmed |
Composite control of the SiC arc welding power source based on the expert system and neuron PID |
title_sort |
composite control of the sic arc welding power source based on the expert system and neuron pid |
publisher |
EDP Sciences |
series |
E3S Web of Conferences |
issn |
2267-1242 |
publishDate |
2021-01-01 |
description |
A third generation wide-band-gap SiC semiconductor device is used in the SiC arc welding power source, which has a higher inverter frequency and greatly improves the dynamic characteristics of the arc welding power source, providing opportunities for control algorithm optimization. A composite control method of the arc welding power source combining the expert system and single neuron Proportional-Integral-Derivative (PID) is proposed in this paper, aimed at the fact that the proportional cofficient of neuron PID can hardly be adapted to rapid welding current changes. The SiC arc welding power source is taken as the plant of study in this paper. A mathematical model of the arc welding power source-arc system is established, and the controller of the arc welding power source based on the neuron PID and corresponding expert rules are defined to adjust the proportional coefficient of neuron PID Finally, the neuron PID controller (SNC) and the composite controller based on the expert system and neuron PID (ESNC) are simulated and verified. The results show that compared with the neuron PID algorithm, this method can adjust the proportional neuron PID coefficient in real time according to the welding current and has a better adaptive ability and superior tracking performance for arc welding power source control. |
url |
https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/09/e3sconf_iaecst20_04001.pdf |
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