A new RLC series-resonant circuit modeled by local fractional derivative

Author:

Dong Mei1,Li Cui-Ling1,Chen Wu-Fa1,Li Guo-Qian1,Wang Kang-Jia2

Affiliation:

1. College of Information Engineering, HuiZhou Economics and Polytechnic College, HuiZhou, China

2. School of Physics and Electronic Information Engineering, Henan Polytechnic University, Jiaozuo, China

Abstract

The local fractional derivative has gained more and more attention in the field of fractal electrical circuits. In this paper, we propose a new ?-order RLC** resonant circuit described by the local fractional derivative for the first time. By studying the non-differentiable lumped elements, the non-differentiable equivalent imped?ance is obtained with the help of the local fractional Laplace transform. Then the non-differentiable resonant angular frequency is studied and the non-differentiable resonant characteristic is analyzed with different input signals and parameters, where it is observed that the ?-order RLC resonant circuit becomes the ordinary one for the special case when the fractional order ? = 1. The obtained results show that the local fractional derivative is a powerful tool in the description of fractal circuit systems.

Publisher

National Library of Serbia

Subject

Renewable Energy, Sustainability and the Environment

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