不平衡故障下并网电压源变换器性能研究

Jundi Jia, Guangya Yang, A. Nielsen
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引用次数: 8

摘要

可再生能源(RES)和高压直流输电链路通常通过电源变流器与电网连接,其在电网故障时的性能与传统的同步发电机有很大不同。研究了不平衡故障下并网电压源变换器的性能。首先介绍了传统的正序同步参考帧控制,然后提出了考虑无功功率注入和变流器限流的三种不同的负序电流控制策略。仿真结果表明,vsc的性能随控制策略的不同而变化。负序电流控制是在不平衡故障情况下限制变换器各相电流的必要手段。在所提出的控制策略中,平衡电流控制策略最符合目前的电压支持要求,如果在不平衡故障下期望得到一组受控的不平衡电流,则需要进一步规定要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of grid-connected voltage source converter performance under unbalanced faults
Renewable energy sources (RES) and HVDC links are typically interfaced with the grid by power converters, whose performance during grid faults is significantly different from that of traditional synchronous generators. This paper investigates the performance of grid-connected voltage source converters (VSCs) under unbalanced faults. Conventional positive-sequence synchronous reference frame (SRF) control is presented first, followed by three different negative-sequence current control strategies considering reactive power injection and converter current limit. The simulation results indicate that the performance of VSCs varies with their control strategies. Negative-sequence current control is necessary to restrict converter current in each phase under unbalanced faults. Among presented control strategies, the balanced current control strategy complies with the present voltage support requirement best and further requirements should be specified if a set of controlled unbalanced current is expected under unbalanced faults.
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