International audienceThe heterogeneous nature of distributed platforms such as computational Grids is one of the main barriers to effectively deploy tightly-coupled applications. For those applications , one common problem that appears due to the hardware heterogeneity is the load imbalance which slows down the application to the pace of the slower processor. One solution is to distribute the load adequately taking into account hardware capacities. To do so, an estimation of the hardware capacities for running the application has to be obtained. In this paper, we present a static load balancing for iterative tightly-coupled applications based on a profile prediction model. This technique is presented as a successful example of the interact...
The computational Grid environment is heterogeneous and has a highly dynamic nature. Consequently, a...
The massively parallel computer architectures emerged in the last years create the platform to redef...
Parallel machines with an extremely large number of processors (at least tens of thousands processor...
International audienceThe heterogeneous nature of distributed platforms such as computational Grids ...
The amount of data to be processed by experiments in high energy physics (HEP) will increase tremend...
Due to the dependency of High-Level Architecture (HLA)-Based simulations on the resources of distrib...
In parallel computing, obtaining maximal performance is often mandatory to solve large and complex p...
The results of the statistical model experiments research of various load balancing algorithms in di...
Dynamic balancing of computation and communication load is vital for the execution stability and per...
The largest supercomputers have millions of independent processors, and concurrency levels are rapid...
Current supercomputing platforms and scientific application codes have grown rapidly in complexity o...
Abstract. Traditional load balancing algorithms for data-intensive iterative routines can successful...
In parallel iterative applications, computational efficiency is essential for addressing large probl...
Computationally-demanding, parallel coupled models are crucial to understanding many important multi...
Load balance is critical for performance in large parallel applica-tions. An imbalance on today’s fa...
The computational Grid environment is heterogeneous and has a highly dynamic nature. Consequently, a...
The massively parallel computer architectures emerged in the last years create the platform to redef...
Parallel machines with an extremely large number of processors (at least tens of thousands processor...
International audienceThe heterogeneous nature of distributed platforms such as computational Grids ...
The amount of data to be processed by experiments in high energy physics (HEP) will increase tremend...
Due to the dependency of High-Level Architecture (HLA)-Based simulations on the resources of distrib...
In parallel computing, obtaining maximal performance is often mandatory to solve large and complex p...
The results of the statistical model experiments research of various load balancing algorithms in di...
Dynamic balancing of computation and communication load is vital for the execution stability and per...
The largest supercomputers have millions of independent processors, and concurrency levels are rapid...
Current supercomputing platforms and scientific application codes have grown rapidly in complexity o...
Abstract. Traditional load balancing algorithms for data-intensive iterative routines can successful...
In parallel iterative applications, computational efficiency is essential for addressing large probl...
Computationally-demanding, parallel coupled models are crucial to understanding many important multi...
Load balance is critical for performance in large parallel applica-tions. An imbalance on today’s fa...
The computational Grid environment is heterogeneous and has a highly dynamic nature. Consequently, a...
The massively parallel computer architectures emerged in the last years create the platform to redef...
Parallel machines with an extremely large number of processors (at least tens of thousands processor...