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系统并网技术 并网逆变器 微电网 故障诊断 构网型GFM ★ 4.0

基于稳态分量的电流差动保护方法用于接入逆变器型分布式电源的花瓣式配电网

Steady-state-component-based Current Differential Protection for Petal-shaped Distribution Network with Inverter-interfaced Distributed Generators

作者
期刊 中国电机工程学会热电联产
出版日期 2025年9月
卷/期 第 2025 卷 第 5 期
技术分类 系统并网技术
技术标签 并网逆变器 微电网 故障诊断 构网型GFM
相关度评分 ★★★★ 4.0 / 5.0
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中文摘要

针对花瓣式配电网闭环运行及逆变器型分布式电源(IIDG)接入带来的保护难题,提出一种基于故障前后稳态电流幅值与相位的差动保护方案,对高阻故障灵敏、同步要求低,适用于含IIDG的辐射状及花瓣式网络。

English Abstract

The petal-shaped distribution network has high power supply reliability.However,the closed-loop operation mode and the access of inverter-interfaced distributed generators(IIDGs)bring great challenges to the protection schemes.The current amplitude differential protection is an effective means to solve this problem,but the existing criterions rarely consider both sensitivity to high-resistance faults and low requirements for data synchronization.Therefore,the general variation laws of the am-plitude difference between the current steady-state components at both terminals and the phase differences between current fault components at both terminals are revealed.For external faults,the steady-state-component current amplitude difference is around zero and the fault-component current phase difference is around 180°.For internal faults,either the amplitude difference is large or the phase difference is small.Accordingly,a current differential protection scheme based on the pre-fault and post-fault steady-state current is proposed.The amplitude and phase of current at both terminals of the protected line are required in the proposed scheme,which has low requirements for data synchronization.The simulation results show that the proposed protection scheme is not affected by the fault type,position,resistance and capacity of the IIDGs.It can also be applied to radial distribution networks with IIDGs.
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SunView 深度解读

该研究直接支撑阳光电源在构网型(GFM)微电网和新型配电网中的保护适配需求,尤其利好PowerTitan、ST系列PCS及iSolarCloud平台在复杂拓扑下的故障快速识别与孤岛/闭合环网保护策略升级。建议将稳态分量差动判据嵌入PCS嵌入式保护模块,并与iSolarCloud的边缘智能诊断联动,提升含高比例阳光电源逆变器的花瓣网/微电网可靠性。