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构网型与跟网型逆变器的协同控制及其动态性能增强

Coordinated Control of Grid‐Forming and Grid‐Following Inverters With Enhanced Dynamic Performance

作者 Lei Wang · Shijie Yang · Zelong Zhang · Wenzhuo Shi · Aili Fan · Yuhua Du · Yigeng Huangfu
期刊 IET Power Electronics
出版日期 2026年2月
卷/期 第 19 卷 第 1 期
技术分类 控制与算法
技术标签 构网型GFM 跟网型GFL 微电网 下垂控制
相关度评分 ★★★★★ 5.0 / 5.0
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中文摘要

本文提出一种统一协同控制框架,实现孤岛微电网中构网型(GFM)与跟网型(GFL)逆变器的分布式二次控制,在无需精确参数和额外通信下,实现频率/电压恢复及有功/无功功率按比例分配,并通过Lyapunov理论证明稳定性,硬件在环验证了其优异动态响应能力。

English Abstract

ABSTRACT While most grid‐tied inverters are grid‐forming (GFL), it is foreseeable from the current development of grid‐following (GFM) techniques that the modern grid will face a mix of both GFL and GFM inverters. This work addresses coordinated secondary control of an islanded microgrid that contain both GFM and GFL inverters; such a system possesses complex dynamics due to its different operating characteristics. A unified control framework is developed that coordinates both GFM and GFL, and a set of distributed secondary control methods is proposed to provide secondary restoration of the system's operating frequency and voltage and to enforce proportional sharing of active and reactive power across all GFM and GFL. Compared with the conventional control that focuses on the steady state, the proposed method explicitly bounds over the dynamics of power fluctuations induced by large load disturbance, which resulted in enhanced system dynamic performance. The scheme does not require precise system parameters, and could be applied to a wide range of grid topologies without additional communication needs. The Lyapunov stability of the controller has been proved, and its performance has been extensively analysed in both steady and dynamic states. A controller‐hardware‐in‐the‐loop testbed for an islanded microgrid with two GFL and two GFM inverters have been developed and the performance of the proposed coordinated control has been validated under various scenarios.
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SunView 深度解读

该研究高度契合阳光电源在构网型储能系统(如PowerTitan、ST系列PCS)及光储融合微电网解决方案中的技术演进需求。阳光电源正加速推进GFM逆变器在弱电网、黑启动及独立微网场景的应用,本文提出的无通信、参数鲁棒的协同控制方法可直接赋能ST系列PCS与组串式逆变器的混合运行控制策略,提升光储系统在离网/孤岛模式下的动态支撑能力与多机协同可靠性,建议在iSolarCloud智能平台中集成该算法模块,支撑海外微电网项目交付。