电力电子主导系统的小信号稳定性评估建模和分析方法

IF 5.4 3区 工程技术 Q2 ENERGY & FUELS
M. Cheah‐Mane, A. Egea-Àlvarez, E. Prieto‐Araujo, H. Mehrjerdi, O. Gomis‐Bellmunt, Lie Xu
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引用次数: 1

摘要

由于电力电子转换器的普及,电力网络的稳定性、运行和控制受到了挑战。由于功率变换器控制器与其他电力网络元件(包括其他功率变换器)的相互作用,出现了新的不稳定现象。小信号工具已被证明能有效识别和缓解稳定性问题,但其开发仍在进行中。本文介绍了转换器主导网络的小信号建模和稳定性评估的最新技术。综述了转换器和其他电力系统组件的建模,以及传统和现代电力电子系统中最常见的小信号分析技术。介绍了两个案例研究,以举例说明建模和稳定性分析,采用了本文中提出的一些技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Modeling and analysis approaches for small‐signal stability assessment of power‐electronic‐dominated systems

Modeling and analysis approaches for small‐signal stability assessment of power‐electronic‐dominated systems
The stability, operation, and control of power networks have been challenged due to the increased penetration of power electronic converters. New instability phenomena have appeared due to the interaction of the power converter controllers with other power network elements, including other power converters. Small‐signal tools have been proved effective to identify and mitigate stability issues but their development is still ongoing. This article presents the state of the art on small‐signal modeling and stability assessment of converter‐dominated networks. The modeling of converters and other power system components is reviewed, as well as the most common small‐signal analysis techniques employed in conventional and modern power systems with power electronics. Two case studies are introduced to exemplify the modeling and stability analysis, employing some of the techniques presented in the article.
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来源期刊
CiteScore
11.70
自引率
3.30%
发文量
42
期刊介绍: Wiley Interdisciplinary Reviews: Energy and Environmentis a new type of review journal covering all aspects of energy technology, security and environmental impact. Energy is one of the most critical resources for the welfare and prosperity of society. It also causes adverse environmental and societal effects, notably climate change which is the severest global problem in the modern age. Finding satisfactory solutions to the challenges ahead will need a linking of energy technology innovations, security, energy poverty, and environmental and climate impacts. The broad scope of energy issues demands collaboration between different disciplines of science and technology, and strong interaction between engineering, physical and life scientists, economists, sociologists and policy-makers.
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