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A new isolated renewable based multi microgrid optimal energy management system considering uncertainty and demand response

机译:考虑不确定性和需求响应的新型隔离式可再生多微电网最优能源管理系统

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This paper proposes a novel energy management system (EMS) for an isolated structure of networked microgrids (NMGs). The interconnected microgrids consist of the cyber-physical connections for information and power exchanges. A bi-level EMS is presented in which the outer-level EMS is aimed to exchange the required information and power between the interconnected microgrids, and the inner-level EMS is intended for energy scheduling of each on-fault microgrid in case of separation from other microgrids. This paper focuses on the operation of interconnected microgrids. A step-wise demand response program (DRP) is also considered in the energy management to attain the cost-effective operation. Furthermore, a new pricing model based on microgrid marginal pricing (MGMP) is introduced for the power exchanges between the interconnected microgrids. To cope with the uncertainties of the renewable energy sources and loads, some scenarios are generated using the scenario-based analysis. Also, a backward scenario reduction method is used to reduce the number of the scenarios. Besides, a mixed integer linear programming (MILP) is applied to the stochastic optimization problem of the NMGs. The proposed model is implemented on a test system with five NMGs. The simulation is run over a 24-hour scheduling time horizon. Both cases without and with demand response program (DRP) are compared in the numerical results. The results of the simulation demonstrate that using the proposed DRP in the energy management increases the performance of the generation units and decreases the total operational cost of the proposed NMGs. Also, the voltages of the buses converge to their rated values.
机译:本文提出了一种用于网络微电网(NMG)隔离结构的新型能源管理系统(EMS)。互连的微电网包括用于信息和电源交换的网络物理连接。提出了一种双层EMS,其中,外部EMS旨在在互连的微电网之间交换所需的信息和电力,而内部EMS则用于在与电网分离的情况下对每个故障微电网进行能量调度。其他微电网。本文着重于互连微电网的操作。在能源管理中还考虑了逐步需求响应计划(DRP),以实现具有成本效益的运营。此外,引入了一种基于微电网边际定价(MGMP)的新定价模型,用于互连微电网之间的电力交换。为了应对可再生能源和负荷的不确定性,使用基于方案的分析生成了一些方案。另外,使用后向场景减少方法来减少场景的数量。此外,将混合整数线性规划(MILP)应用于NMG的随机优化问题。建议的模型在具有五个NMG的测试系统上实现。该模拟在24小时的计划时间范围内运行。在数值结果中比较了没有和有需求响应程序(DRP)的两种情况。仿真结果表明,在能源管理中使用拟议的DRP可提高发电机组的性能,并降低拟议的NMG的总运营成本。而且,总线的电压收敛到其额定值。

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