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Waveform Difference Feature-Based Protection Scheme for Islanded Microgrids

机译:基于波形差异特征的孤岛微电网的保护方案

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摘要

Unlike conventional synchronous generators, the fault characteristics of inverter-based distributed generators (IBDGs) are mainly determined by the inverter control strategies. Their limited fault current contributions make the protection design of islanded microgrids (MGs) become a major challenge. This article focuses on the fault characteristics and protection scheme design of islanded MGs. First, the phase differences between the positive-sequence current fault components (PSC-FCs) at both terminals of fault line are analyzed under different network topologies and fault severities. It points out the phase characteristic differences between internal and external faults. Then, on basis of this to overcome the problems of the phase measurement error and protection setting, a waveform difference feature-based protection scheme is proposed. The protection criteria are formulated using the first peak sign and time information of PSC-FCs between both terminals of line, which are extracted by the mathematical morphology (MM) technology. Only relatively low bandwidth communication is required to achieve accurate fault identification. Finally, the simulation results on a 10-kV islanded MG model demonstrate that the proposed scheme can identify internal faults reliably in both looped and radial islanded MGs under different fault resistances and measurement noises.
机译:与传统的同步发电机不同,基于逆变器的分布式发电机(IBDG)的故障特性主要由逆变器控制策略决定。它们有限的故障当前贡献使岛屿微电网(MGS)的保护设计成为一项重大挑战。本文侧重于岛屿MGS的故障特性和保护方案设计。首先,在不同的网络拓扑和故障严重程度下分析故障线两端的正序电流故障分量(PSC-FCS)之间的相位差。它指出了内部和外部故障之间的相位特征差异。然后,根据这克服相位测量误差和保护设置的问题,提出了一种基于波形差异特征的保护方案。使用PSC-FCS之间的第一个峰值符号和时间信息来配制保护标准,这些终端在线路上通过数学形态(MM)技术提取。只需要相对低的带宽通信来实现准确的故障识别。最后,在10-kV岛MG模型上的仿真结果表明,该方案可以在不同故障电阻和测量噪声下循环和径向岛MGS可靠地识别内部故障。

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