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Efficient parity placement schemes for tolerating triple disk failures in RAID architectures

机译:高效的奇偶校验放置方案可容忍RAID体系结构中的三重磁盘故障

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This paper proposes two improved triple parity placement schemes, the HDD1 (horizontal and dual diagonal) and HDD2 schemes, to enhance the reliability of a RAID system. Both schemes can tolerate up to three disk failures by using three types of parity information (horizontal, diagonal, and anti-diagonal parities) in RAID disk block partitions. The HDD1 scheme can reduce the occurrences of bottlenecks because its horizontal and anti-diagonal parities are uniformly distributed over a disk array, while diagonal parities are placed in a dedicated disk. The HDD2 scheme uses one more disk than HDD1 to store the horizontal parities and an additional diagonal parity, while the anti-diagonal and the diagonal parities are placed in the same way as in the HDD1 scheme, only with a minor difference. The encoding and decoding algorithms of both schemes are simple and effective. Many of the steps of the encoding and decoding algorithms can be executed in parallel. Both schemes enable a RAID to recover rapidly from up to three disk failures, with a single algorithm applied straightforwardly.
机译:本文提出了两种改进的三重奇偶校验放置方案,即HDD1(水平和双对角线)和HDD2方案,以增强RAID系统的可靠性。通过在RAID磁盘块分区中使用三种类型的奇偶校验信息(水平,对角和反对角奇偶校验),这两种方案最多可以容忍三个磁盘故障。 HDD1方案可以减少瓶颈的发生,因为它的水平和反对角奇偶校验均匀地分布在磁盘阵列上,而对角奇偶校验则放置在专用磁盘中。 HDD2方案使用比HDD1多的磁盘来存储水平奇偶校验和一个额外的对角奇偶校验,而反对角和对角奇偶校验的放置方式与HDD1方案相同,只是差别很小。两种方案的编码和解码算法都简单有效。编码和解码算法的许多步骤可以并行执行。两种方案都可以使RAID从多达三个磁盘故障中快速恢复,而直接应用单个算法即可。

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