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Data Representation for Efficient and Reliable Storage in Flash Memories

机译:高效,可靠地存储在闪存中的数据表示

摘要

Recent years have witnessed a proliferation of flash memories as an emerging storage technology with wide applications in many important areas. Like magnetic recording and optimal recording, flash memories have their own distinct properties and usage environment, which introduce very interesting new challenges for data storage. They include accurate programming without overshooting, error correction, reliable writing data to flash memories under low-voltages and file recovery for flash memories. Solutions to these problems can significantly improve the longevity and performance of the storage systems based on flash memories.In this work, we explore several new data representation techniques for efficient and reliable data storage in flash memories. First, we present a new data representation scheme?rank modulation with multiplicity ?to eliminate the overshooting and charge leakage problems for flash memories. Next, we study the Half-Wits ? stochastic behavior of writing data to embedded flash memories at voltages lower than recommended by a microcontroller?s specifications?and propose three software- only algorithms that enable reliable storage at low voltages without modifying hard- ware, which can reduce energy consumption by 30%. Then, we address the file erasures recovery problem in flash memories. Instead of only using traditional error- correcting codes, we design a new content-assisted decoder (CAD) to recover text files. The new CAD can be combined with the existing error-correcting codes and the experiment results show CAD outperforms the traditional error-correcting codes.
机译:近年来,作为一种新兴的存储技术,闪存在许多重要领域得到了广泛的应用,因此激增。像磁记录和最佳记录一样,闪存具有自己独特的属性和使用环境,这给数据存储带来了非常有趣的新挑战。它们包括无过度调整的准确编程,错误纠正,低电压下可靠地将数据写入闪存以及闪存的文件恢复。解决这些问题的方法可以显着提高基于闪存的存储系统的寿命和性能。在这项工作中,我们探索了几种新的数据表示技术,可以有效,可靠地将数据存储在闪存中。首先,我们提出一种新的数据表示方案-具有多重性的秩调制-消除闪存的过冲和电荷泄漏问题。接下来,我们研究Half-Wits?以低于微控制器规格建议的电压将数据写入嵌入式闪存的随机行为,并提出了三种纯软件算法,可在不修改硬件的情况下实现低电压下的可靠存储,从而可将能耗降低30%。然后,我们解决了闪存中的文件擦除恢复问题。我们设计了一种新的内容辅助解码器(CAD)来恢复文本文件,而不仅仅是使用传统的纠错码。新的CAD可以与现有的纠错码结合使用,实验结果表明CAD优于传统的纠错码。

著录项

  • 作者

    Wang Yue;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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