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Experimental Study on a Control Method for Air-conditioning System Integrated with Small-scale ON/OFF Controlled Chiller

机译:用小规模开/关控制冷却器集成空调系统控制方法的试验研究

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On/off controlled chiller is wildly used for small-scale air-conditioning (AC) system. For many existing systems, the chiller may be switched on and off frequently, which speeds up the wear and aging of the chiller and introduces significant disturbances on the space temperature control. This paper presents an experimental study on a control method which combines a set-point reset technique with a bilinear control technique. The set-point reset technique is adopted to reduce the on/off frequency of the chiller, and the bilinear control is used to track the space temperature set-point. The control method was realized in a building automation system (BAS) and applied to a test rig. The experimental results show that the set-point reset technique can reduce the chiller on/off frequency obviously. The bilinear control can achieve more robust space temperature control while comparing with conventional PI control. This proposed control method has the potential to be used in the existing on/off chiller integrated AC systems with the small chilled water volume. It is able to reduce the on/off frequency of the chiller efficiently and guarantee the robustness of the space temperature control simultaneously from the control role.
机译:ON / OFF控制的冷却器野蛮地用于小型空调(AC)系统。对于许多现有系统,可以经常打开和关闭冷却器,这加速了冷却器的磨损和老化,并在空间温度控制上引入了显着的干扰。本文介绍了一种对与双线性控制技术相结合的控制方法的实验研究。采用设定点复位技术来减少冷却器的开/关频率,并且双线性控制用于跟踪空间温度设定点。控制方法在建筑自动化系统(BAS)中实现并应用于试验台。实验结果表明,设定点复位技术可以显然可以减少冷却器开/关频率。与传统PI控制相比,双线性控制可以实现更强大的空间温度控制。该提出的控制方法具有潜力可用于具有小冷却水体积的现有开/关冷却器集成的AC系统。它能够有效地减少冷却器的开/关频率,并从控制角色同时保证空间温度控制的鲁棒性。

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