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Feedback linearization based control of a variable air volume air conditioning system for cooling applications

机译:基于反馈线性化的可变风量空调系统控制,用于制冷应用

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摘要

Design of a nonlinear control system for a Variable Air Volume Air Conditioning (VAVAC) plant through feedback linearization is presented in this article. VAVAC systems attempt to reduce building energy consumption while maintaining the primary role of air conditioning. The temperature of the space is maintained at a constant level by establishing a balance between the cooling load generated in the space and the air supply delivered to meet the load. The dynamic model of a VAVAC plant is derived and formulated as a MIMO bilinear system. Feedback linearization is applied for decoupling and linearization of the nonlinear model. Simulation results for a laboratory scale plant are presented to demonstrate the potential of keeping comfort and maintaining energy optimal performance by this methodology. Results obtained with a conventional PI controller and a feedback linearizing controller are compared and the superiority of the proposed approach is clearly established.
机译:本文提出了一种通过反馈线性化的变风量空调(VAVAC)设备的非线性控制系统设计。 VAVAC系统试图在保持空调的主要作用的同时减少建筑能耗。通过在空间中产生的冷却负荷与为满足该负荷而输送的空气供应之间建立平衡,将空间的温度保持在恒定水平。推导了VAVAC设备的动态模型,并将其公式化为MIMO双线性系统。反馈线性化用于非线性模型的去耦和线性化。给出了实验室规模工厂的仿真结果,以证明通过这种方法保持舒适性并保持能源最佳性能的潜力。比较了使用常规PI控制器和反馈线性控制器获得的结果,并清楚地确定了所提出方法的优越性。

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