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A Practical Framework to Study Low-Power Scheduling Algorithms on Real-Time and Embedded Systems

机译:在实时和嵌入式系统上研究低功耗调度算法的实用框架

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With the advanced technology used to design VLSI (Very Large Scale Integration) circuits, low-power and energy-efficiency have played important roles for hardware and software implementation. Real-time scheduling is one of the fields that has attracted extensive attention to design low-power, embedded/real-time systems. The dynamic voltage scaling (DVS) and CPU shut-down are the two most popular techniques used to design the algorithms. In this paper, we firstly review the fundamental advances in the research of energy-efficient, real-time scheduling. Then, a unified framework with a real Intel PXA255 Xscale processor, namely real-energy, is designed, which can be used to measure the real performance of the algorithms. We conduct a case study to evaluate several classical algorithms by using the framework. The energy efficiency and the quantitative difference in their performance, as well as the practical issues found in the implementation of these algorithms are discussed. Our experiments show a gap between the theoretical and real results. Our framework not only gives researchers a tool to evaluate their system designs, but also helps them to bridge this gap in their future works.
机译:凭借用于设计VLSI(超大规模集成)电路的先进技术,低功耗和能效在硬件和软件实现中发挥了重要作用。实时调度是设计低功耗嵌入式/实时系统引起广泛关注的领域之一。动态电压缩放(DVS)和CPU关闭是用于设计算法的两种最流行的技术。在本文中,我们首先回顾了节能,实时调度研究的基本进展。然后,设计了一个具有真实Intel PXA255 Xscale处理器(即真实能量)的统一框架,该框架可用于衡量算法的真实性能。我们进行了一个案例研究,以使用该框架评估几种经典算法。讨论了能量效率和性能上的数量差异,以及在实现这些算法时发现的实际问题。我们的实验表明理论结果与实际结果之间存在差距。我们的框架不仅为研究人员提供了一种评估其系统设计的工具,而且还可以帮助他们弥合未来工作中的这一差距。

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