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A DC fault handling method of the MMC-based DC system

机译:基于MMC的直流系统的直流故障处理方法

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The flexible DC system based on the modular multilevel converter (MMC) has a good development prospect. However, the DC fault handling is still a technical difficulty since the large capacity DC circuit breaker technology and its engineering application are not yet mature. Therefore, the converter-based fault isolation method is widely discussed. One typical idea of the converter-based isolation methods is to create a symmetrical short circuit at the AC system artificially after a DC fault, so the ac-side source could be separated from the DC fault point and the DC fault current can decay to a very small value naturally, which is represented by the double-thyristor switch scheme (DTSS). This paper analyzed the feasibility of the converter-based fault isolation method, including the isolating speed, influence on the ac-system protection and restart of the system. After that, the improved DC fault handling method by introducing damping modules was proposed, which could accelerate the DC fault isolating speed, avoid the maloperation of the ac-system protection and guarantee the fast restart of the system. Finally, the simulation cases based on the PSCAD/EMTDC are carried out to verify the superiority of the proposed scheme. (C) 2017 Elsevier Ltd. All rights reserved.
机译:基于模块化多电平转换器(MMC)的柔性直流系统具有良好的发展前景。然而,由于大容量直流断路器技术及其工程应用还不成熟,因此直流故障处理仍然是一个技术难题。因此,广泛讨论了基于转换器的故障隔离方法。基于转换器的隔离方法的一个典型想法是,在发生直流故障后在交流系统上人为地造成对称短路,因此可以将交流侧电源与直流故障点分开,并且直流故障电流可以衰减至自然地,该值非常小,由双晶闸管开关方案(DTSS)表示。本文分析了基于变换器的故障隔离方法的可行性,包括隔离速度,对交流系统保护的影响以及系统的重启。之后,提出了通过引入阻尼模块的改进的直流故障处理方法,可以加快直流故障隔离速度,避免交流系统保护误动,保证系统快速重启。最后,基于PSCAD / EMTDC的仿真案例验证了所提方案的优越性。 (C)2017 Elsevier Ltd.保留所有权利。

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