计算机科学
块(置换群论)
闪光灯(摄影)
汽车工程
刀具磨损
模拟
可靠性工程
实时计算
电子工程
工程类
机制(生物学)
作者
Tingyu Wang,Mengfei Yang,Jingjing Jiang,Hongbiao Liu,Shaofeng Li,Zhi Ma
标识
DOI:10.1016/j.jiixd.2025.10.001
摘要
In NAND flash-based Solid-State Drives (SSDs), the limited endurance of flash memory makes Wear Leveling (WL) a critical technique for extending the lifetime and improving reliability. However, existing WL methods rely on fixed thresholds or a single dynamic threshold applied uniformly throughout SSD lifetime, which fails to adapt to dynamic wear conditions, such as uneven block wear and workload-induced variations in I/O intensity. This limitation can result in excessive data migration and performance degradation. This paper proposes an Adaptive Multi-Phased Wear Leveling method (called AMPWL) to extend SSD lifetime and improve system performance. Firstly, AMPWL divides the SSD lifetime into three distinct phases to better capture its wear characteristics. Secondly, phase-specific dynamic thresholds are designed to adaptively trigger wear leveling operations. Thirdly, a scoring mechanism is introduced to enhance wear leveling efficiency. Experimental results demonstrate that AMPWL significantly outperforms existing wear leveling methods in extending SSD lifetime and improving I/O performance.
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