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Study on Electrical Transient Protection for ±800kV UHVDC Transmission Lines

机译:±800kV特高压直流输电线路的暂态保护研究

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摘要

The physical boundary of a high voltage direct current (HVDC) transmission line consists of smoothing reactor and DC filter. It has the stop-band characteristic to the high-frequency transient voltage components. The high-frequency voltage signal from the external of DC transmission lines will be weakened when it travels through the smoothing reactor and DC filter. Its power will also be much smaller. The wavelet energy of the high-frequency transient voltage can be gotten through wavelet transformation. The identification criterion of internal and external fault is based on the conspicuous difference of the wavelet energy of high-frequency transient voltage at the point of relay installation. The wavelet transformation modulus maximum of the fault transient voltage is used as the criterion of starting. The fault line is selected based on the polarity wave of the two lines. The simulation is performed considering commutation failure, and the fault distance to the single-ended electrical transient protection. The simulation results show that the protection has absolute selectivity, which can steadily and effectively protect the whole lines.
机译:高压直流(HVDC)传输线的物理边界由平滑电抗器和DC滤波器组成。它对高频瞬态电压分量具有阻带特性。来自直流传输线外部的高频电压信号在通过平滑电抗器和直流滤波器时会减弱。它的力量也会小很多。高频瞬态电压的小波能量可以通过小波变换得到。内部和外部故障的识别标准是基于继电器安装点的高频暂态电压的小波能量的明显差异。故障暂态电压的小波变换模量最大值被用作启动准则。根据两条线的极性波选择故障线。考虑换向故障以及到单端电气暂态保护的故障距离来进行仿真。仿真结果表明,该保护具有绝对的选择性,可以稳定有效地保护整条线路。

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