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Improving read access time of high-performance solid-state drives via layered coding schemes

机译:通过分层编码方案缩短高性能固态驱动器的读取访问时间

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We study potential enhancement of the read access speed in high-performance solid-state drives (SSDs) by coding, given speed variations across the multiple flash interfaces and assuming occasional local memory failures. Our analysis is based on a queuing model that incorporates both read request failures and node failures. It provides a clear picture on the coding-overhead and read-access-time trade-offs given read failures and node failures. The node failure in the present context reflects various limitations on the memory element level such as page failures, block failures or channel failures that occur during the access of stored data from NAND flash memory chips. A strong motivation for this work is to understand the reliability requirement of NAND chip components given a layer of erasure protection across nodes, under the latency/storage-overhead constraints.
机译:我们通过编码研究高性能固态驱动器(SSD)中读取访问速度的潜在提高,给定多个闪存接口的速度变化,并假设偶尔的本地内存故障。我们的分析基于队列模型,它包含读取请求失败和节点故障。它在编码开销和读取访问时间权衡中提供了一个清晰的图片,给出了读取失败和节点故障。本文中的节点故障反映了存储元件级别的各种限制,例如页面故障,阻止在来自NAND闪存芯片的存储数据的访问期间发生的块故障或通道故障。对于这项工作的强大动机是了解NAND芯片组件的可靠性要求在延迟/存储架构中给出了跨节点的擦除保护层的可靠性要求。

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