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FLARES: An Aging Aware Algorithm to Autonomously Adapt the Error Correction Capability in NAND Flash Memories

机译:FLARES:一种可自动适应NAND闪存存储器中的纠错能力的老化感知算法

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摘要

With the advent of solid-state storage systems, NAND flash memories are becoming a key storage technology. However, they suffer from serious reliability and endurance issues during the operating lifetime that can be handled by the use of appropriate error correction codes (ECCs) in order to reconstruct the information when needed. Adaptable ECCs may provide the flexibility to avoid worst-case reliability design, thus leading to improved performance. However, a way to control such adaptable ECCs' strength is required. This article proposes FLARES, an algorithm able to adapt the ECC correction capability of each page of a flash based on a flash RBER prediction model and on a measurement of the number of errors detected in a given time window.
机译:随着固态存储系统的出现,NAND闪存已成为一种关键的存储技术。然而,它们在工作寿命期间遭受严重的可靠性和耐用性问题,这些问题可以通过使用适当的纠错码(ECC)来处理,以便在需要时重建信息。自适应ECC可以提供灵活性,避免最坏情况下的可靠性设计,从而提高性能。但是,需要一种控制这种自适应ECC强度的方法。本文提出了FLARES,一种能够根据闪存RBER预测模型和在给定时间窗口内检测到的错误数量的测量值来调整闪存每一页ECC校正能力的算法。

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