基于小波能量的直流输电线路暂态保护研究

Dongrui Yang, Kunlun Han, Yu Dai
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引用次数: 0

摘要

直流线路故障信号中含有丰富的暂态信息。针对传统直流输电线路单端保护可靠性差、灵敏度不够的问题,提出了一种仅利用暂态电流实现直流输电线路全线快速运行的保护原理。分析了高压直流输电线路及所构建的边界模型对故障暂态信号的影响,利用多分辨率小波对故障电流信号进行分析,得到相应的小波能量。在PSCAD上建立了基于CIGRE模型的双极直流输电系统模型并进行了仿真。结果表明,该方法能准确判断故障区内外的故障,且不受过渡电阻和线路长度的影响,具有较高的准确度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Transient Protection of HVDC Transmission Line Based on Wavelet Energy
The DC line fault signal contains rich transient information. Aiming at the problems of poor reliability and insufficient sensitivity of single-ended protection of traditional DC transmission lines, a protection principle that uses only transient currents to achieve full-line rapid operation of DC transmission lines is proposed. The influence of the HVDC transmission line and the constructed boundary model on the fault transient signal is analyzed, and the multi-resolution wavelet is used to analyze the fault current signal and obtain the corresponding wavelet energy. The bipolar DC transmission system model based on the CIGRE model was built on PSCAD and simulated. The results show that the method can accurately determine the fault within and outside the fault zone, and is not affected by the transition resistance and line length, and has high accuracy.
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