首页> 外文期刊>International Journal of Applied Mathematics and Computer Science >OPTIMAL APPROXIMATION, SIMULATION AND ANALOG REALIZATION OF THE FUNDAMENTAL FRACTIONAL ORDER TRANSFER FUNCTION
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OPTIMAL APPROXIMATION, SIMULATION AND ANALOG REALIZATION OF THE FUNDAMENTAL FRACTIONAL ORDER TRANSFER FUNCTION

机译:基本分数阶传递函数的最佳逼近,模拟与模拟实现

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摘要

This paper provides an optimal approximation of the fundamental linear fractional order transfer function using a distribution of the relaxation time function. Simple methods, useful in systems and control theories, which can be used to approximate the irrational transfer function of a class of fractional systems for a given frequency band by a rational function are presented. The optimal parameters of the approximated model are obtained by minimizing simultaneously the gain and the phase error between the irrational transfer function and its rational approximation. A simple analog circuit which can serve as a fundamental analog fractional system is obtained. Illustrative examples are presented to show the quality and usefulness of the approximation method.
机译:本文使用松弛时间函数的分布提供了基本线性分数阶传递函数的最佳近似。提出了在系统和控制理论中有用的简单方法,该方法可用于通过有理函数来近似给定频带上一类分数系统的无理传递函数。通过同时最小化无理传递函数与其有理逼近之间的增益和相位误差,可以获得近似模型的最佳参数。获得了可以用作基本模拟分数系统的简单模拟电路。给出了说明性示例以说明近似方法的质量和实用性。

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