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A near-optimal control algorithm for central cooling plants with electric and/or gas-driven chillers

机译:电气和/或气体驱动冷却器中央冷却设备的近最优控制算法

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摘要

This paper presents a near-optimal control algorithm for minimizing energy costs in hybrid cooling plants in response to cooling loads. The approach is based upon an approximate solution to the partial differential equations involved in minimizing the cost of energy consumed by the plant with respect to two control variables: cooling tower airflow and condenser water flow. The parameters of the algorithm can be determined with design information of the chillers and cooling towers, along with some measurements of total condenser water flow and pump power consumption. In addition to reducing plant operating costs, the algorithm simplifies tower control and is more stable compared with conventional tower control strategies such as constant condenser water supply temperature or constant approach to wet-bulb. A large-scale cooling plant model was utilized to evaluate the performance of the approach compared with optimal control and two heuristic control strategies over six months. The difference between the energy costs associated with the near-optimal control approach and optimal control was 1.7%. Comparison with the heuristic control strategies shows that significant energy savings can be achieved with the proposed algorithm.
机译:本文呈现了近最优控制算法,以尽量减少混合式冷却设备的能量成本响应于冷却负载。该方法基于近似解决方案的近似解决方案,其参与最小化工厂相对于两个控制变量消耗的能量成本:冷却塔气流和冷凝器水流。算法的参数可以用冷却器和冷却塔的设计信息确定,以及各种冷凝器水流量和泵功耗的一些测量。除了降低植物运营成本外,该算法还简化了塔式控制,与传统的塔式控制策略相比,诸如恒定的冷凝器供水温度或湿灯泡恒定方法等更稳定。利用大型冷却设备模型来评估方法的性能与最佳控制和六个月内的两个启发式控制策略相比。与近最优控制方法相关的能量成本与最佳控制相关的差异为1.7%。与启发式控制策略的比较表明,可以通过所提出的算法实现显着的节能。

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