A Novel Decentralized Unbalance Load Sharing Approach For Islanded Microgrids

S. Yahyaee, P. Sreekumar, V. Khadkikar
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Abstract

The presence of unbalance in the load, particularly, in Islanded Microgrids is gaining increased attention recently as it introduces unbalance in both load voltage and current. The existing work in this area is mainly focused on reducing the unbalance in the load voltage or sharing the negative sequence current equally. Furthermore, most of these methods are based on the knowledge of load voltages which requires a low bandwidth communication infrastructure to send the load information to the local DG controllers. However, the low bandwidth communication increases the overall cost and reduces the reliability of system. In this paper, a decentralized control approach for Islanded Micro-grid to share the load current unbalance factors equally among distributed generation (DG) units is proposed. It is shown in the paper that in an Islanded Microgrid, the presence of unbalance in the load current effects the DG output voltages causing them to become unbalanced as well. A droop-based control approach is developed that compensates the unbalance in DG output voltages and thus, achieving equal unbalance current factor sharing. A detailed Matlab/Simulink based study is presented to validate the performance of the proposed decentralized approach.
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孤岛微电网分散式不平衡负荷共享方法
负载不平衡的存在,特别是在孤岛微电网中,最近受到越来越多的关注,因为它引入了负载电压和电流的不平衡。现有的工作主要集中在降低负载电压的不平衡或平均分担负序电流上。此外,这些方法大多基于负载电压的知识,这需要低带宽通信基础设施将负载信息发送到本地DG控制器。但是,低带宽通信增加了系统的总体成本,降低了系统的可靠性。本文提出了一种孤岛微电网分散控制方法,使各分布式发电机组平均分担负载电流不平衡因素。本文表明,在孤岛微电网中,负载电流不平衡的存在会影响DG输出电压,导致它们也变得不平衡。提出了一种基于下垂的控制方法,补偿DG输出电压的不平衡,从而实现相等的不平衡电流因数共享。基于Matlab/Simulink的详细研究验证了所提出的分散方法的性能。
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