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Principle and Control Design of a Novel Hybrid Arc Suppression Device in Distribution Networks

Authors :
Wen Wang
Josep M. Guerrero
Ganzhou Yao
Chao Zhuo
Bishuang Fan
Xiangjun Zeng
Kun Yu
Source :
Fan, B, Yao, G, Wang, W, Zeng, X, Guerrero, J M, Yu, K & Zhuo, C 2022, ' Principle and Control Design of a Novel Hybrid Arc Suppression Device in Distribution Networks ', IEEE Transactions on Industrial Electronics, vol. 69, no. 1, pp. 41-51 . https://doi.org/10.1109/TIE.2021.3050390
Publication Year :
2022

Abstract

A single line-to-ground (SLG) fault may lead to a more severe line-to-line fault and power supply interruption if the ground-fault current exceeds a certain value. Arc suppression device (ASD) is a good solution to eliminate the ground-fault current. A novel hybrid ASD is proposed in this article, which consists of a passive device and an active one. The passive device utilizes multiterminal breakers and an isolation transformer to couple a secondary voltage of a zig-zag grounding transformer to the neutral point to compensate the majority of the ground-fault current. The active device uses a single-phase voltage source inverter to eliminate the residual fault current due to the leakage inductance of the zig-zag grounding transformer in the passive device. A dual-loop voltage and current control method for the active device is designed for the accurate residual current compensation. Results of simulation and prototype experiment validate the effectiveness of the proposed hybrid ASD. The proposed hybrid ASD does not need to detect distributed line-to-ground parameters, and it has lower cost, less control complexity, higher reliability, and better performance, compared to other ASDs.

Details

Language :
English
Database :
OpenAIRE
Journal :
Fan, B, Yao, G, Wang, W, Zeng, X, Guerrero, J M, Yu, K & Zhuo, C 2022, ' Principle and Control Design of a Novel Hybrid Arc Suppression Device in Distribution Networks ', IEEE Transactions on Industrial Electronics, vol. 69, no. 1, pp. 41-51 . https://doi.org/10.1109/TIE.2021.3050390
Accession number :
edsair.doi.dedup.....5e15421a5c57b363d88a020fe97edc01