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Protection of the MMCs of HVDC Transmission Systems against DC Short-Circuit Faults

机译:高压直流输电系统MMC的直流短路故障保护

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This paper deals with the blocking of DC-fault current during DC cable short-circuit conditions in HVDC (High-Voltage DC) transmission systems utilizing Modular Multilevel Converters (MMCs), where a new SubModule (SM) topology circuit for the MMC is proposed. In this SM circuit, an additional Insulated-Gate Bipolar Translator (IGBT) is required to be connected at the output terminal of a conventional SM with a half-bridge structure, hereafter referred to as HBSM, where the anti-parallel diodes of additional IGBTs are used to block current from the grid to the DC-link side. Compared with the existing MMCs based on full-bridge (FB) SMs, the hybrid topologies of HBSM and FBSM, and the clamp-double SMs, the proposed topology offers a lower cost and lower power loss while the fault current blocking capability in the DC short-circuit conditions is still provided. The effectiveness of the proposed topology has been validated by simulation results obtained from a 300-kV 300-MW HVDC transmission system and experimental results from a down-scaled HVDC system in the laboratory.
机译:本文针对使用模块化多电平转换器(MMC)的HVDC(高压DC)传输系统中的DC电缆短路情况下的DC故障电流的阻塞问题,其中提出了一种用于MMC的新的SubModule(SM)拓扑电路。在此SM电路中,需要在具有半桥结构的传统SM(以下称为HBSM)的传统SM的输出端子处连接一个额外的绝缘栅双极型转换器(IGBT),其中,其他IGBT的反并联二极管用于阻止从电网到直流母线侧的电流。与现有的基于全桥(SM)的MMC,HBSM和FBSM的混合拓扑以及钳位双SM相比,所提出的拓扑具有更低的成本和更低的功率损耗,同时在直流中具有故障电流阻断能力仍然提供短路条件。通过在300 kV 300 MW HVDC输电系统中获得的仿真结果以及在实验室中从缩小规模的HVDC系统获得的实验结果,已验证了所建议拓扑的有效性。

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