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Macromodeling and characterization of filesystem energy consumption for diskless embedded systems

机译:无盘嵌入式系统文件系统能耗的宏建模和表征

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摘要

The use and application of embedded systems in everyday life has proliferated in the past few years. These systems are constrained in terms of power consumption, available memory and processing requirements. Typical embedded systems like handheld devices, cell phones, single board computer based systems are diskless and use flash for secondary storage. The choice of filesystem for these diskless systems can greatly impact the performance and the energy consumption of the system as well as lifetime of flash.In this thesis work, the energy consumption of flash based filesystems has been characterized. Both the processor and flash energy consumption are characterized as a function of filesystem specific operations. The work is aimed at helping a system designer compare and contrast different filesystems based on energy consumption as a metric. The macromodel can be used to characterize and estimate the energy consumption of applications due to filesystem running on flash.The study is done on a StrongARM based processor running Linux. Two of the popular filesystems JFFS2 and ext3 are profiled.
机译:在过去的几年中,嵌入式系统在日常生活中的使用和应用激增。这些系统在功耗,可用内存和处理要求方面受到限制。典型的嵌入式系统(如手持设备,手机,基于单板计算机的系统)是无盘的,并使用闪存作为辅助存储。这些无盘系统的文件系统选择会极大地影响系统的性能和能耗以及闪存的寿命。本文的工作是对基于闪存的文件系统的能耗进行表征。处理器和闪存的能耗均取决于文件系统特定的操作。这项工作旨在帮助系统设计人员以能耗为指标来比较和对比不同的文件系统。宏模型可用于表征和估计由于文件系统在闪存上运行而导致的应用程序能耗。该研究是在运行Linux的基于StrongARM的处理器上完成的。分析了两个流行的文件系统JFFS2和ext3。

著录项

  • 作者

    Choudhuri Siddharth;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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