逆变器密集型动态微电网二次控制融合增强配电系统弹性

iEnergy Pub Date : 2023-03-01 DOI:10.23919/IEN.2023.0011
Yuxi Men;Lizhi Ding;Junhui Zhang;Xiaonan Lu
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引用次数: 0

摘要

以电力电子接口逆变器为主的微电网可以增强配电系统的弹性。相邻MGs之间的相互作用以及对柔性系统网络重构的要求激励了动态MGs的发展。为了提高动态MGs背景下的配电系统弹性,本文提出了相邻动态MGs的二次控制级别的功能融合概念,并将多个补偿项集成到每个分布式发电机(DG)的二次控制器中。此外,还包含了两种考虑通信延迟的基于共识的算法来计算静态和动态变量的平均值,从而在动态MGs中的DG之间建立有效的通信网络。最后,使用9总线测试配电馈线验证了所提出的二次控制器的有效性。
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Secondary control fusion in inverter intensive dynamic microgrids for distribution system resiliency enhancement
Microgrids (MGs) dominated by power electronics interface inverters can augment distribution system resiliency. The interactions among neighboring MGs and the requirements for flexible system network reconfiguration motivate the development of dynamic MGs. To improve the distribution system resiliency in the context of dynamic MGs, this paper proposes the concept of functional fusion of secondary control levels across neighboring dynamic MGs with the integration of multiple compensation terms into the secondary controller in each distributed generator (DG). Moreover, two kinds of consensus-based algorithms with the consideration of communication delays are encompassed to calculate the average values of static and dynamic variables and thereby build an effective communications network among DGs in dynamic MGs. Finally, the effectiveness of the proposed secondary controller is validated using a 9-bus test distribution feeder.
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