Total Harmonic Distortion based Fault Detection in Islanded DC Microgrid

S. K. Prince, Shaik Affijulla, G. Panda
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引用次数: 3

Abstract

DC microgrid is a part of the grid that includes distributed energy resources (DERs), storage equipment, and local loads. In a DC microgrid, protection, and fault analysis is a challenging task, with a rapid increase of current during a fault. Faults can occur in the grid-connected and island modes of the DC microgrid, while in island mode the fault current is reduced by 2–3 times. Thus, in this paper fault detection techniques are developed based on the total harmonic distortion of the voltage and current samples in island mode. For the validation of the proposed method, a pole-ground fault is performed in the six-lines of the DC microgrid, and then the total harmonic distortion for the individual line is assessed. This 6-bus DC microgrid is simulated in PSS®SINCAL software, and the total harmonic distortion is analyzed in Matlab/Simulink. Finally, the effectiveness of the system has been investigated under pole-ground fault in three different line-segments.
基于总谐波畸变的孤岛直流微电网故障检测
直流微电网是包括分布式能源、存储设备和本地负载在内的电网的一部分。在直流微电网中,随着故障发生时电流的迅速增大,保护和故障分析是一项具有挑战性的任务。直流微电网并网和孤岛模式均可发生故障,孤岛模式故障电流减小2-3倍。因此,本文提出了基于孤岛模式下电压和电流样本的总谐波畸变的故障检测技术。为了验证该方法的有效性,在直流微电网的6条线路中进行了极地故障分析,并对每条线路的总谐波畸变进行了评估。在PSS®SINCAL软件中对该6母线直流微电网进行了仿真,并在Matlab/Simulink中对总谐波失真进行了分析。最后,在三种不同线段的极地故障情况下,研究了该系统的有效性。
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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