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An Optimal Hybrid Control Method for Energy-Saving of Chilled Water System in Central Air Conditioning

机译:中央空调冷冻水系统节能的最优混合控制方法

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摘要

Chilled water system of central air conditioning is a typical hybrid system; variable frequency behavior with amplitude limited of pumps reflects continuous and discrete dynamic characteristics. The way of energy-saving is variable water volume, via variable frequency behavior of pumps to gain adjustment of power consumption. Facing the situation of the variable frequency pumps with parallel operation, single continuous or discrete modeling cannot reflect the hybrid features. Thus, the control method will have some questions, such as bad energy-saving effect, difficult accurate adjustment of cold capacity, and low running energy efficiency. However, hybrid system modeling can reflect hybrid dynamic behavior of pumps, which is combining continuous and discrete features. The questions of nonlinear and multiparameters can be solved by control method based on hybrid system. Here, an optimum control method is proposed with the principle of the minimum, by setting the minimum power consumption as the performance function in fixed time, which realizes variable control of pumps and accurate adjustment of temperature inside room. At last, it shows the system characteristics and energy-saving affection by hybrid system modeling and the optimum control method.
机译:中央空调的冷水系统是典型的混合系统。泵的幅度受限的可变频率行为反映了连续和离散的动态特性。节能方式是通过改变水泵的频率特性来改变水量,从而获得功耗的调整。面对并联运行的变频泵的情况,单个连续或离散模型无法反映混合特征。因此,该控制方法存在节能效果差,冷量难以准确调节,运行能源效率低等问题。但是,混合系统建模可以反映泵的混合动态行为,该特性结合了连续和离散的特征。非线性和多参数问题可以通过基于混合系统的控制方法来解决。在此,提出了一种以最小原则为基础的最优控制方法,通过将最小功耗作为固定时间的性能函数,实现了水泵的可变控制和室内温度的精确调节。最后,通过混合系统建模和最优控制方法,展示了系统的特点和节能效果。

著录项

  • 来源
    《Journal of control science and engineering》 |2018年第2期|3750859.1-3750859.9|共9页
  • 作者单位

    Faculty Development and Educational Technology Center, Guangdong University of Finance and Economics, Guangzhou 510320, China,School of Electric Power, South China University of Technology, Guangzhou 510640, China,Foshan Institute of Modern Services, Guangdong University of Finance and Economics, Foshan 528100, China;

    Center of Network, Guangdong AIB Polytechnic College 510507, China;

    School of Electric Power, South China University of Technology, Guangzhou 510640, China;

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