基于区域的mems存储设备最短定位时间优先调度

Bo Hong, S. Brandt, D. Long, E. L. Miller, K. Glocer, Zachary N. J. Peterson
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引用次数: 21

摘要

二级存储设备的访问延迟通常是计算机系统性能的一个限制因素。新的存储技术承诺提供比当前硬盘驱动器更高的存储密度和更低的延迟。基于mems的存储设备使用正交磁或物理记录技术和数千个同时活动的基于mems的读写提示来提供高密度低延迟非易失性存储。这些设备有望比硬盘快10-20倍,存储密度高10倍,功耗低一个数量级。先前的研究已经检查了数据布局和请求排序算法,这些算法类似于为硬盘驱动器开发的算法。我们提出了一个MEMS器件性能的分析模型,该模型激发了一种计算简单的基于MEMS的请求调度算法,称为ZSPTF,其平均响应时间与最短定位时间优先(SPTF)相当,但响应时间可变性与循环扫描(C-SCAN)相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Zone-based shortest positioning time first scheduling for MEMS-based storage devices
Access latency to secondary storage devices is frequently a limiting factor in computer system performance. New storage technologies promise to provide greater storage densities at lower latencies than is currently obtainable with hard disk drives. MEMS-based storage devices use orthogonal magnetic or physical recording techniques and thousands of simultaneously active MEMS-based read-write tips to provide high-density low-latency nonvolatile storage. These devices promise seek times 10-20 times faster than hard drives, storage densities 10 times greater, and power consumption an order of magnitude lower. Previous research has examined data layout and request ordering algorithms that are analogs of those developed for hard drives. We present an analytical model of MEMS device performance that motivates a computationally simple MEMS-based request scheduling algorithm called ZSPTF, which has average response times comparable to shortest positioning time first (SPTF) but with response time variability comparable to circular scan (C-SCAN).
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