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Experimental study on control performance comparison between model predictive control and proportion-integral-derivative control for radiant ceiling cooling integrated with underfloor ventilation system

机译:模型预测控制与辐射天花板冷却辐射冷却辐射冷却比较的控制性能比较实验研究

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摘要

Radiant ceiling cooling integrated with underfloor ventilation (RCCUV) system has energy-saving potential in buildings. However, control problem results in its energy-saving effect lower than expected and restricts its application. Conventional control is inadequate due to its poor performance, control lag and low economy, etc. The objectives of this study are to: (1) develop advanced model predictive control (MPC) controller of RCCUV system; and (2) experimentally discuss MPC controller performance compared with conventional proportional integral-derivative (PID) controller performance. The experimental results indicated that under experimental step setpoint variations, the adjusting time of controlled variables using MPC controller was less than that of using PID controller. The time to reach recommended thermal comfort range using MPC controller was 3 min, and was 13 min using PID controller under experimental step setpoint variations. Meanwhile, MPC controller reduced energy consumption of RCCUV system by 13.2% compared with PID controller during 2 h of experimental period. Thus, control performance of MPC controller is superior to that of PID controller in every aspect. The study provides an advanced superior MPC controller for RCCUV system.
机译:与地板通风(RCCUV)系统一体化的辐射天花板冷却在建筑物中具有节能潜力。然而,控制问题导致其节能效果低于预期并限制其应用。由于其性能差,控制滞后和低经济等,传统控制不足等。本研究的目的是:(1)开发RCCUV系统的先进模型预测控制(MPC)控制器; (2)与传统的比例积分衍生物(PID)控制器性能进行了实验讨论MPC控制器性能。实验结果表明,在实验步骤设定点变化下,使用MPC控制器的受控变量的调整时间小于使用PID控制器的调节时间。使用MPC控制器达到推荐的热舒适度范围的时间为3分钟,在实验步骤设定点变化下使用PID控制器为13分钟。同时,与实验期间2小时的PID控制器相比,MPC控制器将RCCUV系统的能耗降低13.2%。因此,MPC控制器的控制性能优于每个方面的PID控制器的控制性能。该研究为RCCUV系统提供了先进的优质MPC控制器。

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