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A Buffer Replacement Algorithm Exploiting Multi-Chip Parallelism in Solid State Disks

机译:一种缓冲替换算法在固态磁盘中利用多芯片并行性

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Solid State Disks (SSDs) are superior to magnetic disks from a performance point of view due to the favorable features of NAND flash memory. Furthermore, thanks to improvement on flash memory density and adopting a multi-chip architecture, SSDs replace magnetic disks rapidly. Most previous studies have been conducted for enhancing the performance of SSDs, but these studies have been worked on the assumption that the operation unit of a host interface is the same as the operation unit of NAND flash memory, where it is needless to give consideration to partially-filled pages. In this paper, we analyze the overhead caused by the partially-filled pages, and propose a buffer replacement algorithm exploiting multi-chip parallelism to enhance the write performance. Our simulation results show that the proposed algorithm improves the write performance by up to 30% over existing approaches.
机译:由于NAND闪存的有利功能,固态磁盘(SSD)优于磁盘。此外,由于闪存密度的提高,采用多芯片架构,SSD迅速替换磁盘。已经进行了以前的大多数研究以提高SSD的性能,但这些研究已经在假设主机接口的操作单元与NAND闪存的操作单元相同,在那里毋庸置疑部分填充的页面。在本文中,我们分析了部分填充页面引起的开销,并提出了一种利用多芯片并行性的缓冲替换算法,以提高写性能。我们的仿真结果表明,该算法通过现有方法提高了多达30%的写入性能。

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