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Optimal Scheduling of Residential Microgrids Considering Virtual Energy Storage System

机译:考虑虚拟能量存储系统的住宅微电网的最佳调度

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摘要

The increasingly complex residential microgrids (r-microgrid) consisting of renewable generation, energy storage systems, and residential buildings require a more intelligent scheduling method. Firstly, aiming at the radiant floor heating/cooling system widely utilized in residential buildings, the mathematical relationship between the operative temperature and heating/cooling demand is established based on the equivalent thermodynamic parameters (ETP) model, by which the thermal storage capacity is analyzed. Secondly, the radiant floor heating/cooling system is treated as virtual energy storage system (VESS), and an optimization model based on mixed-integer nonlinear programming (MINLP) for r-microgrid scheduling is established which takes thermal comfort level and economy as the optimization objectives. Finally, the optimal scheduling results of two typical r-microgrids are analyzed. Case studies demonstrate that the proposed scheduling method can effectively employ the thermal storage capacity of radiant floor heating/cooling system, thus lowering the operating cost of the r-microgrid effectively while ensuring the thermal comfort level of users.
机译:日益复杂的住宅微电网(R-微电网)由可再生发电,能量存储系统,和住宅建筑的需要更为智能调度方法。首先针对广泛地用于住宅地板辐射加热/冷却系统,操作温度和加热/冷却需求之间的数学关系成立基于等效热力学参数(ETP)模型,通过该热存储容量被分析。其次,地板辐射加热/冷却系统被作为虚拟能量存储系统(VESS),以及优化模型基于混合整数为R-微电网调度非线性规划(MINLP)成立这需要热舒适水平和经济为处理优化目标。最后,两种典型的R-微电网的优化调度结果进行了分析。案例研究表明,所提出的调度方法可以有效地采用地板辐射加热/冷却系统的热存储容量,从而有效降低的r微电网的操作成本,同时确保用户的热舒适程度。

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