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Optimal Energy Management of Unbalanced Three-Phase Grid-Connected Microgrids

机译:不平衡三相并网微电网的最优能量管理

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This paper presents a non-linear optimization problem based on nodal current injections to solve the optimal energy management of unbalanced, three-phase, grid-connected microgrids. The focus is on the modelling of small synchronous machines under unbalanced operation. Inverter-interfaced distributed energy resources, i.e., renewable sources and energy storage systems, are also considered and described. The proposed formulation minimizes the cost of the energy consumed by the microgrid while satisfying active and reactive power balances, the devices operational constraints, as well as current and voltage operational limits. The proposed model is tested using the IEEE 123 node test feeder and compared to commonly used formulations. Simulation results show the impact of unbalanced models on the energy management of three-phase microgrids.
机译:本文提出了一种基于节点电流注入的非线性优化问题,以解决不平衡的三相并网微电网的最佳能量管理。重点是在不平衡操作下的小型同步电机的建模。还考虑并描述了逆变器接口的分布式能源,即可再生资源和能量存储系统。所提出的公式使微电网消耗的能量成本最小化,同时满足有功和无功功率平衡,设备的运行限制以及电流和电压的运行限制。建议的模型使用IEEE 123节点测试馈送器进行测试,并与常用公式进行比较。仿真结果表明,不平衡模型对三相微电网能量管理的影响。

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