Trading disk capacity for performance

Robert Y. Hou, Y. Patt
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引用次数: 5

Abstract

Improvements in disk access time have lagged behind improvements in microprocessor and main memory speeds. This disparity has made the storage subsystem a major bottleneck for many applications. Disk arrays that can service multiple disk requests simultaneously are being used to satisfy increasing throughput requirements. Higher throughput rates can be achieved by increasing the number of disks in an array. This increases the number of actuators that are available to service separate requests. It also spreads the data among more disk drives, reducing the seek time as the number of cylinders utilized on each disk drive decreases. The result is an increase in throughput that exceeds the increase in the number of disks. This suggests a tradeoff between the space utilization of disks in an array and the throughput of the array.<>
用磁盘容量换取性能
磁盘访问时间的改进落后于微处理器和主存储器速度的改进。这种差异使得存储子系统成为许多应用程序的主要瓶颈。可以同时处理多个磁盘请求的磁盘阵列正在被用来满足日益增长的吞吐量需求。通过增加阵列中的磁盘数量可以实现更高的吞吐率。这增加了可用于服务单独请求的执行器的数量。它还将数据分散到更多的磁盘驱动器中,随着每个磁盘驱动器上使用的柱面数量的减少,查找时间也会减少。其结果是吞吐量的增加超过了磁盘数量的增加。这表明在阵列中磁盘的空间利用率和阵列的吞吐量之间进行权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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