ICRS: An Optimized Algorithm to Improve Performance in Distributed Storage System

Chao Yin, Haitao Lv, Zongmin Cui, Tongfang Li, Lili Rao, Zhi Wang
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Abstract

Erasure codes, such as Reed-Solomn (RS) and CRS Codes, are being extensively deployed in distributed storage system since they offer significantly higher reliability than data replication methods at much lower storage overheads. But RS and CRS codes always impose a huge burden on system's performance while encoding and decoding when they provide significant savings in storage space. This paper puts forward an optimized algorithm named ICRS (Improved CRS) based on erasure coding technology, which is committed to improve the security and the utilization of storage space. By studying existing high reliability and space saving rate of coding technology, we imported coding mechanism into distributed storage systems. We have verified ICRS algorithm by theory analysis and simulation test. Through theory analysis, we can conclude that ICRS algorithm can improve the performance of encoding and decoding because they can shorten the computation times. We apply ICRS algorithm into our storage system model named Robot to test the performance. At the same time, we compare RS codes and CRS codes in Robot. The test results show that decoding speed can rise up nearly two times than the past serial decoding speed.
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一种提高分布式存储系统性能的优化算法
Erasure code,如Reed-Solomn (RS)和CRS code,在分布式存储系统中得到了广泛的应用,因为它们比数据复制方法具有更高的可靠性和更低的存储开销。但是RS和CRS码在编码和解码过程中往往会给系统带来巨大的性能负担,而这些编码和解码可以节省大量的存储空间。本文提出了一种基于擦除编码技术的优化算法ICRS (Improved CRS),该算法致力于提高安全性和存储空间利用率。通过研究现有的高可靠性、高节省空间的编码技术,将编码机制引入到分布式存储系统中。通过理论分析和仿真测试对ICRS算法进行了验证。通过理论分析,我们可以得出结论,ICRS算法可以提高编码和解码的性能,因为它可以缩短计算时间。我们将ICRS算法应用到我们的存储系统模型Robot中来测试其性能。同时,对Robot中的RS码和CRS码进行了比较。测试结果表明,解码速度比以往的串行解码速度提高了近两倍。
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