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Distributed Transaction Optimization for Multiple Microgrids in Grid-Connected and Islanded Modes

机译:网格连接和岛状模式中多个微电网的分布式事务优化

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In this paper, a distributed method is proposed based on the alternating direction multiplier method (ADMM) for energy transaction problems among multiple microgrids (MMGs) under different operating modes. Firstly, a comprehensive transaction framework of microgrid (MG) is formulated that minimizes the operation cost while satisfying various operation constraints in Grid-Connected and Islanded modes. Then, in order to alleviate the communication burdens, the transaction optimization problems are decomposed into regional subproblems, and the global optimal solutions can be obtained by solving the subproblems of each region iteratively. The privacy of individual microgrids (MGs) can be protect well due to the proposed method only need the local computation with neighbor-wise energy exchanging, which conforms to the operating philosophy of multilateral transaction power markets. Finally, simulations of MGs in different operating modes are conducted to demonstrate the underlying benefits of energy transactions for MGs in grid-connected mode.
机译:本文基于不同操作模式下的多个微电网(MMGS)中的能量交易问题的交替方向乘法方法(ADMM)提出了一种分布式方法。首先,配制了微电网(MG)的综合交易框架,其使操作成本最小化,同时满足网格连接和岛状模式的各种操作约束。然后,为了减轻通信负担,交易优化问题被分解成区域子问题,并且通过迭代地解决每个区域的子问题,可以获得全局最优解决方案。由于所提出的方法,各个微电网(MGS)的隐私可以很好地保护邻近能源交换的本地计算,这符合多边交易电力市场的操作理念。最后,进行了不同操作模式的MGS的模拟,以展示电网连接模式中MGS的能源交易的潜在好处。

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