基于共识的分布式控制改善三相三线隔离微电网不平衡电流共享

Claudio Burgos-Mellado, F. Donoso, J. Llanos, M. Martínez-Gómez, H. K. Morales-Paredes, M. Torres
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引用次数: 0

摘要

本文提出了一种二次分布式控制策略,以实现三相三线隔离微电网中在下垂控制下运行的三支路变流器之间的不平衡电流共享。为此,使用了改进的$Q$ - $E$下垂控制器,其中定义了新的控制动作以实现转换器之间的不平衡电流共享。在二级控制级别,这些控制动作由基于共识的算法生成,其中共识变量对应于变流器的单相无功功率。本文表明,通过实现单相无功功率的一致(每相),可以在电源变流器之间共享负序电流分量。大量的仿真验证了所提控制器的优良性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Consensus-Based Distributed Control for Improving the Sharing of Unbalanced Currents in Three-phase Three-wire Isolated Microgrids
This paper proposes a secondary distributed control strategy to achieve the sharing of unbalanced currents between 3-leg power converters, operating under droop control, in a three-phase three-wire isolated Microgrid (MG). To this end, a modified $Q$ - $E$ droop controller is used, where new control actions are defined to achieve the unbalanced currents sharing amongst the converters. These control actions are generated, in the secondary control level, by a consensus-based algorithm, where the consensus variables correspond to the single-phase reactive powers of the converters. This paper shows that sharing negative sequence current components amongst the power converters can be managed by achieving a consensus (per phase) of single-phase reactive powers. Extensive simulations demonstrate the excellent performance of the proposed controller.
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