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Power-aware scheduling of compositional real-time frameworks

机译:组合实时框架的功耗感知调度

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The energy consumption problem has become a great challenge in all computing areas from modern handheld devices to large data centers. Dynamic voltage scaling (DVS) is widely used as mean to reduce the energy consumption of computer systems by lowering whenever possible the voltage and operating frequency of processors. Unfortunately, existing compositional real-time scheduling frameworks have been focusing only on efficient scheduling of tasks inside their components given a resource model, providing no interest on power/energy consumption. In this paper, we define the real-time DVS problem for a compositional scheduling framework. Considering the periodic resource model, we propose optimal static DVS schemes at system, component, and task levels. We also introduce component and task level dynamic DVS schemes that take advantage of runtime unused slack times and resource availability to provide even better energy savings. Finally, we provide power-aware schedulability conditions to guarantee the feasibility of each component under DVS for the Earliest Deadline First and the Rate Monotonic scheduling algorithms. Through simulations, we showed that our schemes can reduce the energy consumption of a component by up to 96%.
机译:从现代手持设备到大型数据中心,能耗问题已成为所有计算领域的巨大挑战。动态电压缩放(DVS)被广泛用作通过尽可能降低处理器的电压和工作频率来降低​​计算机系统能耗的手段。不幸的是,在给定资源模型的情况下,现有的组合实时调度框架仅关注于其组件内部任务的有效调度,而对功耗/能耗没有兴趣。在本文中,我们为组合调度框架定义了实时DVS问题。考虑到周期性资源模型,我们在系统,组件和任务级别提出了最佳的静态DVS方案。我们还介绍了组件和任务级动态DVS方案,这些方案利用了运行时未使用的松弛时间和资源可用性来提供更好的节能效果。最后,我们提供了功耗感知的可调度性条件,以保证DVS下最早截止日期优先和速率单调调度算法中每个组件的可行性。通过仿真,我们证明了我们的方案可以将组件的能耗降低多达96%。

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