none3noThis work deals with the solution of large non-Hermitian linear systems on desktop workstations with multiple graphics processing units (GPUs). While our implementation is motivated by the need to accelerate volume conductor modeling for bioelectrical brain imaging, the problem itself is common in scientific computing. Whenever a complex partial differential equation is numerically solved, a typically non-Hermitian sparse complex linear system needs to be solved. For prob- lem sizes in the millions, this can take a long time even with highly optimized CPU-based solvers. Our GPU-accelerated solver outperforms an optimized OpenMP-based reference running on two quad-core CPUs by a factor of up to 31 in single precision and up to 7 ...
We consider a fast, robust and scalable solver using graphic processing units (GPU) as accelerators ...
Graphical processing units (GPUs) have recently attracted attention for scientific applications such...
Graphical processing units (GPUs) have recently attracted attention for scientific applications such...
This work deals with the solution of large non-Hermitian linear systems on desktop workstations with...
This work deals with the solution of large non-Hermitian linear systems on desktop workstations with...
Graphical Processing Units (GPUs) have become more accessible peripheral devices with great computin...
Graphical Processing Units (GPUs) have become more accessible peripheral devices with great computin...
Simulations are indispensable for engineering. They make it possible that one can perform fa...
Simulations are indispensable for engineering. They make it possible that one can perform fa...
Graphical Processing Units (GPUs) have become more accessible peripheral devices with great computin...
Graphical Processing Units (GPUs) have become more accessible peripheral devices with great computin...
We present several algorithms to compute the solution of a linear system of equa-tions on a GPU, as ...
This paper discusses the main performance barriers for solving a large number of independent ordinar...
We consider a fast, robust and scalable solver using graphic processing units (GPU) as accelerators ...
The original publication is available at www.springerlink.comInternational audienceA wide class of g...
We consider a fast, robust and scalable solver using graphic processing units (GPU) as accelerators ...
Graphical processing units (GPUs) have recently attracted attention for scientific applications such...
Graphical processing units (GPUs) have recently attracted attention for scientific applications such...
This work deals with the solution of large non-Hermitian linear systems on desktop workstations with...
This work deals with the solution of large non-Hermitian linear systems on desktop workstations with...
Graphical Processing Units (GPUs) have become more accessible peripheral devices with great computin...
Graphical Processing Units (GPUs) have become more accessible peripheral devices with great computin...
Simulations are indispensable for engineering. They make it possible that one can perform fa...
Simulations are indispensable for engineering. They make it possible that one can perform fa...
Graphical Processing Units (GPUs) have become more accessible peripheral devices with great computin...
Graphical Processing Units (GPUs) have become more accessible peripheral devices with great computin...
We present several algorithms to compute the solution of a linear system of equa-tions on a GPU, as ...
This paper discusses the main performance barriers for solving a large number of independent ordinar...
We consider a fast, robust and scalable solver using graphic processing units (GPU) as accelerators ...
The original publication is available at www.springerlink.comInternational audienceA wide class of g...
We consider a fast, robust and scalable solver using graphic processing units (GPU) as accelerators ...
Graphical processing units (GPUs) have recently attracted attention for scientific applications such...
Graphical processing units (GPUs) have recently attracted attention for scientific applications such...