International audienceWe consider the problem of allocating a large number of independent, equal-sized tasks to a heterogeneous computing platform. We use a nonoriented graph to model the platform, where resources can have different speeds of computation and communication. Because the number of tasks is large, we focus on the question of determining the optimal steady state scheduling strategy for each processor (the fraction of time spent computing and the fraction of time spent communicating with each neighbor). In contrast to minimizing the total execution time, which is NP-hard in most formulations, we show that finding the optimal steady state can be solved using a linear programming approach and, thus, in polynomial time. Our result h...
International audienceWe consider the execution of a complex application on a heterogeneous "Grid" c...
International audienceIn this paper, we consider steady-state scheduling techniques for mapping a co...
In this paper, we consider the problem of scheduling independent identical tasks on heterogeneous pr...
International audienceWe consider the problem of allocating a large number of independent, equal-siz...
In this paper, we consider the problem of allocating a large number of independent, equal-sized task...
International audienceIn this paper, we consider the problem of allocating a large number of indepen...
In this paper, we consider the problem of allocating a large number of independent, equal-sized task...
In this paper, we consider the problem of allocating a large number of independent, equal-sized task...
(eng) In this paper, we consider the execution of a complex application on a heterogeneous "grid" co...
In this paper, we consider the execution of a complex application on a heterogeneous "grid" computin...
International audienceWe consider the execution of a complex application on a heterogeneous "grid" c...
International audienceWe consider the execution of a complex application on a heterogeneous "grid" c...
International audienceIn this paper, we consider the problem of scheduling independent identical tas...
In this paper, we consider the execution of a complex application on a heterogeneous "grid" computin...
In this paper, we consider the execution of a complex application on a heterogeneous "grid" computin...
International audienceWe consider the execution of a complex application on a heterogeneous "Grid" c...
International audienceIn this paper, we consider steady-state scheduling techniques for mapping a co...
In this paper, we consider the problem of scheduling independent identical tasks on heterogeneous pr...
International audienceWe consider the problem of allocating a large number of independent, equal-siz...
In this paper, we consider the problem of allocating a large number of independent, equal-sized task...
International audienceIn this paper, we consider the problem of allocating a large number of indepen...
In this paper, we consider the problem of allocating a large number of independent, equal-sized task...
In this paper, we consider the problem of allocating a large number of independent, equal-sized task...
(eng) In this paper, we consider the execution of a complex application on a heterogeneous "grid" co...
In this paper, we consider the execution of a complex application on a heterogeneous "grid" computin...
International audienceWe consider the execution of a complex application on a heterogeneous "grid" c...
International audienceWe consider the execution of a complex application on a heterogeneous "grid" c...
International audienceIn this paper, we consider the problem of scheduling independent identical tas...
In this paper, we consider the execution of a complex application on a heterogeneous "grid" computin...
In this paper, we consider the execution of a complex application on a heterogeneous "grid" computin...
International audienceWe consider the execution of a complex application on a heterogeneous "Grid" c...
International audienceIn this paper, we consider steady-state scheduling techniques for mapping a co...
In this paper, we consider the problem of scheduling independent identical tasks on heterogeneous pr...