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An empirical study of redundant array of independent solid-state drives (RAIS)

机译:独立固态驱动器冗余阵列(RAIS)的经验研究

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摘要

Solid-state drives (SSD) are popular storage media devices alongside magnetic hard disk drives (HDD). SSD flash chips are packaged in HDD form factors and SSDs are compatible with regular HDD device drivers and I/O buses. This compatibility allows easy replacement of individual HDDs with SSDs in existing storage systems. However, under certain circumstances, SSD write performance can be significantly slowed by garbage collection (GC) processes. The frequency of GC activity is directly correlated with the frequency of inside-SSD write operations and the amount of data written to it. GC scheduling is locally controlled by an internal SSD logic. This paper studies the feasibility of Redundant Arrays of Independent Flash-based Solid-state drives (RAIS). We empirically analyze the RAIS performance using commercially-off-the-shelf (COTS) SSDs. We investigate the performance of various RAIS configurations under a variety of I/O access patterns. Finally, we present our performance and cost comparisons of RAIS with a fast, PCIe-based COTS SSD, in terms of performance and cost.
机译:固态驱动器(SSD)与磁性硬盘驱动器(HDD)一起是流行的存储介质设备。 SSD闪存芯片采用HDD尺寸封装,并且SSD与常规HDD设备驱动程序和I / O总线兼容。这种兼容性使现有存储系统中的SSD可以轻松替换单个HDD。但是,在某些情况下,垃圾回收(GC)进程会大大降低SSD的写入性能。 GC活动的频率与内部SSD写入操作的频率以及写入其中的数据量直接相关。 GC调度由内部SSD逻辑本地控制。本文研究了基于独立闪存的固态驱动器(RAIS)的冗余阵列的可行性。我们根据经验使用现成的商用(COTS)SSD来分析RAIS性能。我们研究了各种I / O访问模式下各种RAIS配置的性能。最后,在性能和成本方面,我们介绍了RAIS与基于PCIe的快速COTS SSD的性能和成本比较。

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