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Non-linear control of water flow dynamics by input-output linearization based on a collocation method model

机译:基于搭配法模型的投入产出线性化非线性水流动力学控制

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This paper is devoted to the non-linear control of irrigation canals or dam-river systems. Open-channel dynamics are based on the well-known Saint-Venant non-linear partial differential equations [9]. Here, a finite-dimensional model previously developed in [7], and based on a collocation Galerkin method together with a functional approximation by Lagrange polynomials, is used as a basic model for the control. In [7] it has indeed been shown how such a model is much more tractable than those obtained from classical finite-difference or finite-element methods (from the viewpoint of both state dimension and structure) and well suited to control purposes. In this paper we show in more details how this model can be used to design a non-linear controller using techniques of dynamic input-output linearization for the goal of controlling water levels along an open-channel reach.
机译:本文致力于灌溉渠道或大坝河系的非线性控制。明渠动力学基于著名的Saint-Venant非线性偏微分方程[9]。这里,先前在[7]中开发的有限维模型被用作控制的基本模型,该有限维模型基于搭配伽勒金方法以及拉格朗日多项式的函数逼近。在[7]中,确实表明了这种模型比从经典的有限差分法或有限元方法(从状态维和结构的角度来看)所获得的模型更易于处理,并且非常适合于控制目的。在本文中,我们将更详细地展示如何使用此模型通过动态输入-输出线性化技术来设计非线性控制器,以控制沿明渠河段的水位。

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