Contraction theory based observer for a biochemical process

Sayanti Chatterjee, S. Sadhu, T. K. Ghosal
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Abstract

This contribution reports the design of state estimator for a nonlinear process using the recently proposed contraction analysis approach. Although the contraction based stability analysis for nonlinear systems is now an accepted tool for analyzing control systems with uncertain parameters, application of this technique for designing nonlinear state estimator is fairly recent and still evolving. The contraction analysis based estimator design method is briefly outlined before applying the method for a biochemical process, for which existing literature indicates the use of traditional nonlinear observers. A comparative study of estimator performance between an extended Luenberger observer based state estimation and the contraction observer has been reported. Results of simulation show that state estimation using contraction observer is better than that of the classical one.
基于收缩理论的生化过程观测者
本文报告了用最近提出的收缩分析方法设计非线性过程的状态估计器。尽管基于收缩的非线性系统稳定性分析现在是分析具有不确定参数的控制系统的一种公认的工具,但将这种技术应用于设计非线性状态估计器是最近的事情,而且还在不断发展。在将基于收缩分析的估计器设计方法应用于生化过程之前,简要概述了该方法,现有文献表明该方法使用传统的非线性观测器。本文报道了基于扩展Luenberger观测器的状态估计和基于收缩观测器的估计器性能的比较研究。仿真结果表明,利用收缩观测器进行状态估计的效果优于经典观测器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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