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A Multiagent-Based Game-Theoretic and Optimization Approach for Market Operation of Multimicrogrid Systems

机译:基于多主体的博弈理论和微电网系统市场优化方法

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This paper proposes a multiagent-based energy market for multimicrogrid systems using game-theoretic and hierarchical optimization approaches. The proposed method is tailored to achieve the optimal operation of smart microgrids in distribution systems. Because of rapid load variations in distribution systems, it is necessary to develop fast optimization algorithms which minimize the power mismatch in and among microgrids. In this paper, a three-level market framework is proposed. The first level comprises a game-theoretic double-auction mechanism for the day-ahead market while the next two levels are optimal rescheduling and intermicrogrid reverse auction model for the hour-ahead and real-time markets, respectively. Using the hierarchical optimization algorithm in a multiagent-based area, it is anticipated to not only minimize the optimization solution time, but also reduce the dependency on the network in grid-connected mode or load shedding in islanded mode. Using this approach, load demand response capabilities along with rescheduling of Distributed Energy Storage Systems and distributed generations could be utilized in all market levels, which will lead to optimal operation of multimicrogrid systems. Agents are developed in DIgSILENT PowerFactory and dynamic data exchange is activated for communication among agents communicating through a data distribution service which utilizes the real-time publish-subscribe communication protocol. The developed framework is applied to the modified 37-bus IEEE distribution test feeder system to validate the effectiveness of this market structure.
机译:本文使用博弈论和分层优化方法为多微电网系统提出了一个基于多代理的能源市场。所提出的方法经过定制,可实现配电系统中智能微电网的最佳运行。由于配电系统中负载的快速变化,因此有必要开发快速优化算法,以最大程度地降低微电网中和电网之间的功率不匹配。本文提出了一个三级市场框架。第一个级别包括针对日间市场的博弈论双重竞价机制,而下两个级别分别是针对小时前市场和实时市场的最优重新计划和微电网逆向拍卖模型。在基于多代理的区域中使用分层优化算法,不仅可以使优化解决方案的时间最短,而且可以减少并网模式下对网络的依赖或孤岛模式下的负载减少。使用这种方法,可以在所有市场级别上利用负载需求响应功能以及分布式储能系统和分布式发电的重新调度,这将导致多微电网系统的最佳运行。在DIgSILENT PowerFactory中开发了代理,并激活了动态数据交换,以便通过数据分发服务进行通信的代理之间的通信,该服务利用实时的发布-订阅通信协议。所开发的框架应用于改进的37总线IEEE配电测试馈线系统,以验证该市场结构的有效性。

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