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光伏发电技术 储能系统 ★ 4.0

地磁扰动下电磁暂态视角中的级联故障导致电压崩溃

Voltage Collapse Owing to Cascading Failures Under Geomagnetic Disturbances in Electromagnetic Transient Perspective

作者 Wen-Kai Xin · Chun-Ming Liu · Afshin Rezaei-Zare · Ze-Zhong Wang
期刊 IEEE Transactions on Power Systems
出版日期 2025年1月
技术分类 光伏发电技术
技术标签 储能系统
相关度评分 ★★★★ 4.0 / 5.0
关键词 地磁扰动 级联故障 电压崩溃 电网 无功功率
语言:

中文摘要

强太阳活动引发的严重地磁扰动(GMDs)会导致电网变压器产生大量无功功率损耗和谐波电流,后者易引发电容补偿装置继电保护误动作,造成系统无功不足与局部失衡,进而诱发级联故障甚至电压崩溃,导致大范围停电。本文分析了级联故障的机理与触发条件,提出了敏感设备作用下的电压崩溃演化过程,并基于四站八节点及IEEE 118-GMD系统的电磁暂态仿真验证了理论正确性。通过仿真结果总结了地磁暴期间级联故障的发生模式,识别了电压崩溃的触发条件与影响因素,为准确快速识别风险节点、及时采取防灾措施提供了指导。

English Abstract

Under severe geomagnetic disturbances (GMDs) caused by intense solar activity, transformers in the power grid will generate groups of massive reactive power losses and harmonic currents. At the same time, harmonic currents can readily cause the mal-operation of relay protection device for reactive power compensation, which puts the power grid in a state of insufficient reactive power, leading to local reactive power imbalances. This may cause cascading failures and even voltage collapse, resulting in a large-scale power blackout. This article analyzes the mechanism and triggering conditions of cascading failures, proposes the development process of voltage collapse caused by sensitive equipment in the power grid. Based on this, the electromagnetic transient simulation of a four-station eight-node and IEEE 118-GMD grid was used to simulate the voltage collapse owing to cascading failures under GMDs, verifying the correctness of the proposed theory. Further, the occurrence patterns of cascading failures in the power grid during geomagnetic storms were summarized based on the simulation result, and the triggering conditions and influencing factors leading to voltage collapse were identified. This provides guidance for accurately and quickly identifying risk nodes during geomagnetic storms invasion to permit timely disaster prevention measures to avoid voltage collapse under GMDs.
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SunView 深度解读

该研究对阳光电源电网级储能系统(PowerTitan/ST系列)具有重要防护价值。地磁扰动引发的电压崩溃机理分析可指导储能变流器开发快速无功支撑策略:在GMD事件中,储能系统可通过构网型GFM控制快速注入无功功率,补偿变压器损耗,防止电压崩溃级联扩散。建议在iSolarCloud平台集成地磁扰动监测模块,结合本文识别的触发条件与风险节点算法,实现预测性防御。对于大型光伏电站(SG系列逆变器),可开发谐波抑制与动态无功补偿协同控制策略,避免电容补偿装置误动作,提升电网极端事件下的韧性与可靠性。