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Distributed Cooperative Secondary Control for Voltage Unbalance Compensation in an Islanded Microgrid

机译:孤岛微电网中电压不平衡补偿的分布式协作二次控制

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This paper presents a distributed cooperative control scheme for voltage unbalance compensation (VUC) in an islanded microgrid (MG). By letting each distributed generator (DG) share the compensation effort cooperatively, unbalanced voltage in sensitive load bus (SLB) can be compensated. The concept of contribution level (CL) for compensation is first proposed for each local DG to indicate its compensation ability. A two-layer secondary compensation architecture consisting of a communication layer and a compensation layer is designed for each local DG. A totally distributed strategy involving information sharing and exchange is proposed, which is based on finite-time average consensus and newly developed graph discovery algorithm. This strategy does not require the whole system structure as a prior and can detect the structure automatically. The proposed scheme not only achieves similar VUC performance to the centralized one, but also brings some advantages, such as communication fault tolerance and plug-and-play property. Case studies including communication failure, CL variation, and DG plug-and-play are discussed and tested to validate the proposed method.
机译:本文提出了一种孤岛微电网(MG)中电压不平衡补偿(VUC)的分布式协作控制方案。通过让每个分布式发电机(DG)共同分担补偿工作,可以补偿敏感负载母线(SLB)中的不平衡电压。首先为每个地方DG提出补偿的缴费水平(CL)概念,以表明其补偿能力。为每个本地DG设计了由通信层和补偿层组成的两层二级补偿体系结构。提出了一种基于有限时间平均共识和新开发的图发现算法的涉及信息共享和交换的全分布式策略。此策略不需要先验的整个系统结构,并且可以自动检测该结构。该方案不仅实现了与集中式VUC相似的性能,而且还具有通信容错和即插即用等优点。讨论并测试了包括通信故障,CL变化和DG即插即用在内的案例研究,以验证所提出的方法。

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