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Observer design for a class of uncertain nonlinear systems with sampled outputs-Application to the estimation of kinetic rates in bioreactors

机译:一类具有采样输出的不确定非线性系统的观测器设计-在生物反应器动力学速率估计中的应用

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摘要

A continuous-discrete time observer is proposed for a class of uncertain nonlinear systems where the output is available only at non uniformly spaced sampling instants. The underlying correction term depends on the output observation error and is updated in a mixed continuous-discrete fashion. The proposed observer is first introduced under a set of differential equations with instantaneous state impulses corresponding to the measured samples and their estimates. Two features of the proposed observer are worth to be pointed out. The first one consists in the simplicity of its calibration while the second one lies in its comprehensive convergence analysis. More specifically, it is shown that in the case of noise-free sampled outputs, the observation error lies in a ball centered at the origin and its radius is proportional to the bounds of the uncertainties and the sampling partition diameter. Moreover, in the free uncertainties case, the exponential convergence to zero of the observation error is established under a well-defined condition on the maximum value of the sampling partition diameter. The ability of the proposed observer to perform a suitable estimation of the reactions rates in biochemical reactors is highlighted through a simulation study dealing with an ethanolic fermentation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:针对一类不确定的非线性系统,提出了一种连续离散时间观测器,该系统的输出仅在非均匀间隔的采样时刻才可用。基本的校正项取决于输出观察误差,并以混合连续离散方式更新。首先在一组微分方程组下引入建议的观测器,该组微分方程组具有与所测量的样本及其估计相对应的瞬时状态脉冲。值得一提的是,建议的观察者的两个特征。第一个在于其校准的简单性,而第二个在于其全面的收敛性分析。更具体地,示出了在无噪声采样输出的情况下,观察误差位于以原点为中心的球中,并且其半径与不确定性的界限和采样分隔物直径成比例。此外,在自由不确定性的情况下,在明确定义的条件下,采样间隔直径的最大值建立了观察误差的指数收敛至零。通过对乙醇发酵的模拟研究,突出了建议的观察者对生化反应器中反应速率进行适当估计的能力。 (C)2015 Elsevier Ltd.保留所有权利。

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