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Control of Nonlinear Systems Represented by Galerkin Models Using Adaptation-based Linear Parameter-varying Models

机译:基于自适应的线性参数变化模型对Galerkin模型所代表的非线性系统进行控制

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This paper studies the control of nonlinear Galerkin systems, which are an important class of nonlinear systems that arise in reduced-order modeling of infinite-dimensional systems. A novel approach is proposed in which a linear parameter-varying (LPV) model representing the Galerkin model is built, where the parameter variation is dictated by a specially designed adaptation scheme. The controller design is then carried out on the simpler LPV model, instead of dealing directly with the complicated nonlinear Galerkin system. An automatically scheduled H-infinity controller is designed using the LPV model, and it is proven that this controller will indeed achieve the desired stabilization when applied to the nonlinear Galerkin model. The approach is illustrated with an example on cavity flow control, where the design is seen to produce satisfactory results in suppressing unwanted oscillations.
机译:本文研究了非线性Galerkin系统的控制,这是在无穷维系统的降阶建模中出现的一类重要的非线性系统。提出了一种新颖的方法,其中建立了代表Galerkin模型的线性参数变化(LPV)模型,其中参数变化由专门设计的自适应方案决定。然后,在简单的LPV模型上进行控制器设计,而不是直接处理复杂的非线性Galerkin系统。使用LPV模型设计了一个自动调度的H-infinity控制器,并且证明了该控制器在应用于非线性Galerkin模型时确实可以实现所需的稳定性。以腔流控制为例说明了该方法,该设计在抑制不必要的振荡方面产生了令人满意的结果。

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