Novel Fault Protection Method for Flexible DC Power Systems

Energies Pub Date : 2024-07-13 DOI:10.3390/en17143446
Genqi Chen, Qing Duan, Caihong Zhao, Haoqing Wang, Guanglin Sha, Jian Gao, Yong Li, Shuiliang Zhou
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引用次数: 0

Abstract

A fault protection method is proposed for flexible direct-current (DC) power systems based on the cosine similarity of currents in current-limiting reactors. The typical characteristics of external and internal faults in a flexible DC power system were analyzed. The principles of cosine similarity and the fault current characteristics of current-limiting reactors were used to distinguish between internal and external faults. The ratio of the average positive and negative voltages of the current-limiting reactor was then used to distinguish the fault types and fault line. Finally, a simulation model of a circular flexible DC power system was constructed using MATLAB/Simulink software (2018b). The simulation results show that the proposed protection scheme can quickly and accurately identify the location and type of faults, and has a strong ability to withstand fault resistance and is less affected by distributed capacitance, noise, and communication delay.
柔性直流电源系统的新型故障保护方法
基于限流电抗器中电流的余弦相似性,为柔性直流(DC)电力系统提出了一种故障保护方法。分析了柔性直流电源系统中外部和内部故障的典型特征。利用余弦相似性原理和限流电抗器的故障电流特性来区分内部故障和外部故障。然后,利用限流电抗器平均正负电压之比来区分故障类型和故障线路。最后,使用 MATLAB/Simulink 软件(2018b)构建了环形柔性直流电力系统的仿真模型。仿真结果表明,所提出的保护方案能够快速准确地识别故障位置和类型,具有较强的抗故障能力,且受分布电容、噪声和通信延迟的影响较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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