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Operation Cost Minimization of Droop-Controlled AC Microgrids Using Multiagent-Based Distributed Control

机译:基于多智能体分布式控制的下垂控制交流微电网运行成本最小化

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摘要

Recently, microgrids are attracting increasing research interest as promising technologies to integrate renewable energy resources into the distribution system. Although many works have been done on droop control applied to microgrids, they mainly focus on achieving proportional power sharing based on the power rating of the power converters. With various primary source for the distributed generator (DG), factors that are closely related to the operation cost, such as fuel cost of the generators and losses should be taken into account in order to improve the efficiency of the whole system. In this paper, a multiagent-based distributed method is proposed to minimize the operation cost in AC microgrids. In the microgrid, each DG is acting as an agent which regulates the power individually using a novel power regulation method based on frequency scheduling. An optimal power command is obtained through carefully designed consensus algorithm by using sparse communication links only among neighbouring agents. Experimental results for different cases verified that the proposed control strategy can effectively reduce the operation cost.
机译:最近,微电网作为将可再生能源整合到配电系统中的有前途的技术吸引了越来越多的研究兴趣。尽管已经进行了许多应用于微电网的下垂控制的工作,但它们主要集中在基于功率转换器的额定功率实现比例功率共享上。对于分布式发电机(DG)的各种主要来源,应考虑与运行成本密切相关的因素,例如发电机的燃料成本和损失,以提高整个系统的效率。本文提出了一种基于多主体的分布式方法,以最小化交流微电网的运行成本。在微电网中,每个DG都充当代理,使用基于频率调度的新型功率调节方法分别调节功率。通过仅使用相邻代理之间的稀疏通信链接,通过精心设计的共识算法可获得最佳功率命令。针对不同情况的实验结果证明,所提出的控制策略可以有效降低运行成本。

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