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A new protection principle for HVDC transmission lines based on fault component of voltage and current

机译:基于电压和电流故障分量的高压直流输电线路保护新原理

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The paper presents a new protection principle for double circuit transmission lines of bipolar HVDC transmission system. By comparing the magnitudes of fault component of voltages on the bipolar lines, the faulty line can be identified. By comparing the polarities of fault component of currents at the ends of the faulty line, the internal faults and external faults can be differentiated. The principle can be applied for bipolar neutral grounding at both ends and monopolar metallic return mode operation. Different conditions are considered to research the operating characteristic of the proposed protection criterions, including short circuit faults on AC-side bus, commutation failure, lightning stroke and short circuit faults on dc transmission lines with different positions and transition resistances. Simulations results show the selectivity, speed, sensitivity and reliability of the protection principle, and the sampling frequency requirement of measuring instruments in the protection scheme can be 10∼ 100 kHz.
机译:本文提出了一种双极高压直流输电系统双回线保护的新原理。通过比较双极线上的电压故障分量的大小,可以识别出故障线。通过比较故障线路末端电流故障分量的极性,可以区分内部故障和外部故障。该原理可应用于两端的双极中性点接地和单极金属返回模式操作。考虑不同的条件来研究所提出的保护标准的工作特性,包括交流侧母线上的短路故障,换向故障,雷击以及具有不同位置和过渡电阻的直流输电线路的短路故障。仿真结果表明了该保护原理的选择性,速度,灵敏度和可靠性,在该保护方案中测量仪器的采样频率要求可以为10〜100 kHz。

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