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Evaluation of an Extremum Seeking Control Based Optimization and Sequencing Strategy for Multiple-chiller Chilled-water Plant

机译:基于极值寻求控制的多冷冻机冷冻水厂的遥控优化和测序策略评价

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The ventilation and air conditioning systems of large commercial buildings are typically driven by chilled-water plants with multiple chillers. Real-time optimization and sequencing of such plants is thus critical for building efficiency (AHRI 2011). Due to the complexity and cost for calibrating chiller plant in field operation, model-free control has become an attractive solution. In an earlier study, Mu et al. (2015) develop an Extremum Seeking Control (ESC) based real-time optimization and sequencing strategy for a chiller-water plant with parallel chillers. Two schemes were proposed. For Scheme A, a chiller is turned on based on the measurement of chilled water valve position and is turned off when a chiller compressor is running at its nominal minimum speed. For Scheme B, a chiller is turned on and off based on the measurement of operating cooling load. Mu (2015) conducts a comprehensive simulation study on Scheme A. In this study, a comprehensive study is conducted for Scheme B under various scenarios and testing conditions, and the simulation results are compared with those from Scheme A.
机译:大型商业建筑的通风和空调系统通常由含有多个冷却器的冷却水厂驱动。因此,这种植物的实时优化和测序对于建筑效率至关重要(AHRI 2011)。由于校准冷却器工厂在现场操作中的复杂性和成本,无模型控制已成为一个有吸引力的解决方案。在早期的研究中,Mu等人。 (2015)为具有平行冷却器的冷却器水厂的实时优化和测序策略开发了基于极端的寻求控制(ESC)的实时优化和排序策略。提出了两种方案。对于方案A,基于冷却水阀位置的测量,开启冷却器,当冷却器压缩机以其标称最小速度运行时,关闭。对于方案B,基于操作冷却负载的测量,开启和关闭冷却器。 MU(2015)对方案A进行全面的仿真研究。在本研究中,在各种情况和测试条件下对方案B进行综合研究,并将模拟结果与方案A的仿真结果进行了比较。

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