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An efficient management scheme for updating redundant information in flash-based storage system

机译:一种用于更新基于闪存的存储系统中冗余信息的有效管理方案

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摘要

Since flash memory has many attractive characteristics such as high performance, non-volatility, low power consumption and shock resistance, it has been widely used as a storage media in embedded and computer system environments. However, there are many shortcomings in flash memory such as potentially high I/O latency due to erase-before-write and poor durability due to limited erase cycles. To address these performance and reliability anomalies, many large-scale storage systems use redundancy-based parallel access schemes such as RAID techniques. However, such redundancy-based schemes incur high overhead due to generating and storing redundancy information, especially in flash-based storage systems. In this paper, we propose a novel and performance-effective approach using a redundancy-based data management scheme in flash storage, called Flash-aware Redundancy Array. The proposed technique not only reduces the redundancy management overhead by performing redundancy update operations during idle periods, but also provides a preventive mechanism to recover data from unexpected read errors occurring before such redundancy update operations finish. From the experiments, we found that the proposed technique improves flash-based storage systems by 19% in average execution time as compared to other redundancy-based approaches.
机译:由于闪存具有许多吸引人的特性,例如高性能,非易失性,低功耗和抗冲击性,因此它已广泛用作嵌入式和计算机系统环境中的存储介质。但是,闪存中存在许多缺点,例如由于写前擦除而导致的高I / O延迟以及由于有限的擦除周期而导致的耐久性差。为了解决这些性能和可靠性异常,许多大型存储系统都使用基于冗余的并行访问方案,例如RAID技术。然而,这种基于冗余的方案由于产生和存储冗余信息而导致高开销,尤其是在基于闪存的存储系统中。在本文中,我们提出了一种新颖且性能有效的方法,即在闪存中使用基于冗余的数据管理方案,称为闪存感知冗余阵列。所提出的技术不仅通过在空闲时段期间执行冗余更新操作来减少冗余管理开销,而且提供了一种预防机制,以从在这种冗余更新操作完成之前发生的意外读取错误中恢复数据。从实验中,我们发现,与其他基于冗余的方法相比,该技术将基于闪存的存储系统的平均执行时间提高了19%。

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