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储能系统技术 储能系统 构网型GFM 多物理场耦合 ★ 5.0

满足多目标约束的构网型变流器低电压穿越策略

Fault Ride-Through Strategy for Grid-Forming Converters Satisfying Multi-Objective Constraints

作者 Mingkun Gao · Yandong Chen · Cong Luo · Zhiwei Xie · Zili Wang · Zhijie Lian
期刊 IEEE Transactions on Sustainable Energy
出版日期 2025年7月
技术分类 储能系统技术
技术标签 储能系统 构网型GFM 多物理场耦合
相关度评分 ★★★★★ 5.0 / 5.0
关键词 故障穿越 暂态同步稳定性 无功功率支撑 自适应策略 并网变流器
语言:

中文摘要

暂态同步稳定性(TSS)、电流限幅与无功功率支撑(RPS)是构网型变流器(GFMC)故障穿越(FRT)需满足的关键目标。然而,三者间复杂的耦合关系及GFMC作为电压源无法直接控制电流的特性,给FRT带来显著挑战。本文首先分析三目标间的耦合关系,揭示相电流、无功电流与故障涌流的形成机理与控制机制;据此提出一种自适应FRT策略,通过协同调节有功功率、电压参考值及虚拟电阻,实现多目标约束下的可靠穿越,即使电压跌落至零亦可有效运行,且易于实现。仿真与实验验证了该策略在TSS与RPS性能上的优越性。

English Abstract

Transient synchronization stability (TSS), current limitation and reactive power support (RPS) are the key objec-tives for fault ride-through (FRT) that grid-forming converters (GFMCs) must satisfy. However, the complex coupling restraints among these objectives, along with the fact that GFMC cannot directly control current due to its voltage-source nature, present significant challenges for FRT. To address these issues, this paper first analyzes the coupling relationships among the three object-ives, and reveals the formations and control mechanisms of phase current, reactive current, and fault inrush current in GFMC. Inspired these insights, an adaptive FRT strategy is designed by cooperatively adjusting the active power and voltage references, as well as the adaptive virtual resistance, which satisfies FRT multi-objective constraints even if the voltage sags to 0. And it is straightforward to implement. Furthermore, the proposed FRT strategy is shown to exhibit superior TSS and RPS performance, as demonstrated through region of attraction and voltage phase portraits. Finally, simulation and experiment results validate the effectiveness and superiority of the proposed FRT strategy.
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SunView 深度解读

该多目标约束FRT策略对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。当前构网型控制面临暂态稳定、电流限幅与无功支撑三重约束的耦合难题,该研究提出的自适应协同调节方案(有功功率-电压参考-虚拟电阻)可直接应用于ST储能变流器的GFM控制算法优化,提升零电压穿越能力。特别是对弱电网场景下的大型储能电站,该策略能在满足电网规范(如GB/T 36547)的同时保障变流器安全运行,为阳光电源构网型产品在高比例新能源电网中的可靠并网提供技术支撑,增强市场竞争力。