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A low-loss hybrid bypass for DC fault protection of modular multilevel converters

机译:一种低损耗混合旁路,用于模块化多电平转换器的直流故障保护

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摘要

Without additional circuitry, the half-bridge modular multilevel converter (HB-MMC) is endangered under dc side faults. Typically, a bypass thyristor is augmented to each HB cell to take up fault current until ac circuit breakers interrupt the dc fault. This paper proposes a dc fault protection concept for HB-MMC stations that requires insignificant extra silicon area relative to the thyristor bypass concept. Herein, bypass thyristors of typical HB cells are rearranged such that an independent modular shadow rectifier bridge (SRB) is formed. A low-loss switch assembly is utilized to immediately isolate the MMC following fault detection and the SRB suppresses the fault current by injecting a reverse dc voltage. Among several advantages, the proposed arrangement incurs insignificant losses in steady state, and the MMC is capable of operating in STATCOM mode briefly after fault inception to support ac grid voltage. The proposed concept may be suitable for clearing temporary faults on overhead HVDC lines. Several structural variations will be viewed and discussed. Applicability for twolevel VSC will be addressed. The concept is validated by detailed numerical simulations of a ±200kV HB-MMC station under dc fault.
机译:如果不使用附加电路,则半桥模块化多电平转换器(HB-MMC)会在直流侧故障下受到威胁。通常,每个HB电池都增加一个旁路晶闸管,以吸收故障电流,直到交流断路器中断直流故障为止。本文提出了一种针对HB-MMC站的直流故障保护概念,与晶闸管旁路概念相比,其所需的额外硅面积微不足道。在此,典型的HB单元的旁路晶闸管被重新布置,从而形成独立的模块化阴影整流桥(SRB)。利用低损耗开关组件在故障检测之后立即隔离MMC,而SRB通过注入反向dc电压来抑制故障电流。在几个优点中,拟议的装置在稳态下不会产生太大的损失,并且MMC能够在故障发生后短暂地以STATCOM模式运行,以支持交流电网电压。提出的概念可能适用于清除架空HVDC线路上的临时故障。将查看和讨论几种结构上的变化。将解决两级VSC的适用性。通过在直流故障下±200kV HB-MMC站的详细数值模拟,验证了该概念。

著录项

  • 作者

    Gowaid I. A.;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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