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Multi-Objective Optimal Scheduling Method for a Grid-Connected Redundant Residential Microgrid

机译:并网冗余住宅微网的多目标最优调度方法

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Optimal scheduling of a redundant residential microgrid (RR-microgrid) could yield economical savings and reduce the emission of pollutants while ensuring the comfort level of users. This paper proposes a novel multi-objective optimal scheduling method for a grid-connected RR-microgrid in which the heating/cooling system of the RR-microgrid is treated as a virtual energy storage system (VESS). An optimization model for grid-connected RR-microgrid scheduling is established based on mixed-integer nonlinear programming (MINLP), which takes the operating cost (OC), thermal comfort level (TCL), and pollution emission (PE) as the optimization objectives. The non-dominate sorting genetic algorithm II (NSGA-II) is employed to search the Pareto front and the best scheduling scheme is determined by the analytic hierarchy process (AHP) method. In a case study, two kinds of heating/cooling systems, the radiant floor heating/cooling system (RFHCS) and the convection heating/cooling system (CHCS) are investigated for the RR-microgrid. respectively, and the feasibility and validity of the scheduling method are ascertained.
机译:冗余住宅微电网(RR-microgrid)的最佳调度可以节省成本并减少污染物排放,同时确保用户的舒适度。提出了一种新型的并网RR微电网多目标最优调度方法,该方法将RR微电网的供热/制冷系统视为虚拟储能系统(VESS)。基于混合整数非线性规划(MINLP),建立了并网RR微电网调度的优化模型,该模型以运营成本(OC),热舒适度(TCL)和污染排放(PE)为优化目标。 。采用非支配排序遗传算法II(NSGA-II)搜索Pareto前沿,并通过层次分析法(AHP)确定最佳调度方案。在一个案例研究中,研究了RR微电网的两种加热/冷却系统,即辐射地板加热/冷却系统(RFHCS)和对流加热/冷却系统(CHCS)。分别确定了该调度方法的可行性和有效性。

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