基于动态时间规整算法的MMC-HVDC换流站可再生能源输电线路差动保护

Xiang Ren, Tianxiao Huang, Guangming Xin, Xiaofei Wang, Lu Zhang, Miao Liu
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引用次数: 1

摘要

输电线路两侧有电控电源,连接可再生能源(RES)站和模块化多级变换器高压直流(MMC-HVDC)换流站。该控制策略影响了短路电流的故障特性,使其具有限幅、相角控制的特点。原线路差动保护的灵敏度性能下降,保护的适应性有待进一步研究。针对这一问题,分析了RES站和MMC-HVDC换流站馈电短路电流的故障特征。提出了一种基于动态时间规整的差动保护方法。距离矩阵是通过计算电流的欧氏距离来构造的。然后计算出用于表征电流波形相似度的最短累积距离,并基于波形相似度构建保护判据。通过仿真和计算,验证了所提保护方法的有效性,表明该保护算法能够灵敏地识别内部和外部故障。
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A New Differential Protection for Transmission Lines Connecting Renewable Energy Sources to MMC-HVDC Converter Stations Based on Dynamic Time Warping Algorithm
There are electronic controlled power sources on both sides of the transmission line, which connects the renewable energy sources (RES) station and the modular multilevel converter high-voltage DC (MMC-HVDC) converter station. The control strategy affects the fault characteristics of the short-circuit current, making it amplitude-limited and phase-angle-controlled. The sensitivity performance of the original line differential protection decreases, and the adaptability of the protection needs to be further studied. Aiming at this problem, the fault characteristics of short-circuit current fed from the RES station and the MMC-HVDC converter station are both analyzed. And a differential protection method based on dynamic time warping is proposed. The distance matrix is constructed by calculating the Euclidean distance of the currents. Then calculate the shortest cumulative distance which is used to characterize the waveform similarity of the current and construct protection criteria based on waveform similarity. Through simulation and calculation, the effectiveness of the proposed protection method is verified, showing that the protection algorithm can sensitively identify internal and external faults.
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