基于mems存储的二维寻道空间动态分组调度

Junseok Park, Hansung Chun, H. Bahn, K. Koh
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引用次数: 1

摘要

以mems为基础的存储器有望成为便携式媒体播放器和数码相机等移动计算设备的辅助存储器。mems存储具有体积小、重量轻、功耗低、成本低等优点,将广泛应用于需要大量多媒体数据的移动应用中。然而,mems存储的物理结构与硬盘等其他存储设备不同,特别是在数据放置和磁头定位方面。因此,修改基于mems存储的操作系统级软件管理方案非常重要。本文提出了一种新的基于mems存储的I/O调度算法,称为G-MST,该算法利用了mems存储的二维结构。新算法旨在减小二维MEMS结构的总寻道距离,同时提供快速均匀的响应时间。通过仿真实验,我们证明了新的I/O调度算法在平均响应时间和响应时间变化方面都优于现有算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Group-based Scheduling for Two Dimensional Seek Space in MEMS-based Storage
MEMS-based storage is expected to be adopted as a secondary storage of mobile computing devices such as portable media players and digital cameras. Due to its desirable features such as small size, lightweight, low power consumption, and low cost, MEMS-based storage will be widely used for mobile applications that require large volume of multimedia data. However, physical structures of MEMS-based storage are different from other storage devices such as hard disk especially in the way of data placement and head positioning. Hence, it is important to revise OS-level software management schemes for MEMS-based storage. In this paper, we present a new I/O scheduling algorithm for MEMS-based storage called G-MST that exploits two-dimensional structure of MEMS-based storage. The new algorithm aims at reducing total seek distance in the two dimensional MEMS structure and at the same time providing fast and uniform response times. Through simulation experiments, we show that the new I/O scheduling algorithm performs better than existing algorithms in terms of average response time and the variation of response times.
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