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Dynamic Data Reallocation in Hybrid Disk Arrays

机译:混合磁盘阵列中的动态数据重新分配

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Current disk arrays consist purely of hard disk drives, which normally provide huge storage capacities with low cost and high throughput for data-intensive applications. Nevertheless, they have some inherent disadvantages such as long access latencies and energy inefficiency due to their build-in mechanical mechanisms. Flash-memory-based solid state disks, on the other hand, although currently more expensive and inadequate in write cycles, offer much faster random read accesses and are much more robust and energy efficient. To combine the complementary merits of hard disks and flash disks, in this paper, we propose a hybrid disk array architecture named hybrid disk storage (HIT) for data-intensive applications. Next, a dynamic data redistribution strategy called performance, energy, and reliability balanced (PEARL), which can periodically redistribute data between flash disks and hard disks to adapt to the changing data access patterns, is developed on top of the HIT architecture. Comprehensive simulations using real-life traces demonstrate that compared with existing data placement techniques, PEARL exhibits its strength in both performance and energy consumption without impairing flash disk reliability.
机译:当前的磁盘阵列仅由硬盘驱动器组成,通常为数据密集型应用程序提供低成本,高吞吐量的巨大存储容量。然而,由于其内置的机械机制,它们具有一些固有的缺点,例如访问时间长和能量效率低下。另一方面,尽管基于闪存的固态磁盘目前更昂贵且写入周期不足,但它们提供了更快的随机读取访问,并且更加健壮和节能。为了结合硬盘和闪存盘的互补优点,在本文中,我们针对数据密集型应用程序提出了一种名为“混合磁盘存储(HIT)”的混合磁盘阵列体系结构。接下来,在HIT体系结构的基础上,开发了一种动态数据重新分配策略,称为性能,能源和可靠性平衡(PEARL),可以定期在闪存磁盘和硬盘之间重新分配数据,以适应不断变化的数据访问模式。使用实际轨迹进行的全面模拟表明,与现有的数据放置技术相比,PEARL在不降低闪存可靠性的情况下在性能和能耗方面均具有优势。

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