Local discontinuous Galerkin method for distributed-order time and space-fractional convection–diffusion and Schrödinger-type equations

Author:

Aboelenen Tarek

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,Applied Mathematics,Mechanical Engineering,Ocean Engineering,Aerospace Engineering,Control and Systems Engineering

Reference44 articles.

1. Caputo, M.: Distributed order differential equations modelling dielectric induction and diffusion. Fract. Calc. Appl. Anal. 4, 421–442 (2001)

2. Atanackovic, T., Budincevic, M., Pilipovic, S.: On a fractional distributed-order oscillator. J. Phys. A Math. Gen. 38, 6703 (2005)

3. Caputo, M.: Linear models of dissipation whose Q is almost frequency independentII. Geophys. J. Int. 13, 529–539 (1967)

4. Hartley, T.T., Lorenzo, C.F.: Fractional system identification: an approach using continuous order-distributions. NASA/TM-1999-209640 (1999)

5. Lorenzo, C.F., Hartley, T.T.: Variable order and distributed order fractional operators. Nonlinear Dyn. 29, 57–98 (2002)

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