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首页> 外文期刊>Circuits, systems, and signal processing >Joint Parameter and Time-Delay Identification Algorithm and Its Convergence Analysis for Wiener Time-Delay Systems
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Joint Parameter and Time-Delay Identification Algorithm and Its Convergence Analysis for Wiener Time-Delay Systems

机译:Wiener时滞系统的联合参数和时间延迟识别算法及其收敛性分析

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摘要

New developments for parameter and time-delay identification are presented for discrete nonlinear systems with delayed input. The proposed approach is based on overparametrization approach which involves subsuming the delay term into an extended numerator polynomial of the linear block of Wiener time-delay system. On this basis, the parameter identification problem can be then solved using recursive least squares-based optimization techniques and then, the delay is calculated directly based on the extended numerator polynomial identified: For a noise-free system, all extended numerator parameters are equal to zero. However in the noisy-output case, it is necessary to introduce an upper bound and the extended parameters whose values are smaller than a threshold level should be identified as zero. Then, the delay is determined as the first number of null extended parameter values. In addition, the convergence of the identified parameter vector is studied. The performances of the proposed identification algorithms are illustrated through simulation examples.
机译:对于具有延迟输入的离散非线性系统,提出了参数和时间延迟识别的新开发。所提出的方法基于过分分度方法,该方法包括将延迟术语归入到维纳时延系统的线性块的扩展分子多项式中。在此基础上,可以使用递归最小二乘基的优化技术来解决参数识别问题,然后,基于识别的扩展分电器多项式直接计算延迟:对于无噪声系统,所有扩展的分子参数等于零。然而,在嘈杂输出的情况下,必须引入上限和扩展参数,其值应识别为零。然后,将延迟确定为第一数量的空扩展参数值。另外,研究了所识别的参数矢量的收敛。通过模拟实施例说明所提出的识别算法的性能。

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