Parallel Finite-Difference Time-Domain Method
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Summary
Implementation of MPI: MPICH: Advanced FDTD Methods.
- Type
- book
- Published
- 2006-06-30
- Cited by
- 145
- References
- 62
- OpenAlex
- https://openalex.org/W605587892
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:60406024
Keywords
Finite-difference time-domain method, Computer science, Parallel computing, Code (set theory), Computational science
References
- READY TO RUN
- Using MPI - portable parallel programming with the message-parsing interface
- A conformal finite-difference time-domain technique for modeling cylindrical dielectric resonators
- Convolution PML (CPML): An efficient FDTD implementation of the CFS–PML for arbitrary media
- A parallel implementation of the finite difference time‐domain algorithm
- Absorbing Boundary Conditions for the Finite-Difference Approximation of the Time-Domain Electromagnetic-Field Equations
- An efficient FDTD near-to-far-field transformation for radiation pattern calculation
- A two-dimensional time-domain near-zone to far-zone transformation
- A 3D perfectly matched medium from modified maxwell's equations with stretched coordinates
- Absorbing boundary conditions for the numerical simulation of waves
- Accurate computation of wide-band response of electromagnetic systems utilizing narrow-band information
- Superabsorption-a method to improve absorbing boundary conditions (electromagnetic waves)
- Finite-difference time-domain modeling of curved surfaces (EM scattering)
- An anisotropic perfectly matched layer-absorbing medium for the truncation of FDTD lattices
- The PSTD algorithm: A time-domain method requiring only two cells per wavelength
- ESPRIT-A subspace rotation approach to estimation of parameters of cisoids in noise
- Complex coordinate stretching as a generalized absorbing boundary condition
- The extraction of the singularity expansion description of a scatterer from sampled transient surface current response
- 3D‐FDTD‐PML analysis of left‐handed metamaterials
- Finite-difference time-domain algorithm for solving Maxwell's equations in rotationally symmetric geometries
Cited by
- Solving the Partial Differential Equation of Vibrations with Interval Parameters using the Interval Finite Difference Method
- Efficient large electromagnetic simulation based on hybrid TLM and modal approach on grid computing and supercomputer
- Méthodes déterministes de résolution des équations de Vlasov-Maxwell relativistes en vue du calcul de la dynamique des ceintures de Van Allen. (Deterministic methods for the relativistic Vlasov-Maxwell equations and the Van Allen belts dynamics)
- A finite difference time domain model of an eddy current based measurement system
- Huygens subgridding for the frequency-dependent/finite-difference time-domain method
- Rigorous analysis of axisymmetric transformation optics lenses embedded in layered media illuminated by obliquely incident plane waves
- A Hybrid Nfm/MoM Full-Wave Analysis of Layered Prolate Head Model Exposed to Handset Antenna
- Buried-Object Time-Reversal Imaging Using UWB Near-Ground Scattered Fields
- Efficient Parallel LOD-FDTD Method for Debye-Dispersive Media
- Projection photolithography modeling using the finite-difference time-domain approach
- A NOVEL EXPRESSION OF LUMPED ELEMENTS IN FDTD SIMULATIONS
- Parallel computing efficiency analysis of BOR‐FDTD code on a Beowulf cluster
- The meshless radial point interpolation method for electromagnetics
- OPC verification on cell level using fully rigorous mask topography simulation
- Simulation of large multiscale structures using the finite difference time domain method (FDTD) hybridized with the Method of Moments (MoM)
- An Efficient Algorithm for EM Scattering from Anatomically Realistic Human Head Model Using Parallel CG-FFT Method
- High performance simulation techniques using parallel processing FDTD method
- Explicit Higher-Order FDTD Schemes for 3D Room Acoustic Simulation
- One and two dimensional devices electromagnetic simulation using parallelism on GPUs
- Electromagnetic Wave Propagation in Body Area Networks Using the Finite-Difference-Time-Domain Method
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- Convolution PML (CPML): An efficient FDTD implementation of the CFS–PML for arbitrary media
- A perfectly matched layer for the absorption of electromagnetic waves
- A suitable computing architecture and its algorithm for parallel FDTD
- Different implementations of parallel processing for FDTD simulator
- Parallel implementation of the Finite-Difference Time-Domain method in Open Computing Language