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Modeling and analog realization of the fundamental linear fractional order differential equation

机译:基本线性分数阶微分方程的建模和模拟实现

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摘要

This paper provides a rational function approximation of the irrational transfer function of the fundamental linear fractional order differential equation, namely,(tau(o))(m dmx(t)/dtm) + x(t) = e(t) whose transfer function is given by G(s) = X(s)/epsilon(s) = 1/[1+(tau o(s))/(m)] for 0 < m < 2. Simple methods, useful in system and control theory, which consists of approximating, for a given frequency band, the transfer function of this fractional order system by a rational function are presented. The impulse and step responses of this system are derived and simple analog circuit which can serve as fundamental analog fractional order system is also obtained. Illustrative examples are presented to show the exactitude and the usefulness of the approximation methods.
机译:本文提供了基本线性分数阶微分方程的无理传递函数的有理函数逼近,即(tau(o))(m dmx(t)/ dtm)+ x(t)= e(t)对于0

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