SPG故障下分布式光伏发电机中性不接地配电系统零模电流分布分析

Jinrui Tang, Wanying Qi, Chen Yang, Zhenhai Li
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引用次数: 0

摘要

当单相接地(SPG)发生故障时,神经不接地配电系统的故障电流由零序参数决定。因此,大多数传统的故障定位方法都是基于故障配电线路上的零模电流提出并实现的。目前,在NUDGs中存在着配电发电机(dg)的高渗透,这些并网逆变器会对零模电流产生影响。本文分析比较了SPG故障情况下分布式光伏发电系统故障点上游和下游的零模电流。构造了带SPG故障的nads等效复合时序网络图,分析了并网逆变器的控制策略。推导出的SPG故障零模电流将在时域和频域的仿真中得到验证。结果表明,零模电流的高频分量在故障点的上游和下游不同,而零模电流的高频分量在故障点的同侧是相同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Zero-Mode Current Distribution Analysis in Neutral Ungrounded Distribution Systems with Distributed Photovoltaic Generators under SPG Faults
The fault current is determined by the zero-sequence parameters in neural ungrounded distribution systems (NUDSs) when a single phase-to-ground (SPG) fault occurred. Hence most traditional fault location methods are proposed and realized based on the zero-mode currents along the faulty distribution line. Nowadays, high penetration of distribution generators (DGs) exists in NUDGs and the zero-mode currents would be influenced by these grid-connected inverters. In this paper, the zero-mode currents located at the upstream side and the downstream side of the fault point are analyzed and compared in NUDSs with distributed photovoltaic generators under SPG faults. The equivalent composite sequence network diagram of NUDSs with SPG faults are constructed, and the control strategy of grid-connected inverter is analyzed. The derived zero-mode currents during SPG faults would be verified in the simulation both in the time domain and frequency domain. The results show that the high-frequency components of zero-mode currents are different at upstream side and downstream side of the fault point, while the high-frequency components of zero-mode currents are the same at the same side of the fault point.
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