A leap-frog meshless method with radial basis functions for simulating electromagnetic wave splitter and rotator
DOI10.1016/J.ENGANABOUND.2020.06.010zbMath1464.78025OpenAlexW3039487051MaRDI QIDQ785196
Publication date: 5 August 2020
Published in: Engineering Analysis with Boundary Elements (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.enganabound.2020.06.010
PDEs in connection with optics and electromagnetic theory (35Q60) Spectral, collocation and related methods for initial value and initial-boundary value problems involving PDEs (65M70) Electromagnetic theory (general) (78A25) Spectral, collocation and related methods applied to problems in optics and electromagnetic theory (78M22) Numerical radial basis function approximation (65D12)
Related Items (1)
Uses Software
Cites Work
- Unnamed Item
- A reduced radial basis function method for partial differential equations on irregular domains
- Solving time-dependent differential equations by multiquadric trigonometric quasi-interpolation
- A RBF-WENO finite volume method for hyperbolic conservation laws with the monotone polynomial interpolation method
- Analysis and application of the nodal discontinuous Galerkin method for wave propagation in metamaterials
- Recent advances on radial basis function collocation methods
- A meshless local Petrov-Galerkin method for the time-dependent Maxwell equations
- Multiscale RBF collocation for solving PDEs on spheres
- An RBF-FD closest point method for solving PDEs on surfaces
- Adaptive radial basis function and Hermite function pseudospectral methods for computing eigenvalues of the prolate spheroidal wave equation for very large bandwidth parameter
- A numerical method for solution of the two-dimensional sine-Gordon equation using the radial basis functions
- A comparison of efficiency and error convergence of multiquadric collocation method and finite element method.
- RBF-based meshless local Petrov Galerkin method for the multi-dimensional convection-diffusion-reaction equation
- Mathematical models for dispersive electromagnetic waves: an overview
- The use of proper orthogonal decomposition (POD) meshless RBF-FD technique to simulate the shallow water equations
- Error analysis and numerical simulation of magnetohydrodynamics (MHD) equation based on the interpolating element free Galerkin (IEFG) method
- A numerical scheme based on radial basis function finite difference (RBF-FD) technique for solving the high-dimensional nonlinear Schrödinger equations using an explicit time discretization: Runge-Kutta method
- Mixed methods for fourth-order elliptic and parabolic problems using radial basis functions
- Multiquadrics -- a scattered data approximation scheme with applications to computational fluid-dynamics. II: Solutions to parabolic, hyperbolic and elliptic partial differential equations
- Overlapping domain decomposition method by radial basis functions
- Multiresolution methods in scattered data modelling.
- A stable method for the evaluation of Gaussian radial basis function solutions of interpolation and collocation problems
- A compact integrated RBF method for time fractional convection-diffusion-reaction equations
- The solution of nonlinear Green-Naghdi equation arising in water sciences via a meshless method which combines moving Kriging interpolation shape functions with the weighted essentially non-oscillatory method
- Simulating backward wave propagation in metamaterial with radial basis functions
- A radial basis function (RBF)-finite difference (FD) method for diffusion and reaction-diffusion equations on surfaces
- An adaptive \(P_1\) finite element method for two-dimensional transverse magnetic time harmonic Maxwell's equations with general material properties and general boundary conditions
- Optimal non-dissipative discontinuous Galerkin methods for Maxwell's equations in Drude metamaterials
- Analysis of spatial high-order finite difference methods for Maxwell's equations in dispersive media
- Mathematical Analysis and Time-Domain Finite Element Simulation of Carpet Cloak
- Kernel techniques: From machine learning to meshless methods
- A Primer on Radial Basis Functions with Applications to the Geosciences
- Cloaking Devices, Electromagnetic Wormholes, and Transformation Optics
- Radial Basis Functions
- Time-Domain Finite Element Methods for Maxwell's Equations in Metamaterials
- Time-Domain Numerical Solutions of Maxwell Interface Problems with Discontinuous Electromagnetic Waves
- On the Selection of a Good Shape Parameter of the Localized Method of Approximated Particular Solutions
- Developing Finite Element Methods for Simulating Transformation Optics Devices with Metamaterials
- Solving PDEs with radial basis functions
- A Time-Domain Collocation Meshless Method With Local Radial Basis Functions for Electromagnetic Transient Analysis
- Scattered Data Approximation
This page was built for publication: A leap-frog meshless method with radial basis functions for simulating electromagnetic wave splitter and rotator