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首页> 外文期刊>Systems, Man, and Cybernetics: Systems, IEEE Transactions on >Dynamic Population Games for Optimal Dispatch on Hierarchical Microgrid Control
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Dynamic Population Games for Optimal Dispatch on Hierarchical Microgrid Control

机译:分层微电网控制下最优调度的动态种群博弈

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摘要

In the path to the future implementation of the smart grid, microgrids are presented as a cornerstone. An efficient and optimal microgrid operation is paramount. In this paper, we present a hierarchical microgrid management system using task sharing and an evolutionary game theory based dispatch strategy as a coordination algorithm to integrate the three main control levels needed for microgrid operation, which can be considered as a distributed intelligent system. The proposed algorithm shares the total load demanded into the distributed generators efficiently, while the microgrid utility is maximized dynamically, increasing the system reliability. Some simulation results are presented to illustrate the effectiveness of the dynamic performance of the proposed approach compared with a traditional hierarchical algorithm.
机译:在未来实现智能电网的道路上,微电网是基石。有效和最佳的微电网运行至关重要。在本文中,我们提出了一种使用任务共享和基于进化博弈论的调度策略作为协调算法的分层微电网管理系统,该系统集成了微电网运行所需的三个主要控制级别,可以将其视为分布式智能系统。提出的算法有效地分配了分布式发电机所需的总负荷,而微电网效用被动态最大化,从而提高了系统可靠性。提出了一些仿真结果,以说明与传统的分层算法相比,该方法的动态性能的有效性。

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