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Real-time optimization of a chilled water plant with parallel chillers based on extremum seeking control

机译:基于极值搜索控制的带有并联冷却器的冷水厂实时优化

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Chilled water plants with multiple chillers are commonly used to provide cooling in large commercial buildings. Optimization offers a significant opportunity for improving the energy efficiency of such plants. Model based approaches used for control and optimization require accurate models, which can be difficult and/or expensive to obtain in practice due to large variations in equipment characteristics and operating conditions. In this paper, a model-free optimization strategy based on multivariate Extremum Seeking Control (ESC) with penalty terms is proposed for maximizing the energy efficiency of a chilled-water plant with parallel chillers. The feedback to ESC is the total power consumption of the plant consisting of chiller compressors, cooling tower fan, and condenser water pumps, in combination with penalty terms for input-saturation. The control inputs include the cooling tower fan airflow, condenser water flows and evaporator leaving chilledwater temperature setpoint. A band-pass filter array, instead of the high-pass filter in the standard ESC, is adopted to reduce the coupling among the input channels. The proposed strategy is evaluated with simulation study using a Modelica based dynamic simulation model of a chilledwater plant with two parallel chillers. Six cases are presented that demonstrate real-time optimization capability of ESC for this application.
机译:具有多个冷却器的冷冻水厂通常用于大型商业建筑中的冷却。优化为改善此类工厂的能源效率提供了重要机会。用于控制和优化的基于模型的方法需要精确的模型,由于设备特性和操作条件的较大差异,在实践中很难获得和/或昂贵。本文提出了一种基于带有惩罚项的多变量极值搜索控制(ESC)的无模型优化策略,以最大化并联冷却器的冷水厂的能效。 ESC的反馈是该工厂的总能耗,其中包括制冷压缩机,冷却塔风扇和冷凝器水泵,以及输入饱和的惩罚项。控制输入​​包括冷却塔风扇气流,冷凝器水流和蒸发器的冷却水温度设定点。采用带通滤波器阵列,而不是标准ESC中的高通滤波器,可以减少输入通道之间的耦合。通过使用基于Modelica的具有两个并联冷却器的冷水厂的动态仿真模型的仿真研究,对提出的策略进行了评估。提出了六个案例,展示了该应用程序ESC的实时优化功能。

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