基于差分振幅变化的微电网集成配电系统先导继电方案

Pub Date : 2024-03-28 DOI:10.1515/ijeeps-2023-0444
B. Deshmukh, Deepak Kumar Lal, S. Biswal, S. Salkuti
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引用次数: 0

摘要

在有源配电网络中加入逆变器互联分布式发电设备(IIDGS)会带来运行和保护方面的限制。这些 DGS 的动态故障行为会导致像径向配电系统一样的变化。因此,传统的保护方案无法区分区内和区外故障。因此,本手稿介绍了一种基于继电器位置电流变化的新型保护方案,用于区分区内和区外故障。这项技术需要使用微型相位测量单元 (µPMU),获得两端和相邻线路的电流信号相位信息。利用电流相位信息,在继电器位置计算出名为内部和外部的两个分量,称为差幅变化指数 (DAVI),用于识别内部和外部故障。使用 EMTDC/PSCAD 对改进的双馈线径向配电网络和改进的 IEEE-13 总线测试系统进行建模,以验证所提出的策略。模拟了大量干扰情况,并从结果中验证了建议方法的可行性和适用性。
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A differential amplitude variation based pilot relaying scheme for microgrid integrated distribution system
The inclusion of inverter-interfaced distributed generating sources (IIDGS) in the active distribution network offers operational and protection constraints. Dynamic fault behavior of these DGS results in changes like the radial distribution systems. Thus, conventional protection schemes fail to discriminate the in-zone and out-zone faults. Hence, this manuscript describes a new protection scheme based on current variation at the relay location used to discriminate the internal and external faults. This technique requires phasor information of the current signals of both ends and adjacent lines using micro phasor measurement units (µPMUs). Using the current phasor information two components named internal and external are computed at the relay location which is called differential amplitude variation index (DAVI), used to identify the internal and external faults. A modified two-feeder radial distribution network and modified IEEE-13 bus test systems are modeled using EMTDC/PSCAD to validate the proposed strategy. Numerous disturbance cases have been simulated and the feasibility and applicability attributes of the suggested method are verified from the results.
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