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A distributed coordinated economic droop control scheme for islanded AC microgrid considering communication system

机译:考虑通信系统的孤岛交流微电网分布式协调经济下垂控制方案

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The conventional PQ droop control method is easily affected by load changes and line impedance in the islanded AC microgrid and always results in the problems in dynamic performance. Therefore, the parallel Distributed Generators (DGs) have uneven power distribution and poor economy. To solve the problem of inaccurate power distribution of DGs and low operating costs, we propose an improved economic droop control strategy based on distributed algorithm, in which the second-level optimization control is added to iteratively modify the reference voltage and frequency in the droop control. In this process, the system optimal economic operating point will also be achieved. Considering the advantages of centralized and decentralized control, the control architecture based on sparse multi-agent communication network improves the robustness and flexibility of the system because there is no central leader. Finally, simulation analysis of the islanded AC microgrid is carried out by using PSCAD/EMTDC simulation software to verify that this strategy can achieve the precise control of the tie-line power according to the load demand response, and the optimal economic operation for each DG. (C) 2018 Elsevier B.V. All rights reserved.
机译:常规的PQ下垂控制方法容易受到孤岛式交流微电网中负载变化和线路阻抗的影响,并且始终会导致动态性能方面的问题。因此,并联分布式发电机(DGs)的配电不均且经济性差。为解决分布式电源配电不准确,运行成本低的问题,提出了一种基于分布式算法的经济下垂控制策略,在该算法中增加了二级优化控制来迭代修改下垂控制的参考电压和频率。 。在此过程中,还将获得系统的最佳经济运行点。考虑到集中控制和分散控制的优点,由于没有中央领导者,基于稀疏多主体通信网络的控制体系结构提高了系统的鲁棒性和灵活性。最后,通过使用PSCAD / EMTDC仿真软件对孤岛式交流微电网进行了仿真分析,验证了该策略可以根据负荷需求响应实现对联络线功率的精确控制,并且可以实现每个DG的最佳经济运行。 (C)2018 Elsevier B.V.保留所有权利。

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