带耦合变压器的高压直流断路器拓扑分析

Yuan Liu, Xiaoguang Wei, Chong Gao, Junzheng Cao
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引用次数: 6

摘要

大规模清洁能源并网的快速推进推动了直流电网技术的发展。高压直流断路器作为直流电网的关键设备之一,逐渐受到越来越多的关注。直流电由于没有自然过零而比交流电更难中断,特别是在高压大容量系统中。本文首先简要回顾了直流断路器的研究现状。然后提出了一种新型的带耦合变压器的直流断路器拓扑结构。给出了其拓扑结构,分析了其工作原理。建立了不同阶段的等效模型,设计了关键部件参数。依托舟山五端柔性直流工程,模拟了高压直流断路器的运行特性。仿真结果验证了理论分析的正确性和新型直流断路器在柔性直流输电网中对故障电流进行断流的有效性。这为高压直流断路器的设计提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Topological analysis of HVDC circuit breaker with coupling transformer
The rapid progress of large-scale clean energy accessing to the grid promotes the development of DC grid technologies. HVDC (high voltage direct current) circuit breaker as one of the key equipment of the DC grid has gradually attracted more and more attentions. Direct current is more difficult to be interrupted comparing to alternative current because of without natural zero-crossing, especially in the high voltage and large capacity system. This paper briefly reviews the research status of DC circuit breaker firstly. Then a novel topology of DC circuit breaker with coupling transformer is proposed. Its topology is presented and operating principle is analyzed. The equivalent model for different stages is established, and the key component parameters are designed. Operating characteristic of the HVDC circuit breaker is simulated relying ZhouShan 5-terminal flexible HVDC project. Simulation results have verified the correctness of theoretical analysis and the effectiveness of the novel HVDC circuit breaker interrupting the fault current in the flexible HVDC transmission grid. This provides a basis for HVDC circuit breaker design.
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