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Energy management of a multi-agent based multi-microgrid system

机译:基于多主体的多微电网系统的能源管理

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This paper presents a model-based optimization algorithm for short-term energy trading in a multi-microgrid system. The multi-microgrid system has a hierarchical design architecture which is based on the Multi-Agent System (MAS) concept. Mixed-integer linear programming (MILP) which takes into consideration multiple constraints is used to obtain the optimum amount of power that will be generated, sold, or stored for the Energy Management System (EMS) of the multi-microgrid system at different time intervals. By using the proposed optimization algorithm, the EMS will ensure that power balance in the multi-microgrid system is achieved through energy trading between different interconnecting microgrids. The proposed optimization algorithm and hierarchical multi-microgrid system design architecture have the capability to ensure that the multi-microgrid system operates in a coordinated and economic manner. The design concept is demonstrated through different test case scenarios and the results obtained are discussed.
机译:本文提出了一种基于模型的多微电网系统中短期能源交易的优化算法。多微电网系统具有基于多代理系统(MAS)概念的分层设计架构。考虑了多个约束的混合整数线性规划(MILP)用于获得在不同时间间隔为多微电网系统的能源管理系统(EMS)生成,出售或存储的最佳电量。通过使用提出的优化算法,EMS将确保通过不同互连微电网之间的能量交易实现多微电网系统中的功率平衡。所提出的优化算法和分层的多微电网系统设计架构具有确保多微电网系统以协调且经济的方式运行的能力。通过不同的测试用例场景演示了该设计概念,并讨论了获得的结果。

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