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A scheduling optimization model for minimizing the energy demand of a building using electric vehicles and a micro-turbine

机译:一种调度优化模型,用于最小化使用电动汽车和微型涡轮机的建筑物的能源需求

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High energy demand in corporate and/or public buildings is nowadays one of the main reasons of excessive energy consumption. At the same time, electric vehicles (EVs) have become very popular worldwide being a considerable alternative power source when parked. In this work we propose a scheduling mechanism which optimizes the control of the charging-discharging schedule of an altered but finite number of EVs arriving at a university building for a typical load-day in February aiming at the minimization of the energy demand and the electricity cost of the building. In the aforementioned framework, a parallel operation of a small sized gas turbine generator (GGT) is considered. To this end, a mixed integer linear programing (MILP) model containing binary and continuous variables has been developed to optimize the control process and minimize energy cost. Results showed that the use of the EVs as an alternative energy source can significantly contribute to the reduction of the building's energy demand leading to important cost decrease. The exploitation of the energy produced by the GGT further contributed to the minimization of the total energy consumption of the building and the total electricity cost.
机译:现在,企业和/或公共建筑物的高能量需求如今,能耗过度消耗的主要原因之一。与此同时,电动汽车(EVS)在停放时,全球变得非常受欢迎。在这项工作中,我们提出了一种调度机制,该调度机制优化了对2月份典型负载日到达大学建筑的改变但有限数量EV的充电放电时间表的控制,旨在最大限度地减少能源需求和电力建筑物的费用。在上述框架中,考虑小尺寸燃气涡轮发电机(GGT)的并联操作。为此,已经开发出包含二进制和连续变量的混合整数线性编程(MILP)模型以优化控制过程并最大限度地减少能源成本。结果表明,EVS作为替代能源的使用可能会显着促进建筑物的能源需求的降低,导致重要成本下降。由GGT产生的能量的利用进一步有助于最小化建筑物的总能耗和总电力成本。

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