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Multiagent-Based Reactive Power Sharing and Control Model for Islanded Microgrids

机译:基于多代理的孤岛微电网无功共享和控制模型

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摘要

In islanded microgrids (MGs), the reactive power cannot be shared proportionally among distributed generators (DGs) with conventional droop control, due to the mismatch in feeder impedances. For the purpose of proportional reactive power sharing, a multiagent system (MAS)-based distributed control model for droop-controlled MGs is proposed. The proposed control model consists of two layers, where the bottom layer is the electrical distribution MG, while the top layer is a communication network composed of agents. Moreover, agents on the communication network exchange the information acquired from DGs with neighbors, and calculate set points for DGs they connect to, according to the control laws. Furthermore, a theorem is demonstrated, which yields a systematic method to derive the control laws from a given communication network. Finally, three cases are carried out to test the performance of the control model, in which the uncertainty of intermittent DGs, variations in load demands, as well as impacts of time delays are considered. The simulation results demonstrate the effectiveness of the control model in proportional reactive power sharing, and the plug and play capability of the control model is also verified.
机译:在孤岛微电网(MG)中,由于馈线阻抗不匹配,无功功率无法在具有常规下垂控制的分布式发电机(DG)之间按比例分配。出于比例无功功率共享的目的,提出了一种基于多代理系统(MAS)的下垂控制MGs分布式控制模型。所提出的控制模型由两层组成,其中底层是配电MG,顶层是由代理组成的通信网络。此外,通信网络上的代理根据控制定律与邻居交换从DG获得的信息,并为它们连接的DG计算设置点。此外,证明了一个定理,该定理产生了一种从给定通信网络中推导控制律的系统方法。最后,在三种情况下对控制模型的性能进行了测试,其中考虑了间歇性DG的不确定性,负载需求的变化以及时延的影响。仿真结果证明了该控制模型在比例无功功率共享中的有效性,并验证了该控制模型的即插即用能力。

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