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Parameter identification of linear multi-delay systems via a hybrid of block-pulse functions and Taylor's polynomials

机译:通过块脉冲函数和泰勒多项式的混合线性多延迟系统的参数识别

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摘要

In this paper, an efficient and effective procedure is successfully developed for parameter identification of linear time-invariant multi-delay systems. The proposed framework is based on a hybrid of block-pulse functions and Taylor's polynomials. Two upper error bounds corresponding to hybrid functions are established. The excellent properties of these functions together with the associated operational matrices of integration and delay are utilised to transform the original problem into a system of linear algebraic equations. The least squares method is then implemented for estimation of the unknown parameters. Several numerical experiments are investigated to demonstrate the usefulness and effectiveness of the proposed procedure. Easy implementation, simple operations and accurate solutions are the main features of the suggested approximation scheme.
机译:在本文中,成功开发了高效且有效的程序,用于线性时间不变多延迟系统的参数识别。 所提出的框架基于块脉冲函数和泰勒的多项式的混合。 建立了对应于混合函数的两个上误差界限。 这些功能的优异特性以及相关的集成和延迟的相关操作矩阵将原始问题转换为线性代数方程的系统。 然后实现最小二乘方法以估计未知参数。 研究了几个数值实验以证明所提出的程序的有用性和有效性。 简单的实施,简单的操作和准确的解决方案是建议近似方案的主要特征。

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