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Thermally optimal stop-go scheduling of task graphs with real-time constraints

机译:具有实时约束的任务图的热最优停停调度

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Dynamic thermal management (DTM) techniques to manage the load on a system to avoid thermal hazards are soon becoming mainstream in today's systems. With the increasing percentage of leakage power, switching off the processors is becoming a viable alternative technique to speed scaling. For real-time applications, it is crucial that under such techniques the system still meets the performance constraints. In this paper we study stop-go scheduling to minimize peak temperature when scheduling an application, modeled as a task-graph, within a given makespan constraint. For a given static-ordering of execution of the tasks, we derive the optimal schedule referred to as the JUST schedule. We prove that for periodic task-graphs, the optimal temperature is independent of the chosen static-ordering when following the proposed JUST schedule. Simulation experiments validate the theoretical results.
机译:动态热管理(DTM)技术来管理系统负载以避免热危害,正迅速成为当今系统的主流。随着泄漏功率百分比的增加,关闭处理器已成为可行的替代技术来加速扩展。对于实时应用,至关重要的是,在这种技术下,系统仍然必须满足性能约束。在本文中,我们研究了在给定的制造期限约束内调度为任务图的应用程序时,通过停停调度来最大程度地降低峰值温度的方法。对于给定的任务执行静态顺序,我们得出了称为JUST计划的最佳计划。我们证明对于周期性任务图,遵循建议的JUST计划时,最佳温度与所选静态顺序无关。仿真实验验证了理论结果。

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