Guaranteed state and parameter estimation for one-dimensional chaotic system

A. S. Sheludko, Vladimir I. Shiryaev
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Abstract

In this article, the problem of state and parameter estimation is considered for an one-dimensional chaotic system. Based on the guaranteed approach and interval computations, the proposed algorithm finds interval estimates (information sets) of unknown variables. Common estimation techniques (least squares method, modifications of the Kalman filter for nonlinear systems) can be combined with the proposed guaranteed algorithm to overcome the difficulties related with a small number of available observations and nonlinearity. The numerical example is given for the logistic map.
一维混沌系统的保证状态与参数估计
研究一维混沌系统的状态和参数估计问题。该算法基于保证方法和区间计算,找到未知变量的区间估计(信息集)。常用的估计技术(最小二乘法,对非线性系统的卡尔曼滤波的改进)可以与所提出的保证算法相结合,以克服与少量可用观测值和非线性相关的困难。给出了逻辑映射的数值算例。
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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