分层和半分区并行调度算法

V. Bonifaci, Gianlorenzo D'angelo, A. Marchetti-Spaccamela
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引用次数: 10

摘要

我们提出了一个在并行机器设置中调度作业的模型,该模型通过假设作业的处理时间可能取决于作业迁移到的特定机器集,从而考虑了迁移的成本。以最大时间跨度最小化为目标,该模型对经典调度问题(如不相关并行机调度)和新调度问题(如半分区调度和集群调度)进行了推广。在分层机器族的情况下,我们推导了问题的紧凑整数线性规划公式,并利用其分数松弛来获得多项式时间2逼近算法。还讨论了包含内存容量限制的扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Algorithms for Hierarchical and Semi-Partitioned Parallel Scheduling
We propose a model for scheduling jobs in a parallel machine setting that takes into account the cost of migrations by assuming that the processing time of a job may depend on the specific set of machines among which the job is migrated. For the makespan minimization objective, the model generalizes classical scheduling problems such as unrelated parallel machine scheduling, as well as novel ones such as semi-partitioned and clustered scheduling. In the case of a hierarchical family of machines, we derive a compact integer linear programming formulation of the problem and leverage its fractional relaxation to obtain a polynomial-time 2-approximation algorithm. Extensions that incorporate memory capacity constraints are also discussed.
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