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LBM: a low-power buffer management policy for heterogeneous storage in mobile consumer devices

机译:LBM:一种用于移动消费类设备中异构存储的低功耗缓冲区管理策略

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摘要

Flash memory has many attractive features such as small size, low-power consumption, shock resistance, and high performance. Due to these good features, flash memory has been widely used in the mobile consumer devices such as portable media players (PMPs) and smart phones. However, the cost of flash memory is still high to accommodate ever-growing mobile applications and multimedia contents. Using flash memory and mobile disk together as secondary storage is an alternative solution to provide large storage capacity with reasonable cost. As heterogeneous storage devices are used together, the system needs a buffer management policy that is aware of different I/O characteristics of buffered blocks depending on which devices they belong to. Specifically, power consumption rate of each storage device should be considered in the design of an efficient buffer management policy since battery limitation of mobile systems is important. This paper presents a new buffer management policy for mobile systems consisting of heterogeneous storage devices such as flash memory and mobile disk. By considering different power-consumption rates of each storage media as well as I/O operation type and reference potential of buffered blocks, the proposed policy reduces storage power consumption significantly and also improves I/O performances. 1
机译:闪存具有许多吸引人的功能,例如小尺寸,低功耗,抗冲击和高性能。由于这些良好的功能,闪存已被广泛用于诸如便携式媒体播放器(PMP)和智能电话之类的移动消费设备中。然而,闪存的成本仍然很高,以适应不断增长的移动应用和多媒体内容。将闪存和移动磁盘一起用作辅助存储是一种以合理的成本提供大容量存储的替代解决方案。由于异构存储设备一起使用,因此系统需要一种缓冲区管理策略,该策略根据缓冲区所属的设备知道缓冲区的不同I / O特性。具体地,由于移动系统的电池限制很重要,因此在设计有效的缓冲区管理策略时应考虑每个存储设备的功耗率。本文提出了一种针对由异构存储设备(例如闪存和移动磁盘)组成的移动系统的新缓冲区管理策略。通过考虑每种存储介质的不同功耗率以及I / O操作类型和缓冲块的参考电势,所提出的策略可显着降低存储功耗并提高I / O性能。 1个

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