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Stochastic Chiller Sequencing Control for Multiple-Chiller Plants

机译:多冷水植物的随机冷却器测序控制

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This paper deals with the uncertainties associated with total cooling load (TCL)-based chiller sequencing control. The TCL-based control determines the switch-on/off thresholds according to building instantaneous cooling load and chiller maximum cooling capacity. One challenge for practical applications of this method is that the measure of the cooling load and the estimate of the chiller maximum cooling capacity suffer heavily from uncertainties. To deal with the uncertainties, a stochastic chiller sequencing control is proposed in this paper. The switch-on/off thresholds are determined in the framework of statistics. An algorithm to realize the stochastic control is developed. Case studies compare the stochastic control with the conventional deterministic method, and the results show that the proposed method can improve the robustness of chiller sequencing operation.
机译:本文涉及与总冷却负荷(TCL)的冷却器测序控制相关的不确定性。基于TCL的控制根据构建瞬时冷却负载和冷却器最大冷却能力来确定开启/关闭阈值。这种方法的实际应用的一个挑战是,冷却负荷的测量和冷却器最大冷却能力的估计很大程度上遭受了不确定性的影响。为了处理不确定性,本文提出了一种随机冷却器测序控制。在统计框架中确定开关/关闭阈值。开发了一种实现随机控制的算法。案例研究将随机控制与传统的确定方法进行比较,结果表明,该方法可以提高冷却器测序操作的鲁棒性。

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