LPV奇异系统观测器在二元精馏塔上的应用

A. Aguilera, M. Adam, C. Astorga, D. Theilliol, J. Ponsart
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引用次数: 2

摘要

本文将全阶观测器应用于二元精馏塔,采用一种简化非线性模型的策略。主要对于过程系统,用微分代数方程来描述对象的动力学行为是可行的。数学模型是对传统的化学和物理定律(如质量、能量、动量等守恒定律)的扩展,以包括可被视为奇异系统的时变参数。然后,将二元精馏塔模型表示为线性参数变量(LPV)奇异系统。奇异系统提供了传统系统所没有的特殊功能。从这个意义上说,所提出的模型保持了植物的动力学和物理特性。该方法保证了观测器系统的正则性和收敛性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Observer for LPV singular systems applied to a binary distillation column
In this work the application of a full-order observer to a binary distillation column, using a strategy to simplify the nonlinear model is presented. Mainly for process system, it is feasible to use differential-algebraic equations for describing the dynamical behavior of the plant. A mathematical model is an extension of the traditional chemical and physical laws (such as the laws of conservation of mass, energy, momentum, etc.) to include the time-varying parameters which can be seen as singular systems. Then, the binary distillation column model is presented as a Linear Parameter Variant (LPV) singular system. Singular systems provide special features not found in traditional systems. In that sense, the proposed model maintains the dynamics and physical properties of the plant. The applied method guarantees the regularity and the convergence of the observer system.
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