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A Fault Tracing Method of Successive Commutation Failure for Multi-Infeed DC System

机译:多馈直流系统连续换相失败的故障追踪方法

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In order to effectively improve the transmission efficiency of energy between regions, line-commutated converter-based high-voltage direct current (LCC-HVDC) has been widely utilized for its advantages in large capacity long-distance transmission. With multiple DC systems connected to the same AC power grid, a complex multi-infeed DC (MIDC) system is formed. Compared with the traditional single infeed DC system, MIDC system has the mutual coupling between DC systems. Therefore, commutation failure (CF) at one DC system may cause successive CF of adjacent DC systems, leading to a more serious regional power loss.In order to evaluate the influence of the fault DC system by other DC systems, a fault tracing method of successive CF for MIDC system is proposed in this paper. In this method, the influence of contact impedance on the probability of successive CF can be quantitatively calculated, and the dominant DC that causes the successive CF can be obtained intuitively by comparing weight factors. Validity of this proposed method is demonstrated by building a test system in PSCAD/EMTDC.
机译:为了有效地提高区域之间的能量传输效率,基于线路换向的基于转换器的高压直流电(LCC-HVDC)在大容量长距离传输中具有优势。通过将多个DC系统连接到同一AC电网,形成了一个复杂的多馈DC(MIDC)系统。与传统的单馈直流系统相比,MIDC系统具有直流系统之间的相互耦合。因此,一个直流系统的换向故障(CF)可能会导致相邻直流系统的连续CF,从而导致更严重的区域电力损耗。为了评估其他直流系统对故障直流系统的影响,一种故障跟踪方法是本文提出了用于MIDC系统的连续CF。通过这种方法,可以定量计算接触阻抗对连续CF概率的影响,并且通过比较权重因子可以直观地获得引起连续CF的主导DC。通过在PSCAD / EMTDC中构建测试系统证明了该方法的有效性。

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