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Multi-loop nonlinear internal model controller design based on a dynamic fuzzy partial least squares model

机译:基于动态模糊偏最小二乘模型的多环非线性内模控制器设计

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摘要

In this paper, a dynamic fuzzy partial least squares (DFPLS) modeling method is proposed. Under such framework, the multiple input multiple output (MIMO) nonlinear system can be automatically decomposed into several univariate subsystems in PLS latent space. Within each latent space, a dynamic fuzzy method is introduced to model the inherent dynamic and nonlinear feature of the physical system. The new modeling method combines the decoupling characteristic of PLS framework and the ability of dynamic nonlinear modeling in the fuzzy method. Based on the DFPLS model, a multi-loop nonlinear internal model control (IMC) strategy is proposed. A pH neutralization process and a methylcyclohexane (MCH) distillation column from Aspen Dynamic Module are presented to demonstrate the effectiveness of the proposed modeling method and control strategy.
机译:本文提出了一种动态模糊偏最小二乘(DFPLS)建模方法。在这种框架下,多输入多输出(MIMO)非线性系统可以自动分解为PLS潜在空间中的几个单变量子系统。在每个潜在空间内,引入了一种动态模糊方法来对物理系统的固有动态和非线性特征进行建模。新的建模方法结合了PLS框架的解耦特性和模糊方法中动态非线性建模的能力。基于DFPLS模型,提出了一种多环非线性内模控制(IMC)策略。提出了Aspen Dynamic Module的pH中和工艺和甲基环己烷(MCH)蒸馏塔,以证明所提出的建模方法和控制策略的有效性。

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