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Micro-grid energy management: A computational approach based on simulation and approximate discrete abstraction

机译:微电网能源管理:一种基于仿真和近似离散抽象的计算方法

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We address the problem of designing an energy management system for a small scale micro-grid comprising a chiller plant and a cooling load representing some zone. The energy management task involves distributing the cooling power request among the chillers constituting the chiller plant, and modulating the temperature set-point of the zone so as to save energy while preserving comfort. The problem can be decoupled into a static optimization problem and a dynamic programming problem for a discrete time stochastic hybrid system. The latter one is here addressed by abstracting the stochastic hybrid model to a (finite) controlled Markov chain, where costs associated to transitions are computed by simulating the original model and determining the corresponding energy consumption. A numerical example shows the efficacy of the approach.
机译:我们解决了为小型微电网设计能源管理系统的问题,该系统包括冷水机组和代表某个区域的冷却负荷。能源管理任务包括在构成制冷设备的制冷机之间分配冷却功率要求,并调节区域的温度设定点,以便在保持舒适性的同时节省能源。对于离散时间随机混合系统,该问题可以分解为静态优化问题和动态规划问题。后者是通过将随机混合模型抽象为(有限的)受控马尔可夫链来解决的,其中与过渡相关的成本是通过模拟原始模型并确定相应的能耗来计算的。数值示例表明了该方法的有效性。

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