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A Numerical Implementation of an Extended Luenberger Observer for a Class of Semilinear Hyperbolic PIDEs

机译:一类半线性双曲型PIDE的扩展Luenberger观测器的数值实现

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In this paper, an extended Luenberger observer for a class of semilinear hyperbolic PIDEs is proposed to solve the problem of state estimation. The nonlinear observer error dynamics is linearized and then stabilized locally by applying the backstepping method for time-varying linear hyperbolic PIDEs presented recently. Since the resulting kernel equation is computationally quite expensive, a numerical algorithm is proposed to obtain the solution in an efficient way. Finally, this algorithm is applied to an example with multiple equilibrium points, and the influence of the design parameters on the stability is investigated in more detail.
机译:本文针对一类半线性双曲型PIDE,提出了一种扩展的Luenberger观测器,以解决状态估计问题。非线性观察者误差动力学被线性化,然后通过对最近提出的时变线性双曲型PIDE应用反步法来局部稳定。由于生成的核方程在计算上非常昂贵,因此提出了一种数值算法来以有效的方式获得解。最后,将该算法应用于具有多个平衡点的实例,并详细研究了设计参数对稳定性的影响。

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