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Optimal Approximation, Simulation and Analog Realization of the Fundamental Fractional Order Transfer Function

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TLDR
An optimal approximation of the fundamental linear fractional order transfer function using a distribution of the relaxation time function is provided and a simple analog circuit can serve as a fundamental analog fractional system.
Abstract
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.

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Journal ArticleDOI

Studies on fractional order differentiators and integrators: A survey

TL;DR: Fractional order differentiators and integrators of order 12 and 14 are designed and implemented in real time using TMS320C6713 DSP processor and tested using National instruments education laboratory virtual instrumentation system (NIELVIS).
Journal ArticleDOI

Field programmable analogue array implementation of fractional step filters

TL;DR: In this study, the authors propose the use of field programmable analogue array hardware to implement an approximated fractional step transfer function of order (n+α) where n is an integer and 0 < α < 1.
Journal ArticleDOI

High-quality factor asymmetric-slope band-pass filters: A fractional-order capacitor approach

TL;DR: New techniques for implementing continuous-time second-order band-pass filters with high-quality factors and asymmetric slopes with non-integer-order Laplacian operator sα are presented.
Journal ArticleDOI

Fractional order filter with two fractional elements of dependant orders

TL;DR: This work considers here the case where a filter is constructed using two fractional-order elements of different orders @a and @b, and the design equations for the filter are generalized taking into consideration stability constraints.
Journal ArticleDOI

Fractional-order electronically controlled generalized filters

TL;DR: Novel topologies of fractional-order generalized filters are introduced in this paper, offering the following benefits: realization of lowpass, highpass, bandpass, allpass, or bandstop filter functions by the same topology; resistorless realizations; electronic adjustment of their frequency characteristics as well as their order.
References
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Dispersion and Absorption in Dielectrics I. Alternating Current Characteristics

TL;DR: In this paper, the locus of the dielectric constant in the complex plane was defined to be a circular arc with end points on the axis of reals and center below this axis.
Book

An Introduction to the Fractional Calculus and Fractional Differential Equations

TL;DR: The Riemann-Liouville Fractional Integral Integral Calculus as discussed by the authors is a fractional integral integral calculus with integral integral components, and the Weyl fractional calculus has integral components.
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Automatic Control Systems

TL;DR: This new edition of Automatic Control Systems features a new, accessible approach for students taking introductory courses on control systems while retaining the depth and rigor of Benjamin Kuo’s classic, best-selling text.
Journal ArticleDOI

On the Appearance of the Fractional Derivative in the Behavior of Real Materials

TL;DR: The authors propose des relations constitutives generalisees for les materiaux viscoelastiques dans lesquelles les derivees d'ordre entier par rapport au temps sont remplacees par des derivees de ordre fractionnaire.
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