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Energy Efficient Scheduling of Real Time Signal Processing Applications through Combined DVFS and DPM

机译:通过组合DVFS和DPM进行实时信号处理应用的节能调度

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This paper proposes a framework to design energy efficient signal processing systems. The energy efficiency is provided by combining Dynamic Frequency and Voltage Scaling (DVFS) and Dynamic Power Management (DPM). The framework is based on Synchronous Dataflow (SDF) modeling of signal processing applications. A transformation to a single rate form is performed to expose the application parallelism. An automated scheduling is then performed, minimizing the constraint of energy efficiency and providing DVFS and DPM decisions. This framework uses an architecture model including the number of available cores, the per-actor processing load and the energy per-cycle, derived from time and power measurements of modelled applications. After introducing the proposed framework, the energy characterization of big.LITTLE SoC systems is described. A generic approach is presented to generate the energy model of a platform from power measurements as customized polynomials. Finally, the experimental results on a Samsung Exynos 5410 big.LITTLE processor show that the energy optimal execution is not obtained by Linux governors that can execute either as-fast-as-possible or as-slow-as-possible. Instead, the most energy efficient scheduling is obtained by adapting both DVFS and DPM to application needs.
机译:本文提出了一个框架,以设计节能信号处理系统。通过结合动态频率和电压缩放(DVFS)和动态电源管理(DPM)来提供能效。该框架基于信号处理应用程序的同步数据流(SDF)建模。执行到单速率形式的转换以暴露应用程序并行性。然后执行自动调度,以最小化能源效率的约束并提供DVFS和DPM决策。该框架使用一种架构模型,该模型包括可用内核数,每个执行器处理负载和每个周期的能量,这些模型是从建模应用程序的时间和功率测量得出的。在介绍了所提出的框架之后,描述了big.LITTLE SoC系统的能量表征。提出了一种通用方法,可以根据功率测量值作为定制的多项式来生成平台的能量模型。最后,在三星Exynos 5410 big.LITTLE处理器上的实验结果表明,可以以尽可能快的速度或尽可能慢的速度执行的Linux调节器无法获得能量的最佳执行。取而代之的是,通过使DVFS和DPM都适应应用需求来获得最节能的调度。

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