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Implementation of fractional-order transfer functions in the viewpoint of the required fractional-order capacitors

机译:从所需的分数阶电容器的角度实现分数阶传递函数

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摘要

In this paper, based on the concept of restricted difference basis (RDB) for a natural number, the general structures of the pseudo state-space realisations of some classes of commensurate fractional-order transfer functions are obtained. It is shown that the number of needed fractional-order capacitors for implementing a transfer function belonging to each of these classes depends on the commensurate order and also the RDB based on which the pseudo state-space realisation of the considered transfer function is obtained. In this regard, three general classes of commensurate fractional-order transfer functions are introduced which all can be implemented by the same number of fractional-order capacitors. Also, four classes of fractional-order transfer functions of commensurate order 1/2 are introduced which all can be implemented by only one fractional-order capacitor of order 1/2. Finally, as a more general case, four classes of fractional-order transfer functions of commensurate order 1/r(r is an element of N) are studied in aspect of the number and the order of the fractional-order capacitors needed for their implementations. It is proved that these classes of commensurate fractional-order transfer functions can be implemented by r - 1 number of fractional-order capacitors of order 1/r.
机译:本文基于自然数的限制差分基(RDB)的概念,获得了一些相应的分数阶传递函数类的伪状态空间实现的一般结构。示出了用于实现属于这些类别中的每一个类别的传递函数所需的分数阶电容器的数量取决于相应的阶数,并且还取决于RDB,基于RDB,获得了所考虑的传递函数的伪状态空间实现。在这方面,引入了三种通用的相应的分数阶传递函数,它们都可以由相同数量的分数阶电容器实现。此外,介绍了四类相应的1/2级的分数阶传递函数,它们只能通过一个1/2级的分数阶电容器来实现。最后,作为更一般的情况,从实现它们所需的分数阶电容器的数量和阶数方面研究了四类阶数为1 / r(r是N的元素)的分数阶传递函数。 。证明了这些类别的相应分数阶传递函数可以通过r-1个1 / r阶数的分数阶电容器来实现。

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