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Improving Comfort and Air Conditioner Performance by Optimizing Controllers under Actual Usage Conditions

机译:通过在实际使用条件下优化控制器来提高舒适性和空调性能

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摘要

This study is to increase the efficiency of the air conditioning system under actual conditions of use. In order to improve the increase in energy consumption due to control without considering indoor cooling load fluctuations, we review it compared to conventional control methods in two respects. First, we examined the control method to reduce energy consumption by varying the evaporative pressure of the system according to the cooling load, and secondly, further reducing energy consumption by controlling the revolutions per minute (RPM) of the fan of the indoor unit at the same time as the pressure fluctuation under the cooling load. We found that changing the target pressure depending on the difference between the target temperature and room temperature can control temperature more efficiently and save energy than using fixed target pressure, and that the effect increases when applying the control of the air volume of the indoor air. Cleaning up the resulting values, the fan-load-control condition of the cooling-load-estimation control method showed an energy savings effect of 16.1–48.7% compared with the fixed-pressure control method and 1.2–37.7% compared with the cooling-load-estimation control method.
机译:本研究是在实际使用条件下提高空调系统的效率。为了改善由于控制而导致的能耗的增加而不考虑室内冷却负荷波动,我们将其与常规控制方法相比在两个方面相比。首先,通过根据冷却负荷改变系统的蒸发压力,然后通过控制室内单元的风扇的每分钟转速(RPM)来降低系统的蒸发压力,通过控制室内单元的风扇的每分钟(RPM)的蒸发压力来降低能量消耗来降低能量消耗。与冷却负荷下的压力波动相同。我们发现根据目标温度和室温之间的差异改变目标压力可以更有效地控制温度并节省能量而不是使用固定目标压力,并且在施加室内空气的空气量的控制时效果增加。清理所产生的值,冷却负荷估计控制方法的风扇负载控制条件显示,与固定压力控制方法相比,节能效应为16.1-48.7%,与冷却相比,1.2-37.7%。负载估计控制方法。

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