A distributed optimal active power control scheme for inverter-based islanded AC microgrids

Gang Chen, Zhiyong Li, Zhijun Guo
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引用次数: 2

Abstract

This paper presents a distributed optimal active power control strategy for inverter-based islanded AC micro-grid with both droop-controlled and PQ-controlled distributed generators (DGs). Each DG is considered as an agent which can exchange information with neighbouring agents through a distributed peer-to-peer communication network. A distributed economic dispatch (ED) algorithm with fixed-time convergence is proposed to calculate the optimal active power references for each DG and the algorithm is rigorously proved by applying Lyapunov theory. Based on the ED references, the key parameters of droop controller and PQ controller are updated in real time, which makes each DG track the corresponding optimal active power reference. The frequency of islanded microgrid is automatically restored to the nominal value. Simulation results are provided to illustrate the effectiveness of the proposed distributed control strategy.
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基于逆变器的孤岛交流微电网分布式最优有功控制方案
提出了一种具有下垂控制和pq控制分布式发电机的基于逆变器的孤岛交流微电网的分布式最优有功功率控制策略。每个DG被认为是一个代理,它可以通过分布式的点对点通信网络与相邻的代理交换信息。提出了一种固定时间收敛的分布式经济调度算法,用于计算各发电机组的最优有功参考,并应用李雅普诺夫理论对该算法进行了严格证明。基于ED参考,实时更新下垂控制器和PQ控制器的关键参数,使各DG跟踪相应的最优有功参考。孤岛微电网的频率自动恢复到标称值。仿真结果验证了所提出的分布式控制策略的有效性。
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