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Dynamic modeling and self-optimizing operation of chilled water systems using extremum seeking control

机译:使用极值搜索控制的冷冻水系统动态建模和自优化操作

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摘要

Energy efficient operation of chilled-water systems is important for the energy saving of commercial buildings. This paper presents an extremum seeking control (ESC) scheme for energy efficient operation of chilled-water system, and presents a Modelica based dynamic simulation model for demonstrating the effectiveness of the proposed control strategy. The simulated plant consists of a water-cooled screw chiller and a mechanical-draft counter-flow wet cooling tower. The ESC scheme takes the total power consumption of chiller compressor and tower fan as feedback, and uses the fan speed setting as control input. The inner-loop controllers for the chiller operation include two proportional-integral (PI) control loops for regulating the evaporator superheat and the chilled water temperature. Simulation was conducted for three scenarios: fixed condition, change in evaporator inlet water temperature, and change in ambient air condition. The simulation results demonstrated the effectiveness of the proposed ESC strategy, and the potential for energy saving is also evaluated. Also investigated is the ESC windup issue caused by the limitation of the fan's maximum operation speed. A back-calculation anti-windup ESC scheme is applied and its effectiveness is validated by simulation results.
机译:冷冻水系统的节能运行对于商业建筑的节能至关重要。本文提出了一种用于冷却水系统节能运行的极值搜索控制(ESC)方案,并提出了一种基于Modelica的动态仿真模型,以证明所提出的控制策略的有效性。模拟工厂由水冷螺杆式冷却器和机械草案逆流湿式冷却塔组成。 ESC方案将冷风机压缩机和塔式风扇的总功耗作为反馈,并使用风扇速度设置作为控制输入。用于制冷机运行的内部回路控制器包括两个比例积分(PI)控制回路,用于调节蒸发器过热和冷却水温度。针对以下三种情况进行了仿真:固定条件,蒸发器入口水温的变化和环境空气条件的变化。仿真结果证明了所提出的ESC策略的有效性,并且还评估了节能潜力。还研究了由于风扇最大运行速度的限制而导致的ESC缠绕问题。应用了反计算抗饱和ESC方案,并通过仿真结果验证了其有效性。

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