采用切比雪夫谱离散化方法进行高精度状态和参数估计

R. Zivanovic
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引用次数: 3

摘要

本文提出了一种非线性动力系统的状态和参数估计算法。通常,估计是通过迭代求解一系列具有等式约束的线性最小二乘问题得到的。最小二乘问题是基于切比雪夫谱离散化的。切比雪夫网格分辨率自动确定,以最大限度地提高计算精度。该算法的关键在于在求解各种网格分辨率的最小二乘问题时,采用了质心插值公式。该插值公式数值稳定,计算有效,具有较高的估计精度。通过两个算例验证了算法的准确性。
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High-accuracy state and parameter estimation using Chebyshev spectral discretization method
In this paper, we propose an algorithm for state and parameter estimation of nonlinear dynamical systems. In a usual manner, estimation is obtained by solving iteratively a sequence of linear least squares problems with equality constraints. Formulation of the least squares problem is based on Chebyshev spectral discretization. Chebyshev grid resolution is determined automatically to maximize computation accuracy. The key quality of the algorithm lies in the use of the barycentric interpolation formula when solving the least squares problem with various grid resolutions. High-accuracy of the proposed estimation method is contributed to this interpolation formula that is found to be numerically stable and computationally effective. Two numerical examples are presented to demonstrate accuracy of the proposed algorithm.
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