多直流微电网集群建模、稳定性分析及主动稳定

Q. Shafiee, T. Dragičević, J. Vasquez, J. Guerrero
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引用次数: 77

摘要

直流微电网作为一种替代方案,由于与交流系统相比具有许多潜在的优势,近年来引起了人们越来越多的兴趣。这些系统的稳定性可能是一个重要的问题,在负载转换器的高渗透下,它们表现为恒定功率负载(cpl),尤其是在与其他MG互连时,创建直流MG集群。本文从控制的角度建立了直流电机的小信号模型,研究了系统的稳定性分析,并探讨了CPLs和电机之间的线路阻抗对系统稳定性的影响。该模型也可用于直流MG和直流MG簇控制回路的动力学综合和研究。提出了一种作为直流有源电源滤波器(APF)的有源稳定方法,不仅可以增加直流有源电源在cpl存在时的阻尼,而且可以提高其与其他mg连接时的稳定性。仿真结果验证了所建模型的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling, stability analysis and active stabilization of multiple DC-microgrid clusters
DC microgrids (MGs), as an alternative option, have attracted increasing interest in recent years due to many potential advantages as compare to the ac system. Stability of these systems can be an important issue under high penetration of load converters which behaves as constant power loads (CPLs), and more especially during interconnection with other MGs, creating dc MG clusters. This paper develops a small signal model for dc MGs from the control point of view, in order to study stability analysis and investigate effects of CPLs and line impedances between the MGs on stability of these systems. This model can be also used to synthesis and study dynamics of control loops in dc MGs and also dc MG clusters. An active stabilization method is proposed to be implemented as a dc active power filter (APF) inside the MGs in order to not only increase damping of dc MGs at the presence of CPLs but also to improve their stability while connecting to the other MGs. Simulation results are provided to evaluate the developed models and demonstrate the effectiveness of proposed active stabilization technique.
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