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Optimal pre-cooling time: A closed form analysis

机译:最佳预冷却时间:封闭式分析

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Energy costs from Heating, Ventilation and Air Conditioning (HVAC) systems can be greater than 50% of the total operational expenditure of a commercial building. Demand side strategies such as pre-cooling and supply side strategies such as using renewable energy resources (e.g. solar panels) have the potential to reduce the operating energy costs. Several optimization frameworks have been proposed that use these strategies in an efficient manner. However, incorporating the dynamics of HVAC in an optimization framework often renders the framework computationally intractable - due to the inherent non-linearities - for large buildings. In this paper, we focus on the demand side strategy and develop a closed form expression for the optimal pre-cooling time assuming a 1R, 1C model of a building. Using simulations, we demonstrate that the optimal pre-cooling time obtained from the closed form expression matches the one from the optimization framework. Furthermore, we show that the expression - when used in conjunction with existing HVACoptimization frameworks to determine the optimal schedule of set-point temperatures - reduces the computation time of the optimization by two orders of magnitude, without loss of optimality.
机译:供暖,通风和空调(HVAC)系统的能源成本可以大于商业建筑总运营总支出的50 %。需求侧策略,如预冷却和供应侧策略,如使用可再生能源(例如太阳能电池板)有可能降低运行能源成本。已经提出了几种优化框架,以有效的方式使用这些策略。然而,在优化框架中纳入HVAC的动态通常会使框架改变计算地棘手 - 由于固有的非线性 - 对于大型建筑物而言在本文中,我们专注于需求侧策略,并为假定建筑物的1R,1C模型开发最佳预冷却时间的闭合形式表达。使用模拟,我们证明从闭合形式表达式获得的最佳预冷却时间与优化框架中的一个匹配。此外,我们表明表达式 - 与现有的HVACOptimization框架结合使用以确定设定点温度的最佳时间表 - 减少了两个数量级的优化计算时间,而不会损失最优性。

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