网格形成转换器:控制方法和未来趋势概述

Roberto Rosso, Xiongfei Wang, Marco Liserre, Xiaonan Lu, Soenke Engelken
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引用次数: 30

摘要

在过去的十年中,电网形成(GFM)转换器的概念已经被引入到微电网和孤岛电力系统中。最近,这一概念已被提出用于更广泛和相互连接的传输网络,并因此开发了几种控制结构,引起了对这种转换器的特性和功能的讨论。本文概述了GFM变换器的控制方案。通过识别主要子系统的功能,推导出一种通用的控制结构,并对构成控制器的各主要子系统的不同解进行了分析和比较。随后,讨论了关于GFM转换器的几个选定的开放问题和挑战,即角度稳定性,故障穿越(FRT)能力以及孤岛到并网模式之间的转换。最后分享了对挑战和未来趋势的看法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Grid-forming converters: an overview of control approaches and future trends
In the last decade, the concept of grid-forming (GFM) converters has been introduced for microgrids and islanded power systems. Recently, the concept has been proposed for applications in wider and interconnected transmission networks, and several control structures have thus been developed, giving rise to discussions about the characteristics and the functionalities of such converters. In this paper, an overview of control schemes for GFM converters is provided. By identifying the main subsystems in respect to their functionalities, a generalized control structure is derived and different solutions for each of the main subsystems composing the controller are analyzed and compared. Subsequently, several selected open issues and challenges regarding GFM converters, i. e., angle stability, fault ride-through (FRT) capabilities, and transition between islanded to grid-connected modes are discussed. Perspectives on challenges and future trends are lastly shared.
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