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Design of an Improved Implicit Generalized Predictive Controller for Temperature Control Systems

机译:用于温度控制系统改进的隐式广义预测控制器的设计

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摘要

In this study, an implicit proportional-integral-based generalized predictive controller (PIGPC) is proposed to effectively control temperatures of industrial systems with time-varying delay. The controller is designed to optimize the target function with the proportional-integral structure for improving the controlling performance of implicit PIGPC. Meanwhile, the recursive least square method is leveraged to directly identify the parameters of controller. Compared with the conventional implicit generalized predictive controller, the process of parameter identification converges faster. The Lagrange multiplier method is introduced to solve the optimal control law of implicit PIGPC by considering the input constraints of system. An approximate decoupling controller for multivariable systems is proposed to eliminate the coupling effects. Simulation and experimental results manifest the effectiveness and feasibility of the proposed controller in temperature control systems.
机译:在该研究中,提出了一种隐含的比例积分的广义预测控制器(PIGPC)以有效地控制工业系统的温度,随着时变延迟。控制器旨在利用比例整体结构优化目标功能,以改善隐式PIGPC的控制性能。同时,利用递归最小二乘法直接识别控制器的参数。与传统的隐式通用预测控制器相比,参数识别过程更快地收敛。引入拉格朗日乘法器方法来解决系统输入限制来解决隐式仔猪的最佳控制定律。提出了一种用于多变量系统的近似解耦控制器,以消除耦合效果。仿真和实验结果表明了所提出的控制器在温度控制系统中的有效性和可行性。

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