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Dynamic performance of series multiterminal HVDC during AC faults at inverter stations

机译:逆变站交流故障期间串联多端高压直流输电的动态性能

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Multiterminal high voltage direct current (MTDC) system can be either a series type or a parallel type. Series MTDC concept is essentially developed from the two-terminal HVDC but with some unique characteristics. In this paper, the AC fault ride through capability of series MTDC is discussed. AC faults at inverter stations, which are connected to electrically separated AC systems, will be highlighted. For an AC fault that happens at one inverter station, the DC voltage of that station may decrease to zero due to commutation failure, while the other inverter stations (the healthy inverters) can still retain power transmission capability to some extent, which will increase the availability of the series MTDC system. However, the current controller design, the voltage dependent current order limiter (VDCOL) logic and the AC system strength will impact on the dynamic performance of series MTDC during AC faults. In this paper, a + 800kV/3.2GW 4-terminal line commutated converter (LCC) based series MTDC model is established to study the dynamic performance when AC faults occur at an inverter. The controller of the series MTDC is designed; the VDCOL logic for series MTDC is developed; simulation results of the dynamic performance during AC faults at the inverter stations are presented.
机译:多端子高压直流(MTDC)系统可以是串联型或并联型。 MTDC系列概念本质上是从两端HVDC发展而来的,但具有一些独特的特性。本文讨论了串联MTDC的交流故障穿越能力。连接到电气隔离的交流系统的逆变器站的交流故障将突出显示。对于一个逆变器站上发生的交流故障,由于换向故障,该站的直流电压可能会降低至零,而其他逆变器站(运行状况良好的逆变器)仍可以在某种程度上保留功率传输能力,这将增加交流功率。 MTDC系列系统的可用性。但是,电流控制器的设计,与电压有关的电流阶跃限制器(VDCOL)逻辑以及交流系统的强度会影响交流故障期间串联MTDC的动态性能。本文建立了一个基于+ 800kV / 3.2GW四端子线路换向变换器(LCC)的串联MTDC模型,以研究逆变器发生AC故障时的动态性能。 MTDC系列控制器的设计;开发了用于MTDC系列的VDCOL逻辑;给出了逆变站交流故障时动态性能的仿真结果。

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