← 返回
控制与算法 构网型GFM ★ 5.0

电流限幅型构网逆变器的统一建模用于大信号分析

Unified Model of Current-Limiting Grid-Forming Inverters for Large-Signal Analysis

作者 Nathan Baeckeland · Bowen Yang · Gab-Su Seo
期刊 IEEE Transactions on Power Systems
出版日期 2025年7月
技术分类 控制与算法
技术标签 构网型GFM
相关度评分 ★★★★★ 5.0 / 5.0
关键词 并网型逆变器 电流限制器 大信号不稳定 统一模型 系统行为
语言:

中文摘要

摘要:构网型(GFM)逆变器几乎无法承受任何过载情况。因此,GFM 逆变器的控制系统中需要配备电流限制器,以避免在过载或电网扰动期间造成硬件损坏。然而,当电流限制器启动以保护逆变器时,它会动态改变逆变器的输出阻抗,这可能会显著影响系统在应对大扰动时的性能。例如,当电流限制器削减输出功率时,GFM 逆变器的主控制器(用于生成电压和相角参考值)容易与电网失去同步。这可能会导致电网出现大信号不稳定现象。本文提出了一种统一的 GFM 电流限制器模型,旨在更深入地理解 GFM 逆变器电流限制对大信号不稳定及其他系统性能的影响。该统一模型涵盖了多种已知的 GFM 逆变器电流限制器,并揭示了以限制器相角为特征的大信号等效性。我们利用该统一模型深入剖析了导致 GFM 逆变器驱动电网出现大信号不稳定的驱动因素。此外,本文还表明,该统一模型可作为评估电网扰动期间各种 GFM 电流限制器设计对系统层面影响的工具。通过数值、解析、电磁暂态模型以及硬件实验装置,对该统一模型的有效性进行了评估。

English Abstract

Grid-forming (GFM) inverters can hardly withstand any overloading. As such, GFM inverters need a current limiter in their control system to avoid hardware damage during overloading or grid disturbances. When the current limiter is engaged for inverter protection, however, it dynamically changes the inverter output impedance, which can significantly affect the system behavior against large disturbances. For example, when the current limiter curtails the output power, the primary controller of the GFM inverter—which generates the voltage and angle reference—is prone to losing synchronization with the grid. This can cause large-signal instability in the network. This paper presents a unified GFM current-limiter model to gain a deeper understanding of the impact of the GFM inverter current limiting on large-signal instability and other system behaviors. The unified model captures several well-known current limiters for GFM inverters, and it reveals their large-signal equivalence characterized by the limiter angle. We use the unified model to present in-depth insights into the driving forces that cause large-signal instability in GFM inverter-driven grids. Further, this paper illustrates that the unified model can be used as a tool for assessing the system-level impacts of various GFM current-limiter designs during grid disturbances. Using numerical, analytical, electromagnetic transient models, and a hardware setup, the validity of the unified model is evaluated.
S

SunView 深度解读

该电流限幅GFM逆变器统一建模技术对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。当前阳光电源构网型储能系统在电网故障或负荷突变时需快速响应,电流限幅环节的引入会改变系统动态特性。该研究提出的相量域非线性模型能准确描述限幅期间机电-电磁耦合动态,可直接应用于ST储能变流器的GFM控制策略优化,提升故障穿越能力和多机并联稳定性评估精度。该模型支持多种控制策略的统一分析框架,有助于阳光电源在VSG、下垂控制等多种GFM方案间快速切换验证,缩短产品开发周期,增强大型储能电站的大信号稳定性保障能力。