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Efficient Estimation and Characteristic Analysis of Short-Circuit Currents for MMC-MTDC Grids

机译:MMC-MTDC网格短路电流的高效估计与特性分析

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摘要

Short-circuit current calculation and its characteristic analysis are the foundation of selecting circuit breakers and designing protection systems. First, a companion circuit-based method is presented to fast calculate the short-circuit current of asymmetric bipolar modular multilevel converter-based multiterminal direct current (MMC-MTDC) grids. With the reduction of the whole MTDC grid into an equivalent RLC circuit, the short-circuit current of the grid is efficiently and accurately solved by companion circuit method instead of the numerical integration. In addition to the efficiency, the proposed method can readily adapt to various types of MTDC grids and all kinds of dc faults. Second, unique short-circuit current characteristics of a bipolar MTDC grid following different types of dc faults are theoretically analyzed. A fault type discrimination method is then proposed for bipolar MMC-MTDC grids with dedicated metallic return. Finally, intensive numerical results of two MTDC grids validate the accuracy, adaptability, and efficiency of the presented dc grid short-circuit current calculation method as well as the correctness of the short-circuit current characteristic analyses.
机译:短路电流计算及其特征分析是选择断路器和设计保护系统的基础。首先,提出了一种基于伴随的基于电路的方法,以快速计算非对称双极模块化多级转换器的多晶片多电流(MMC-MTDC)网格的短路电流。随着整个MTDC网格的减少成相同 rlc 电路,通过伴随电路方法有效且准确地解决了电网的短路电流,而不是数值积分。除了效率之外,所提出的方法还可以容易地适应各种类型的MTDC网格和各种DC故障。二,理论上分析了不同类型的DC故障后双极MTDC网格的独特短路电流特性。然后提出了具有专用金属回报的双极MMC-MTDC网格的故障型辨别方法。最后,两个MTDC网格的密集数值结果验证了所示的直流电网短路电流计算方法的精度,适应性和效率以及短路电流特性分析的正确性。

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