Improved Thevenin Equivalent Model of MMC Considering Pre-charge Conditions and DC Side Fault Conditions

Authors

  • Enshu Jin School of Electrical Engineering Northeast Electric Power University, 169 Changchun Road, Jilin, 132000, China
  • Zhenyu Song School of Electrical Engineering Northeast Electric Power University, 169 Changchun Road, Jilin, 132000, China
  • Xiaofan Yang State Grid Jiangsu Electric Power Co., Ltd. Yancheng Dafeng District Power Supply Branch, Yancheng, 224000, China
  • Xin Yu State Grid Jiangsu Electric Power Co., Ltd. Yancheng Dafeng District Power Supply Branch, Yancheng, 224000, China

Keywords:

Converter, electromagnetic transient simulation, improved Thevenin equivalent model, Modular Multilevel Converter (MMC)

Abstract

The traditional Thevenin equivalent Modular Multilevel Converter (MMC) model has poor versatility for the two working conditions of pre-charging and DC-side faults. In this paper, an improved Thevenin equivalent MMC model considering pre-charge conditions and DC side fault conditions is proposed. The model divides the pre-charging condition into a Controllable charging stage and an Uncontrollable charging stage. The DC-side fault condition is divided into the pre-blocking and post-blocking conditions of the converter. The circuit characteristics are analyzed, and the equivalent model topology is comprehensively improved to make it suitable for full-condition simulation, and a control strategy suitable for the equivalent model is proposed. The detailed model and the proposed improved equivalent model were built in PSCAD/ EMTDC for comparison and analysis. The simulation results shows that the improved equivalent model can be applied to various working conditions, and the versatility of the traditional Thevenin equivalent model is improved

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Author Biographies

Enshu Jin, School of Electrical Engineering Northeast Electric Power University, 169 Changchun Road, Jilin, 132000, China

Enshu Jin Professor engaged in research on power system relay protection and electromagnetic transient simulation modeling.

Zhenyu Song, School of Electrical Engineering Northeast Electric Power University, 169 Changchun Road, Jilin, 132000, China

Zhenyu Song Postgraduate engaged in modular multilevel converter modeling and equivalent research work.

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Published

2021-11-04

How to Cite

[1]
E. . Jin, Z. . Song, X. . Yang, and X. . Yu, “Improved Thevenin Equivalent Model of MMC Considering Pre-charge Conditions and DC Side Fault Conditions”, ACES Journal, vol. 36, no. 06, pp. 796–805, Nov. 2021.

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