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A Potential Game Approach to Distributed Operational Optimization for Microgrid Energy Management With Renewable Energy and Demand Response

机译:具有可再生能源和需求响应的微电网能源管理分布式运营优化的潜在博弈方法

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摘要

In view of Internet of Energy, advanced operational optimization in microgrid energy management system (MEMS) is expected to be scalable to accommodate various participants, support plug-and-play, and optimize energy utilization. Based on potential game, this paper presents a fully distributed operational optimization for MEMS with high penetration of renewable energy and demand response. After analyzing the microgrid and potential game, the establishment and proof of an exact potential game model is presented in detail. Then the beststrategy-response iterative algorithm is proposed to find the game Nash equilibrium in a distributed way. Finally, the proposed approach is simulated in an islanded microgrid to verify its efficiency and feasibility. The significances of this paper are as follows. First, the scheme and algorithm are fully distributed. All heterogeneous individuals are treated as independent decision-making entities without a central coordinator/processor. Second, the optimization process is open and dynamic. The convergence is achieved with no limits to type or number of players, even if the process of execution is corrupted with delay or losses in communication information. Third, the consistency between individual rationality and overall importance is guaranteed, and individual best-strategy-response behaviors necessarily improve overall optimality.
机译:考虑到能源互联网,微电网能源管理系统(MEMS)的高级运行优化有望扩展,以容纳各种参与者,支持即插即用并优化能源利用。基于潜在的博弈,本文提出了具有可再生能源和需求响应的高渗透率的MEMS完全分布式操作优化。在分析了微电网和潜在博弈之后,详细介绍了精确的潜在博弈模型的建立和证明。然后提出了最佳策略-响应迭代算法,以分布式的方式寻找博弈纳什均衡。最后,在孤岛微电网中对提出的方法进行了仿真,以验证其效率和可行性。本文的意义如下。首先,该方案和算法是完全分布式的。在没有中央协调员/处理器的情况下,所有异类个体均被视为独立的决策实体。其次,优化过程是开放和动态的。即使执行过程因通信信息的延迟或丢失而损坏,也可以不受参与者类型或人数的限制而实现融合。第三,保证了个人理性与整体重要性之间的一致性,而个体的最佳策略响应行为必然会提高整体最优性。

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