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Error-Prediction LDPC and Error-Recovery Schemes for Highly Reliable Solid-State Drives (SSDs)

机译:高度可靠的固态驱动器(SSD)的错误预测LDPC和错误恢复方案

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摘要

Highly reliable solid-state drives (SSDs) with error-prediction low-density parity-check (EP-LDPC) and error-recovery schemes are proposed. Since the reliability of the nand flash memory of the SSD is seriously degraded as the scaling, the conventional error-correction scheme is becoming useless. Thus, LDPC error-correcting code (ECC) is considered to be the next-generation ECC for SSD. However, many read cycles are required and the LDPC scheme consumes an unacceptably long read time. To solve this problem, the proposed EP-LDPC scheme realizes the 7 $times$ fewer sequential read cycles than the conventional LDPC scheme. Instead of reading repeatedly, the EP-LDPC scheme estimates errors from $V_{rm TH}$, write/erase cycles, data-retention time, and inter-cell coupling information. The bit error rate (BER) estimation is based on the prerecorded table which stores the relations among write/erase cycles, data-retention time, neighboring cell data, and BER. As a result, the acceptable data-retention time of the SSD increases by more than 10$times$. Additionally, the proposed error-recovery scheme is executed and reduces the bit error if the BER of the data exceeds the error-correction capability of EP-LDPC scheme. Program-disturb error-recovery pulse and data-retention error-recovery pulse reduce the BER of the nand flash memory by 76% and 56%, respectively.
机译:提出了具有错误预测低密度奇偶校验(EP-LDPC)和错误恢复方案的高度可靠的固态驱动器(SSD)。由于SSD的nand闪存的可靠性随着缩放而严重降低,因此传统的纠错方案变得毫无用处。因此,LDPC纠错码(ECC)被认为是SSD的下一代ECC。但是,需要许多读取周期,并且LDPC方案消耗了无法接受的长读取时间。为了解决这个问题,所提出的EP-LDPC方案实现了比常规LDPC方案少7倍的顺序读取周期。与重复读取不同,EP-LDPC方案从$ V_ {rm TH} $,写入/擦除周期,数据保留时间和小区间耦合信息中估计错误。误码率(BER)估计基于预先记录的表,该表存储写/擦除周期,数据保留时间,相邻单元数据和BER之间的关系。结果,SSD可接受的数据保留时间增加了10倍以上。另外,如果数据的BER超过EP-LDPC方案的纠错能力,则执行所提出的错误恢复方案并减少误码。程序干扰错误恢复脉冲和数据保留错误恢复脉冲分别将nand闪存的BER降低了76%和56%。

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