International audienceThe aim of this paper is to test a developed SOR R&B method using the Chebyshev accelerator algorithm to solve the Laplace equation in a cubic 3D configuration. Comparisons are made in terms of precision and computing time with other elliptic equation solvers proposed in the open source LIS library. The first results, obtained by using a single core on a HPC, show that the developed SOR R&B method is efficient when the spectral radius needed for the Chebyshev acceleration is carefully pre-estimated. Preliminary results obtained with a parallelized code using the MPI library are also discussed when the calculation is distributed over one hundred cores
AbstractNowadays, GPU computations are playing significant role in supercomputing technologies. This...
In this paper, parallel algorithms suitable for the iterative solution of large sets of linear equat...
The Successive Over Relaxation (SOR) is a variant of the iterative Gauss-Seidel method for solving a...
International audienceThe aim of this paper is to test a developed SOR R&B method using the Chebyshe...
The aim of this paper is to test a developed SOR R&B method using the Chebyshev accelerator algorith...
International audienceThis paper concerns the 3D simulation of corona discharge using high performan...
AbstractThe performance of parallel algorithms implementing the block SOR iterative method, used for...
The performance of parallel algorithms implementing the block SOR iterative method, used for the sol...
This paper presents the use of three-dimensional indexing available in graphic processing units (GPU...
The successive over relaxation (SOR) is a variant of the iterative Gauss-Seidel method for solving a...
The successive over-relaxation (SOR) iterative method is an important solver for linear systems. In ...
On the occasion of the third centenary of the appointment of Johann Bernoulli at the University of G...
The purpose of this study is to approximate the local density of states(LDOS) for a metal block by s...
AbstractA simple implementation on vector processors of the SOR method for solving a linear system o...
International audienceApplications to solve large and complex partial derivative equation systems of...
AbstractNowadays, GPU computations are playing significant role in supercomputing technologies. This...
In this paper, parallel algorithms suitable for the iterative solution of large sets of linear equat...
The Successive Over Relaxation (SOR) is a variant of the iterative Gauss-Seidel method for solving a...
International audienceThe aim of this paper is to test a developed SOR R&B method using the Chebyshe...
The aim of this paper is to test a developed SOR R&B method using the Chebyshev accelerator algorith...
International audienceThis paper concerns the 3D simulation of corona discharge using high performan...
AbstractThe performance of parallel algorithms implementing the block SOR iterative method, used for...
The performance of parallel algorithms implementing the block SOR iterative method, used for the sol...
This paper presents the use of three-dimensional indexing available in graphic processing units (GPU...
The successive over relaxation (SOR) is a variant of the iterative Gauss-Seidel method for solving a...
The successive over-relaxation (SOR) iterative method is an important solver for linear systems. In ...
On the occasion of the third centenary of the appointment of Johann Bernoulli at the University of G...
The purpose of this study is to approximate the local density of states(LDOS) for a metal block by s...
AbstractA simple implementation on vector processors of the SOR method for solving a linear system o...
International audienceApplications to solve large and complex partial derivative equation systems of...
AbstractNowadays, GPU computations are playing significant role in supercomputing technologies. This...
In this paper, parallel algorithms suitable for the iterative solution of large sets of linear equat...
The Successive Over Relaxation (SOR) is a variant of the iterative Gauss-Seidel method for solving a...