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Highly Efficient Fault-Tolerant Modular Embedded Thyristor Directed Converter for HVDC Applications

机译:适用于HVDC应用的高效容错模块化嵌入式晶闸管定向转换器

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摘要

Modular multilevel converter containing half-bridge submodules (SMs) is the most preferred topology for high voltage dc (HVDC) applications. However, the inability to block/limit dc fault current and large number of capacitors requirement are some of its limitations. Recently, hybrid topologies utilizing thyristors for such applications have gained significant interest as they offer lower on-state voltage drop, higher reliability, and power handling capability. In this article, the modular embedded thyristor directed converter (METDC) is proposed, which uses series-connected thyristors as the high voltage switches and chain-links comprising of IGBT based half and full-bridge SMs. A control technique is proposed for force-commutation of thyristors by using full-bridge SMs for lagging loads, while they are naturally commutated for leading loads. The METDC offers wide operating range besides being fault tolerant. The results obtained from the METDC-HVDC model developed in PSCAD substantiate its ability to provide independent active and reactive power control required for HVDC application. The fault studies carried out validate the dc fault tolerant capability of METDC. The results obtained from the various ac fault/unbalanced case studies substantiate the efficacy of proposed controller to force-commutate the thyristors even during contingencies. Loss computation validates the ability of converter to provide higher efficiency.
机译:包含半桥子模块(SM)的模块化多电平转换器是高压直流(HVDC)应用的最优选拓扑。但是,无法阻止/限制直流故障电流以及需要大量电容器是其局限性。近来,利用晶闸管用于此类应用的混合拓扑已经引起了人们的极大兴趣,因为它们具有更低的导通状态压降,更高的可靠性和功率处理能力。在本文中,提出了模块化嵌入式晶闸管定向转换器(METDC),该转换器将串联的晶闸管用作高压开关和由基于IGBT的半桥和全桥SM组成的链节。提出了一种控制技术,通过使用全桥SM滞后负载来晶闸管进行力换向,而对于先导负载则自然地将它们换相。 METDC除了具有容错能力外,还提供了广泛的工作范围。从PSCAD中开发的METDC-HVDC模型获得的结果证实了其提供HVDC应用所需的独立有功和无功功率控制的能力。进行的故障研究验证了METDC的直流容错能力。从各种交流故障/不平衡案例研究中获得的结果证实了所提出的控制器即使在紧急情况下也可强制换向晶闸管的功效。损耗计算验证了转换器提供更高效率的能力。

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