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Distributed voltage unbalance compensation in an islanded microgrid system by using negative sequence current feedback

机译:负序电流反馈在孤岛微电网系统中的分布式电压不平衡补偿

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This paper presents a distributed voltage unbalance compensation method for an islanded microgrid (MG) system. By using hierarchical control concept, we design a distributed compensation scheme in the secondary control layer, while the traditional inverter control methods including voltage and current PR control, droop control, virtual impedance are implemented in the primary layer. Different from most existing centralized compensation methods, no specified individual centralized secondary controller exists. We decompose the traditional centralized controller into several local secondary controllers. A novel distributed PI controller with negative sequence current feedback is designed in each secondary controller. By allowing them to exchange information with their neighboring controllers respectively, the unbalanced voltage in the sensitive load bus (SLB) can be compensated by all the distributed generators (DGs) cooperatively. In addition, the compensation effort of each DG is designed to be proportional to their power ratings respectively. An islanded microgrid system consisting of 4 DGs is built in MATLAB to validate the proposed method.
机译:本文提出了一种用于孤岛微电网(MG)系统的分布式电压不平衡补偿方法。通过分层控制的思想,在次级控制层设计了一种分布式补偿方案,而在初级层则采用了电压电流PR控制,下垂控制,虚拟阻抗等传统的逆变器控制方法。与大多数现有的集中式补偿方法不同,不存在指定的单个集中式次级控制器。我们将传统的集中式控制器分解为几个本地辅助控制器。每个次级控制器中都设计了一种新颖的具有负序电流反馈的分布式PI控制器。通过允许它们分别与其相邻的控制器交换信息,可以通过所有分布式发电机(DG)共同补偿敏感负载总线(SLB)中的不平衡电压。此外,每个DG的补偿作用都设计为分别与它们的额定功率成比例。在MATLAB中建立了一个由4个DG组成的孤岛微电网系统,以验证所提出的方法。

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