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拓扑与电路 ★ 5.0

基于逆变器资源建模的新范式用于潮流与短路分析

A New Paradigm in IBR Modeling for Power Flow and Short Circuit Analysis

作者 Zahid Javid · Firdous Ul Nazir · Wentao Zhu · Diptargha Chakravorty · Ahmed Aboushady · Mohamed Galeela
期刊 IEEE Transactions on Power Systems
出版日期 2025年5月
技术分类 拓扑与电路
相关度评分 ★★★★★ 5.0 / 5.0
关键词 逆变器资源 故障穿越策略 潮流求解器 短路求解器 仿真对比
语言:

中文摘要

基于逆变器的电源(IBR)的故障特性与传统同步发电机不同。由于饱和状态,IBR的故障响应是非线性的,并且主要由相关电压源换流器(VSC)的故障穿越(FRT)策略决定。这导致在考虑这些短路特性时,潮流计算的求解时间过长,尤其是当电力系统状态因IBR发电的不确定性而快速变化时。为克服这一问题,本文提出了一种用于以IBR为主的电力系统的相量域稳态(SS)短路(SC)求解器,随后将所开发的IBR模型与一种基于雅可比矩阵的新型潮流(PF)求解器相结合。在这种多阶段潮流求解器中,可以通过考虑电力系统各组件的原始非线性或线性数学表达式对其进行建模。此外,还提出了两种新型FRT策略,以充分利用换流器容量,并符合IEEE - 2800 2022标准和德国电网规范。将结果与IEEE 34测试网络和120 kV美国电力研究院(EPRI)基准系统的电磁暂态(EMT)仿真结果进行了比较。与经典的IBR发电机模型相比,所开发的IBR序域潮流模型表现出更高的准确性。使用所提出的短路求解器计算短路电流的误差小于3%,同时求解速度显著提高了三个数量级。

English Abstract

The fault characteristics of inverter-based resources (IBRs) are different from conventional synchronous generators. The fault response of IBRs is non-linear due to saturation states and mainly determined by fault ride through (FRT) strategies of the associated voltage source converter (VSC). This results in prohibitively large solution times for power flows considering these short circuit characteristics, especially when the power system states change fast due to uncertainty in IBR generations. To overcome this, a phasor-domain steady state (SS) short circuit (SC) solver for IBR dominated power systems is proposed in this paper, and subsequently the developed IBR models are incorporated with a novel Jacobian-based Power Flow (PF) solver. In this multiphase PF solver, any power system components can be modeled by considering their original non-linear or linear mathematical representations. Moreover, two novel FRT strategies are proposed to fully utilize the converter capacity and to comply with IEEE-2800 2022 std and German grid code. The results are compared with the Electromagnetic Transient (EMT) simulation on the IEEE 34 test network and the 120 kV EPRI benchmark system. The developed IBR sequence domain PF model demonstrates more accurate behavior compared to the classical IBR generator model. The error in calculating the short circuit current with the proposed SC solver is less than 3%, while achieving significant speed improvements of three order of magnitudes.
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SunView 深度解读

该IBR统一建模范式对阳光电源ST储能变流器和SG光伏逆变器的电网适应性设计具有重要价值。当前高比例新能源接入场景下,准确预测逆变器短路电流特性(含电流饱和、限幅等非线性行为)是电网规划与保护配置的关键。该模型可直接应用于:1)PowerTitan储能系统并网方案设计,优化短路容量贡献计算;2)SG逆变器GFM/GFL控制策略验证,确保故障穿越性能与潮流计算一致性;3)iSolarCloud平台集成该模型,实现电站级短路分析与保护定值在线校核。建议阳光电源将此建模方法纳入产品仿真工具链,提升逆变器电网兼容性测试精度,支撑构网型控制技术的工程化落地。