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Decoupling Control of a Variable-Air-Volume Air-Conditioning System Based on State Feedback

机译:基于状态反馈的可变风量空调系统去耦控制

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Variable-Air-Volume (VAV) air-conditioning systems have the features of multi-variable, strong coupling and non-linearity. Conventionally,there are three control loops to regulate the process variables. However, When the control loops function simultaneously, intense coupling or interaction among them occurs, which directly affects the performance and the stability of the VAV system. In this study, we aimed to eliminate the coupling by using state feedback decoupling method. First, we obtained a minimum realization of state space model from the transfer function matrix model of the VAV system in a laboratory; Then, an state feedback decoupling control system was designed based on multiply variable system control theory; Finally, on-site test in a laboratory was carried out to compare the effects of decoupling control with that of conventional control. Test results show that the proposed decoupling techniques improve the stability of the system significantly, thus validating the feasibility of state-feedback decoupling application to VAV systems.
机译:可变空气量(VAV)空调系统具有多变量,强耦合和非线性的特点。传统上,有三个控制回路来调节过程变量。然而,当控制回路同时起作用时,发生它们之间的强烈耦合或相互作用,这直接影响了VAV系统的性能和稳定性。在这项研究中,我们旨在通过使用状态反馈去耦方法来消除耦合。首先,我们从实验室中VAV系统的传递函数矩阵模型获得了最小的状态空间模型;然后,基于乘法变量系统控制理论设计了一种状态反馈解耦控制系统;最后,进行了实验室的现场测试,以比较解耦控制与传统对照的影响。测试结果表明,提出的解耦技术显着提高了系统的稳定性,从而验证了国家反馈解耦应用于VAV系统的可行性。

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