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Incorporating fan control into air-conditioning systems to improve energy efficiency and transient response

机译:将风扇控制集成到空调系统中,以提高能效和瞬态响应

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摘要

Modern air-conditioners frequently incorporate variable-speed compressors and variable-opening expansion valves with feedback control to improve performance and power efficiency. Because making the fan speeds adjustable adds flexibility to the control design and thus can lead to further improvements in performance and efficiency, this paper proposes two control algorithms, respectively, incorporating the outdoor fan and the indoor fan as the additional control inputs for air-conditioning systems. Both of the control algorithms are designed based on a low-order, linear model obtained from system identification. The first algorithm, which modulates the outdoor fan speed, can reduce the steady state power consumption if the temperature difference between the condenser and the outdoor environment is controlled properly. The second algorithm, which adds one more degree of freedom to control by modulating the indoor fan speed, can improve the transient response because actuator saturations become less likely to occur. The two control algorithms are implemented on a split-type residential air-conditioner and their respective performance is validated experimentally.
机译:现代空调经常将变速压缩机和可变开度膨胀阀与反馈控制结合在一起,以提高性能和功率效率。因为使风扇速度可调可增加控制设计的灵活性,从而可以进一步提高性能和效率,所以本文提出了两种控制算法,分别将室外风扇和室内风扇作为空调的附加控制输入系统。两种控制算法都是基于从系统识别中获得的低阶线性模型设计的。如果冷凝器与室外环境之间的温度差得到适当控制,则调节室外风扇速度的第一种算法可以减少稳态功耗。第二种算法通过调节室内风扇速度增加了一个更大的自由度来进行控制,由于执行器饱和变得不太可能发生,因此它可以改善瞬态响应。两种控制算法均在分体式家用空调器上实现,并通过实验验证了它们各自的性能。

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