Dissipative and generative fractional \(RLC\) circuits in the transient regime
From MaRDI portal
Publication:6048640
DOI10.1016/j.amc.2023.128227MaRDI QIDQ6048640
Stevan M. Cvetićanin, Dusan Zorica
Publication date: 11 October 2023
Published in: Applied Mathematics and Computation (Search for Journal in Brave)
dissipative and generative electric elementsfractional \(RLC\) circuits in transient regimememory type fractional constitutive models
Functions of one variable (26Axx) Circuits, networks (94Cxx) General topics in optics and electromagnetic theory (78Axx)
Cites Work
- Unnamed Item
- Analysis of the transient state in a series circuit of the class \(RL_\beta C_\alpha\)
- Development of fractional order capacitors based on electrolyte processes
- Comparison and validation of integer and fractional order ultracapacitor models
- Mathematical modelling of fractional order circuit elements and bioimpedance applications
- On the convergence and stability of fractional singular Kalman filter and Riccati equation
- Realization of fractional order circuits by a constant phase element
- Passively realizable approximations of non-realizable fractional order impedance functions
- Electromagnetic-based derivation of fractional-order circuit theory
- Signal propagation in electromagnetic media described by fractional-order models
- Analysis of the transient state in a parallel circuit of the class \(RL_{\beta}C_{\alpha}\)
- Fractional \textit{RLC} circuit in transient and steady state regimes
- Multi-precision Laplace transform inversion
- Design equations for fractional-order sinusoidal oscillators: Four practical circuit examples
- Passive and Active Elements Using Fractional ${\rm L}_{\beta} {\rm C}_{\alpha}$ Circuit
- Fractional Signals and Systems
- Frequency characteristics of dissipative and generative fractional RLC circuits
This page was built for publication: Dissipative and generative fractional \(RLC\) circuits in the transient regime