直流故障时MTDC链路部分去阻塞的影响

O. Oni, A. Swanson, R. P. Carpanen
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引用次数: 2

摘要

分析了直流线路故障和逆变站部分断电时多端高压直流线路的暂态响应。分析了当前顺序控制设置下四端系统的简化模型。然后,在PSCAD上对并联四端LCC变换器系统进行了建模和分析。在传输线的中间施加了直流线路故障。波形显示整流站有瞬态过流。为减少故障电流流入逆变站,提出了局部去堵措施。这就减少了整流器站的有功功率传输。故障期后系统能够保持稳态运行状态,没有发生换相故障。结果验证了MTDC在大容量电力传输中的可行性和控制器的故障穿越能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Partial De-blocking of MTDC Link during DC Fault
This paper analyzes the transient response of a multiterminal HVDC link during dc line fault and partial de-block of the inverter station. A simplified model of a four-terminal system was analyzed for current order control settings. Then, a parallel four-terminal LCC based converter system was modelled and analyzed on PSCAD. A dc line fault was applied at the middle of the transmission line. The waveforms showed a transient over-current at the rectifier station. A partial de-blocking measure was introduced to reduce the inflow of fault current into the inverter station. This resulted in a reduced active power transfer at the rectifier station. The system was able to maintain its steady state operating state after the fault period without any occurrence of commutation failure. The results validate the viability of MTDC for bulk power transfer and the fault ride through capability of the controller.
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