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储能系统技术 储能系统 微电网 ★ 5.0

研究并解决微电网中基于逆变器资源的同步不稳定性

Investigating and addressing synchronous instabilities in inverter-based resources within microgrids

作者 T.Ide · Y.Hirase · E.Yoshimur · Y.Umezu · S.Bando · K.Sugimoto
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 377 卷
技术分类 储能系统技术
技术标签 储能系统 微电网
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Identification of control parameters and loops causing SSOs in GFM and GFL
语言:

中文摘要

摘要 随着可再生能源在电力系统中的快速集成,基于逆变器的资源(IBR)之间的功率振荡已成为一个突出问题。为解决这一问题,有必要识别电网的不稳定极点,并调整相关参数。然而,在包含基于逆变器资源的微电网(MG)中,由于功率-频率下垂特性,系统频率可能显著偏离额定值。当考虑逆变器控制和线路动态特性时,系统复杂性进一步增加。因此,传统的特征值分析方法——通常假设系统频率恒定或采用简化模型——可能不再有效。本研究建立了一个综合的数学模型,该模型包含了仅由构网型(GFM)和跟网型(GFL)逆变器组成的微电网的输电线路及逆变器控制系统。通过分析,识别出各逆变器控制中对特征值敏感度较高的参数,作为IBR之间功率振荡的来源。此外,还识别出由这些参数构成的相互干扰环路,以阐明IBR之间相互干扰的机理。研究进一步探讨了通过优先调节IBR系统中的关键参数来抑制IBR间功率振荡的可能性,并通过数值分析与实验验证了该方法的有效性。所提出的方法可应用于实际事件的分析与处理,例如美国夏威夷考艾岛发生的功率波动事件。

English Abstract

Abstract With the rapid integration of renewable energy into the power grid, power oscillations between inverter-based resources (IBRs) have become a significant issue. To address this problem, it is necessary to identify the unstable poles of the grid and adjust the contributing parameters. However, in microgrids (MGs) with IBRs, the system frequency can vary significantly from the nominal value due to power-frequency droop characteristics. The system complexity increases further when inverter control and line dynamics are incorporated. Therefore, conventional eigenvalue analysis methods, which often assume a fixed system frequency or use a simplified model, may not be effective. In this study, a comprehensive mathematical model, including transmission lines and inverter controls of an MG consisting only of grid-forming (GFM) and grid-following (GFL) inverters, was developed. Parameters with high eigenvalue sensitivity in each inverter control were identified as sources of power oscillation between IBRs. In addition, a mutual interference loop composed of these parameters was identified to clarify the mechanism of mutual interference among IBRs. The study also explored the possibility of suppressing power oscillations among IBRs by preferentially adjusting parameters in IBR systems, and the effect was confirmed through numerical analysis and experiments. The proposed method can be applied to the analysis and addressing of actual events, such as the power fluctuation event that occurred on Kauai Island, Hawaii.
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SunView 深度解读

该研究针对逆变器型电源同步振荡问题,对阳光电源储能系统(ST系列PCS、PowerTitan)和微电网解决方案具有重要价值。文中提出的GFM/GFL混合微电网建模方法可直接应用于优化公司VSG控制策略,通过敏感参数识别和互扰环路分析,可提升多机并联稳定性。建议将该方法集成到iSolarCloud平台,实现储能电站振荡预警与参数自适应调节,特别适用于海岛微电网等弱电网场景的稳定性提升,增强产品在复杂工况下的竞争力。