Quasi-nonvolatile SSD: Trading flash memory nonvolatility to improve storage system performance for enterprise applications

Yangyang Pan, Guiqiang Dong, Qi Wu, Tong Zhang
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引用次数: 90

Abstract

This paper advocates a quasi-nonvolatile solid-state drive (SSD) design strategy for enterprise applications. The basic idea is to trade data retention time of NAND flash memory for other system performance metrics including program/erase (P/E) cycling endurance and memory programming speed, and meanwhile use explicit internal data refresh to accommodate very short data retention time (e.g., few weeks or even days). We also propose SSD scheduling schemes to minimize the impact of internal data refresh on normal I/O requests. Based upon detailed memory cell device modeling and SSD system modeling, we carried out simulations that clearly show the potential of using this simple quasi-nonvolatile SSD design strategy to improve system cycling endurance and speed performance. We also performed detailed energy consumption estimation, which shows the energy consumption overhead induced by data refresh is negligible.
准非易失性SSD:利用闪存的非易失性来提高企业应用程序的存储系统性能
本文提倡一种准非易失性固态硬盘(SSD)的企业应用设计策略。基本思想是用NAND闪存的数据保留时间换取其他系统性能指标,包括程序/擦除(P/E)循环耐力和内存编程速度,同时使用显式内部数据刷新来适应非常短的数据保留时间(例如,几周甚至几天)。我们还提出了SSD调度方案,以尽量减少内部数据刷新对正常I/O请求的影响。基于详细的存储单元设备建模和SSD系统建模,我们进行了仿真,清楚地显示了使用这种简单的准非易失性SSD设计策略提高系统循环耐久性和速度性能的潜力。我们还进行了详细的能耗估算,结果表明数据刷新引起的能耗开销可以忽略不计。
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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