Design of an Integrated Method for Multi-Mesh RC Circuit Analysis Using Generalized Fractional Laplace-Fourier and Hybrid Transforms

Authors

  • Usha Kailas Shirke,Dr. G.V.V. Jagannadha Rao, Dr. Varsha Haridas Sadrani

Keywords:

Fractional Calculus, Multi-Mesh RC Circuits, Laplace Transform, Fourier Transform, Symbolic Computations

Abstract

The growing complexity of contemporary electronic systems, along with demands for functional integration, has iteratively increased the necessity for more accurate and efficient methods in analyzing multi-mesh RC circuits. Traditional methodologies have usually been based on standard Laplace and Fourier transforms, which often cannot cope with real non-ideal behaviors and frequency-dependent anomalies of components in practice.

References

Wilson, M., Cowie, L., Farrow, V SETS. et al. Rapid time-domain simulation of fractional capacitors with SPICE. J Comput Electron 23, 677–689 (2024). https://doi.org/10.1007/s10825-024-02160-x

Arıcıoğlu, B. RNG and circuit implementation of a fractional order chaotic attractor based on two degrees of freedom nonlinear system. Analog Integr Circ Sig Process 112, 49–63 (2022). https://doi.org/10.1007/s10470-022-02040-z

Downloads

Published

2024-12-16

How to Cite

Usha Kailas Shirke,Dr. G.V.V. Jagannadha Rao, Dr. Varsha Haridas Sadrani. (2024). Design of an Integrated Method for Multi-Mesh RC Circuit Analysis Using Generalized Fractional Laplace-Fourier and Hybrid Transforms. Journal of Computational Analysis and Applications (JoCAAA), 33(08), 8027–8052. Retrieved from https://eudoxuspress.com/index.php/pub/article/view/5141

Issue

Section

Articles