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光伏发电技术 储能系统 ★ 5.0

基于电磁暂态仿真分析含逆变型电源的扰动事件

Analysis of a Disturbance Event With Inverter-Based Resources Using EMT Simulations

作者 Suman Debnath · Phani Marthi · Jongchan Choi · Sayan Samanta · Nilanjan Ray Chaudhuri · Andrew Arana
期刊 IEEE Transactions on Sustainable Energy
出版日期 2025年4月
技术分类 光伏发电技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 逆变器资源 暂态稳定性分析 电磁暂态仿真 光伏电站 灵敏度分析
语言:

中文摘要

随着逆变型电源(IBR)渗透率的提高,亟需更先进的扰动分析与规划方法。传统的相量域暂态稳定分析难以准确刻画IBR在故障期间的动态特性。本文针对2018年安吉利斯森林扰动事件,采用高精度电磁暂态(EMT)仿真,构建了电网及受影响光伏电站的详细模型。文中阐述了从传统相量域数据和实测数据建立EMT模型的方法,并复现了光伏电站在故障期间的响应行为,开展了敏感性分析。通过改变光伏电站内部元件及电网参数,评估其对故障响应的影响,揭示了关键影响因素,为系统规划者在高比例IBR接入背景下保障电网可靠性提供了分析依据。

English Abstract

Increasing penetration of inverter-based resources (IBRs) necessitates newer methods of planning and analysis of disturbances. The existing phasor-domain transient stability (TS) analysis may not capture the dynamics of IBRs during fault events. In this paper, electromagnetic transient (EMT) simulations using high-fidelity detailed model of power grid and one of the affected photovoltaic (PV) plants during the Angeles Forest disturbance in 2018 are performed. In these simulations, the processes to develop EMT models of power grid from traditional phasor-domain TS data and PV plant from collected data are described. Thereafter, using these simulations, the response of the PV plant during the fault event in 2018 is replicated and a sensitivity analysis is performed. The sensitivity analysis consists of making changes to the components within the PV plant and in the power grid to evaluate the impact they have on the response observed by the PV plant during the fault event. This analysis provides an understanding of the components that impact the operation of a PV plant during fault events and provide guidance to system planners on the studies that need to be performed to maintain a reliable power grid as new IBR plants are integrated.
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SunView 深度解读

该EMT仿真分析方法对阳光电源SG系列光伏逆变器和ST储能变流器的故障穿越能力优化具有重要价值。文中揭示的IBR故障响应特性可直接应用于:1)优化SG系列逆变器的LVRT/HVRT控制策略,提升电网扰动下的动态响应性能;2)改进ST储能系统的GFM/GFL控制算法,增强高IBR渗透率场景下的电网支撑能力;3)完善iSolarCloud平台的故障诊断模型,基于EMT级精度实现预测性维护。该研究提出的从相量域到EMT建模方法,可指导阳光电源建立更精准的产品级仿真测试平台,为PowerTitan等大型储能系统在复杂电网环境下的可靠性设计提供分析工具,助力系统规划与并网认证。