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An Endurance-Aware Metadata Allocation Strategy for MLC NAND Flash Memory Storage Systems

机译:MLC NAND闪存存储系统的持久性元数据分配策略

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This paper presents a reliability-aware metadata allocation strategy called scatter-single-level cell (SLC) for multiple-level cell (MLC) NAND flash memory storage systems. In scatter-SLC, metadata is kept in least significant bit (LSB) pages and corresponding most significant bit (MSB) pages are bypassed. Without partitioning SLC and MLC blocks, scatter-SLC can eliminate the unbalanced lifetime between SLC and MLC blocks while achieving the similar error rate as the method to store metadata in SLC blocks. We implemented scatter-SLC on a real-hardware platform. The experiment results show that scatter-SLC can reduce uncorrectable page errors by 93.54% while incurring less than 1% time overhead on average compared with the previous work.
机译:本文针对多层单元(MLC)NAND闪存存储系统,提出了一种称为分散单层单元(SLC)的可靠性感知元数据分配策略。在分散SLC中,元数据保留在最低有效位(LSB)页面中,而相应的最高有效位(MSB)页面被绕过。无需对SLC和MLC块进行分区,分散SLC可以消除SLC和MLC块之间的不平衡寿命,同时实现与将元数据存储在SLC块中的方法相似的错误率。我们在真实的硬件平台上实施了scatter-SLC。实验结果表明,与以前的工作相比,scatter-SLC可以将无法纠正的页面错误减少93.54%,同时平均开销不到1%。

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