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Nonlinear observer design for state and disturbance estimation

机译:用于状态和干扰估计的非线性观测器设计

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摘要

A new systematic framework for nonlinear observer design that allows the concurrent estimation of the process state variables together with key unknown process or sensor disturbances is proposed. The nonlinear observer design problem is addressed within a similar methodological framework as the one introduced in [N. Kazantzis, C. Kravaris, Nonlinear observer design using Lyapunov's auxiliary theorem, Systems Control Lett. 34 (1998) 241; A.J. Krener, M. Xiao, Nonlinear observer design in the Siegel domain, SIAM J. Control Optim. 41 (2002) 932.] for state estimation purposes only. From a mathematical standpoint, the problem under consideration is addressed through a system of first-order singular PDEs for which a rather general set of solvability conditions is derived. A nonlinear observer is then designed with a state-dependent gain that is computed from the solution of the system of singular PDEs. Under the aforementioned conditions, both state and disturbance estimation errors converge to zero with assignable rates. The convergence properties of the proposed nonlinear observer are tested through simulation studies in an illustrative example involving a biological reactor. (c) 2007 Elsevier B.V. All rights reserved.
机译:提出了一种用于非线性观测器设计的新系统框架,该框架允许同时估计过程状态变量以及关键的未知过程或传感器干扰。非线性观测器设计问题是在与[N. Kazantzis,C. Kravaris,使用Lyapunov辅助定理的非线性观察者设计,Systems Control Lett。 34(1998)241; A.J. Krener,M. Xiao,Siegel域中的非线性观测器设计,SIAM J. Control Optim。 41(2002)932.]仅用于状态估计。从数学的角度来看,正在考虑的问题是通过一阶奇异PDE系统解决的,对于该系统导出了一套相当通用的可溶性条件。然后设计一个非线性观测器,其状态依赖增益是从奇异PDE系统的解中计算得出的。在上述条件下,状态和干扰估计误差均以可分配的比率收敛到零。在涉及生物反应器的说明性示例中,通过模拟研究对提出的非线性观测器的收敛特性进行了测试。 (c)2007 Elsevier B.V.保留所有权利。

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