Parallel multiphysics simulations often suffer from load imbalances originating from the applied coupling of algorithms with spatially and temporally varying workloads. It is, thus, desirable to minimize these imbalances to reduce the time to solution and to better utilize the available hardware resources. Taking particulate flows as an illustrating example application, we present and evaluate load balancing techniques that tackle this challenging task. This involves a load estimation step in which the currently generated workload is predicted. We describe in detail how such a workload estimator can be developed. In a second step, load distribution strategies like space-filling curves or graph partitioning are applied to dynamically distrib...
Load distribution is an essential factor to parallel efficiency of numerical simulations that are ba...
In parallel iterative applications, computational efficiency is essential for addressing large probl...
It is well known that the performance of a parallel discreteevent simulation (PDES) depends on the a...
Parallel multiphysics simulations often suffer from load imbalances originating from the applied cou...
This paper presents a scalable dynamic load balancing scheme for a parallel front-tracking method ba...
Most parallel applications suffer from load imbalance, a crucial performance degradation factor. In ...
Most parallel applications suffer from load imbalance, a crucial performance degradation factor. In ...
In parallel computing, obtaining maximal performance is often mandatory to solve large and complex p...
In parallel computing, obtaining maximal performance is often mandatory to solve large and complex p...
High parallel efficiency for large-scale coupled multiphysics simulations requires the computational...
Balancing the workload distribution in a parallel environment is an important measure to reduce the ...
This paper considers load balancing in Particle-in-Cell plasma simulation on cluster systems. We pro...
Large-scale parallel numerical simulations are fundamental for the understanding of a wide variety o...
International audienceIn the context of multi-physics simulations on unstructured and heterogeneous ...
The performance of parallel Monte Carlo transport calculations which use both spatial and particle p...
Load distribution is an essential factor to parallel efficiency of numerical simulations that are ba...
In parallel iterative applications, computational efficiency is essential for addressing large probl...
It is well known that the performance of a parallel discreteevent simulation (PDES) depends on the a...
Parallel multiphysics simulations often suffer from load imbalances originating from the applied cou...
This paper presents a scalable dynamic load balancing scheme for a parallel front-tracking method ba...
Most parallel applications suffer from load imbalance, a crucial performance degradation factor. In ...
Most parallel applications suffer from load imbalance, a crucial performance degradation factor. In ...
In parallel computing, obtaining maximal performance is often mandatory to solve large and complex p...
In parallel computing, obtaining maximal performance is often mandatory to solve large and complex p...
High parallel efficiency for large-scale coupled multiphysics simulations requires the computational...
Balancing the workload distribution in a parallel environment is an important measure to reduce the ...
This paper considers load balancing in Particle-in-Cell plasma simulation on cluster systems. We pro...
Large-scale parallel numerical simulations are fundamental for the understanding of a wide variety o...
International audienceIn the context of multi-physics simulations on unstructured and heterogeneous ...
The performance of parallel Monte Carlo transport calculations which use both spatial and particle p...
Load distribution is an essential factor to parallel efficiency of numerical simulations that are ba...
In parallel iterative applications, computational efficiency is essential for addressing large probl...
It is well known that the performance of a parallel discreteevent simulation (PDES) depends on the a...