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Real-Time Multiobjective Microgrid Power Management Using Distributed Optimization in an Agent-Based Bargaining Framework

机译:基于代理的议价框架中使用分布式优化的实时多目标微电网电源管理

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In this paper, we propose a multi-objective power management procedure for microgrids (MGs). Through this procedure the power management problem is modeled as a bargaining game among different agents with different sets of objective functions. Nash bargaining solution (NBS) is employed to find the solution of the bargaining game. NBS lies on the Pareto-front of the power management problem. Moreover, it introduces a unique and fair balance among the objective functions of different agents and removes the need to track the whole Pareto-front in real-time. Distributed gradient algorithm is applied to find the NBS through a modular distributed decision framework without using a central control unit. In this way, the problem of data privacy of different parties within the MG is addressed. The proposed methodology has been tested through simulations on islanded and grid-connected MGs under different pricing scenarios (fixed versus time-of-use pricing).
机译:在本文中,我们提出了微电网(MG)的多目标电源管理程序。通过此过程,电源管理问题被建模为具有不同目标函数集的不同代理之间的讨价还价博弈。纳什讨价还价解决方案(NBS)用于找到讨价还价博弈的解决方案。 NBS位于电源管理问题的Pareto前沿。此外,它在不同代理的目标功能之间引入了独特而公平的平衡,并且无需实时跟踪整个Pareto-front。应用分布式梯度算法通过模块化的分布式决策框架查找NBS,而无需使用中央控制单元。这样,解决了MG内部不同方的数据隐私问题。通过在不同定价方案(固定定价与使用时间定价)下,对孤岛型和并网型MG进行模拟测试,对所提出的方法进行了测试。

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