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基于构网型逆变器的可再生能源动态演化与稳定性分析:考虑重复及连续电流饱和

Dynamic Evolution and Stability Analysis of GFM-Based Renewable Energy Resources Considering Repeated & Continuous Current Saturation

作者 Ruiyuan Zeng · Ruisheng Diao · Fangyuan Sun · Baorong Zhou · Junjie Li
期刊 IEEE Transactions on Sustainable Energy
出版日期 2025年7月
卷/期 第 17 卷 第 1 期
技术分类 控制与算法
技术标签 构网型GFM 下垂控制 模型预测控制MPC 虚拟同步机VSG
相关度评分 ★★★★★ 5.0 / 5.0
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中文摘要

本文揭示构网型可再生能源(GFM-RES)在虚拟功角区域运行时因电流饱和切换条件不一致引发的重复/连续电流饱和(R-CS/C-CS)稳定性问题,提出R&C-CS判据与基于去饱和区的DRB控制原理,并设计S&D-DC策略。电磁暂态仿真验证其有效性。

English Abstract

The current saturation (CS) strategy of grid-forming renewable energy sources (GFM-RESs) is designed to protect the device from overcurrent damages. However, the potential switching processes of control strategies trigger new stability issues. It is revealed that two emerging stability issues, i.e., repeated current saturation (R-CS) and continuous current saturation (C-CS) governed by the inherent inconsistency of switching conditions, will occur when the system operates into the corresponding virtual power angle (VPA) region. This paper adopts the hybrid system theory to analyze such stability issues by deriving the necessary and sufficient switching conditions of current saturation and desaturation. During R-CS, the GFM-RES externally behaves as an abnormal current source, triggering adverse high-frequency oscillations. When subject to C-CS, the system will suffer from persistent overvoltage issues and cannot return to its initial operating point. To identify the stability risks of these two issues and offer guidance for GFM-RES’s controller design, a novel R&C-CS criterion, along with a generic desaturation region-based (DRB) principle, is proposed. Meanwhile, a switching condition and dynamic characteristic decoupling control (S&D-DC) is developed based on the DRB principle to prevent the R&C-CS issues. High-fidelity electromagnetic transient simulations conducted on both single-machine and multi-machine systems validate the theoretical derivations and proposed control strategy.
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SunView 深度解读

该文直击阳光电源ST系列PCS、PowerTitan及新一代组串式光伏逆变器在构网型(GFM)模式下高穿透率并网的核心挑战——电流饱和引发的高频振荡与持续过压失稳。研究成果可直接指导阳光电源GFM控制器中饱和保护逻辑优化,提升PowerTitan在黑启动、弱电网支撑等场景下的鲁棒性;建议在iSolarCloud平台中嵌入R&C-CS在线监测模块,并在下一代1500V组串式逆变器固件中集成DRB-S&D-DC算法。