Synthesis of passive fractional-order LC n-port with three element orders

Guishu Liang, Zheng Qi
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引用次数: 5

Abstract

Fractional-order circuits find a widespread use in different engineering applications. The problem of realising fractional-order circuits has been discussed by several authors, however, it is far from being solved. Realising fractional-order resistorless passive network with three element orders is been studied. At first, this study extends the two-variable reactance matrix synthesis method to three-variable case, and then proposes a synthesis method of fractional-order reactance matrix with three element orders by variable substitution. The process in above methods mainly involves variable substitution, decomposition of three-variable reactance matrix, extraction of unit inductors, Laurent series expansion, spectral factorisation of two-variable positive semidefinite Hermitian matrix and synthesis of univariable reactance matrix. Then the above-mentioned synthesis process is illustrated by two examples.
三元阶无源分数阶LC n-端口的合成
分数阶电路在不同的工程应用中有着广泛的应用。实现分数阶电路的问题已经被一些作者讨论过,然而,这个问题还远没有解决。研究了三元阶分数阶无阻无源网络的实现。本文首先将二变量电抗矩阵的综合方法推广到三变量情况,然后通过变量替换提出了一种具有三元阶的分数阶电抗矩阵的综合方法。上述方法的过程主要包括变量替换、三变量电抗矩阵的分解、单位电感的提取、劳伦级数展开、两变量正半定厄米特矩阵的谱分解和单变量电抗矩阵的合成。然后通过两个实例说明了上述合成过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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