对称单极配置下的直流电网极地故障保护策略

A. Bertinato, P. Torwelle, Guilherme DANTAS DE FREITAS, M. Colmenero, B. Raison
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引用次数: 3

摘要

对称单极是目前采用模块化多电平变换器(MMC)技术的高压直流点对点互连中最常见的结构之一。因此,从现有和未来对称单极HVDC链路的连接开始,以逐步方式建立的未来HVDC电网是可以考虑的一种可能性。在这种对称单极结构中,直流链路的极地故障会导致低稳态直流故障电流,但会导致健康极的大过电压。本文提出了一种对称单极配置下的高压直流电网极地故障保护策略,采用低速直流断路器和位于交流侧的极再平衡电抗器(PRR)来管理极电压的再平衡。论文的第一部分详细描述了主保护和备份保护的顺序。在第二部分中,通过在4端高压直流电网上进行的EMT模拟验证了所提出的概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pole-to-ground fault protection strategy for HVDC grids under symmetrical monopolar configuration
Symmetrical monopolar is nowadays one of the most common architecture employed in HVDC point-to-point interconnectors using Modular Multilevel Converter (MMC) technology. Future HVDC grids built in a stepwise approach, starting from the connection of the existing and future symmetric monopolar HVDC links, are therefore a possibility that can be taken into account. In such symmetrical monopolar configuration, a pole-to-ground fault in a DC link results in a low steady state DC fault current but it entails large overvoltage of the healthy pole. This paper proposes a novel pole-to-ground fault protection strategy for HVDC grids under symmetrical monopolar configuration employing low-speed DC breakers and pole rebalancing reactor (PRR) located at AC side to manage the rebalancing of the pole voltages. The first part of the paper is dedicated to the detailed description of the primary and backup protection sequences. In the second part, the proposed concept is validated through EMT simulations performed on a 4-terminal HVDC grid.
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