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平衡各层之间的页面耐久性变化以延长3D NAND闪存寿命。

Balancing Page Endurance Variation Between Layers to Extend 3D NAND Flash Memory Lifetime.

作者信息

Wang Jialin, Fan Yi, Du Yajuan, Huang Siyi, Wan Yu

机构信息

College of Electrical Engineering, Naval University of Engineering, Wuhan 430033, China.

School of Computer and Artificial Intelligence, Wuhan University of Technology, Wuhan 430070, China.

出版信息

Micromachines (Basel). 2024 Nov 29;15(12):1447. doi: 10.3390/mi15121447.

Abstract

With vertical stacking, 3D NAND's flash memory can achieve continuous capacity growth. However, the endurance variation between the stacked layers becomes more and more significant due to process variation, which will lead to the underutilization of many pages and seriously affect the lifetime of 3D NAND's flash memory. We investigated the endurance variation characteristics between layers and divided the stacked layers into the top, middle, and bottom layers according to the endurance characteristics. We found that the endurance of the bottom layer pages is much weaker than that of the other two layers, which is the primary factor that affects the lifetime of 3D NAND's flash memory. In response to this endurance variation feature, we proposed a new layer-aware write strategy, called LA-Write. First of all, the write-skip unit in LA-Write will reduce the wear pressure of the pages through write-skip operations. Secondly, LA-Write maintains a layer-aware table, which stores the probability of pages in different layers performing the write-skip operation. Setting the probability of the bottom pages to the highest value will result in more write-skip operations on the bottom layers, mitigating endurance variations between layers. We carried out our experiments of LA-Write on DiskSim, a popular SSD simulator. Compared to existing schemes, experimental results show that LA-Write can greatly increase SSD's lifetime.

摘要

通过垂直堆叠,3D NAND闪存可以实现持续的容量增长。然而,由于工艺变化,堆叠层之间的耐久性差异变得越来越显著,这将导致许多页面未得到充分利用,并严重影响3D NAND闪存的使用寿命。我们研究了各层之间的耐久性变化特性,并根据耐久性特性将堆叠层分为顶层、中间层和底层。我们发现底层页面的耐久性比其他两层弱得多,这是影响3D NAND闪存使用寿命的主要因素。针对这种耐久性变化特性,我们提出了一种新的层感知写入策略,称为LA-Write。首先,LA-Write中的写入跳过单元将通过写入跳过操作降低页面的磨损压力。其次,LA-Write维护一个层感知表,该表存储不同层的页面执行写入跳过操作的概率。将底层页面的概率设置为最高值将导致底层有更多的写入跳过操作,减轻层间的耐久性差异。我们在流行的SSD模拟器DiskSim上进行了LA-Write实验。与现有方案相比,实验结果表明LA-Write可以大大提高SSD的使用寿命。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/854a/11677435/78005faa49f3/micromachines-15-01447-g001.jpg

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