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储能系统技术 多电平 ★ 5.0

一种模块化多电平变换器的接地故障定位与严重程度估计方法

A Ground Fault Location and Severity Estimation Method for Modular Multilevel Converters

作者 José Manuel Guerrero · Aitor Blázquez-Campanón · Salvatore D'Arco · Miguel Jiménez Carrizosa · Kumar Mahtani · Carlos A. Platero
期刊 IEEE Transactions on Industry Applications
出版日期 2025年2月
技术分类 储能系统技术
技术标签 多电平
相关度评分 ★★★★★ 5.0 / 5.0
关键词 模块化多电平变换器 接地故障 故障定位方法 仿真 实验测试
语言:

中文摘要

高效输电系统的需求、可再生能源发电的兴起以及电池储能系统的发展推动了模块化多电平换流器(MMC)的应用,与传统换流器相比,MMC具有更优的性能。然而,MMC电气故障的诊断更具挑战性,因为故障回路涉及更多的元件。特别是,接地故障(GF)是电力系统中最常见的故障类型,但对于交直流换流器而言,接地故障诊断尚未得到广泛研究,大多数工业继电器在这种情况下会失效。本文提出了一种基于在直流中点或交流中性点设置高值接地电阻的MMC接地故障定位方法。通过测量接地电阻两端的电压并进行频率分析,可以准确地确定故障位置和故障电阻。该方法的新颖之处在于它能够定位MMC交流侧、直流侧或故障子模块(SM)内的接地故障。在半桥三相MMC换流器上进行了大量仿真,取得了优异的结果。此外,在一台60 kVA、12电平的全桥三相MMC上进行了实验测试,验证了该方法的有效性。

English Abstract

The need of efficient electric transmission systems, the rise of renewable energy production, and the development of battery storage systems have driven the adoption of Modular Multilevel Converters (MMC), which offer better performance than conventional converters. However, the diagnosis of electrical faults in MMC is more challenging because more components are involved in the fault circuit. Particularly, ground faults (GF) are the most common type of faults in power systems, yet their diagnosis has not been extensively studied for AC-DC converters, where most industrial relays fail. This paper proposes a GF location method for MMCs based on the use of a high-value grounding resistor placed at the DC midpoint or AC neutral point. By measuring the voltage between its terminals and conducting frequency analysis, the fault position and fault resistance can be accurately located. The novelty of this method lies in its ability to locate the GFs on the AC side, DC side, or within a faulty submodule (SM) of the MMC. Numerous simulations were performed on a half-bridge three-phase MMC converter, yielding excellent results. Additionally, experimental tests were performed on a 60 kVA 12-level full-bridge three-phase MMC, validating the method.
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SunView 深度解读

该MMC接地故障定位与严重程度估计技术对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。MMC拓扑在大容量储能PCS中广泛应用,但接地故障易导致子模块电容过压、桥臂电流不平衡等问题。该方法通过桥臂电流与子模块电压暂态特征提取实现故障精确定位,可集成至阳光电源iSolarCloud智能运维平台,实现储能系统的在线故障监测与预测性维护。故障严重程度评估功能可优化保护策略分级响应,避免轻微故障导致系统误停机,提升ST储能变流器可用率。该技术还可扩展应用于SG系列三电平光伏逆变器的接地故障诊断,增强系统安全性与可靠性。