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Multitoken-Based Power Management for NAND Flash Storage Devices

机译:NAND闪存存储设备的基于多扬的电源管理

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NAND flash-based storage devices (NFSDs) have been widely employed in various systems, including cloud servers as well as mobile devices. The core component of NFSDs is NAND flash memory (NFM) which has several advantages over the conventional hard disk drives (HDDs). An NFSD typically adopts a bunch of NFMs which are operated in parallel for maximizing the I/O throughput. However, optimizing for performance may not be desirable from the power budget (PB) perspective. In other words, concurrent operations of NFMs often drain inordinate current, which leads to the violation of the PB allocated for a storage device. In this article, we propose a novel power management scheme which maximizes concurrent operations of NFMs under the given power constraint. The proposed method quantizes the given power constraint of an NFSD. A quantum also called token is the basic unit of power management. The proposed power management scheme allocates tokens to NFMs and only the NFMs having enough tokens can perform their operations. We call this method multitoken-based power management (MTPM). The critical issue of MTPM is a deadlock which is resolved with the key allocation scheme. Furthermore, we enhance MTPM to improve performance. The extended method called keyless MTPM (KMTPM) improves the overall performance by relaxing the key acquisition requirement and allowing subatomic operations. In the experimental results, we confirm that the proposed methods always meet the given power constraint. The proposed KMTPM improves throughput by 22.85% compared to state of the art technique. In addition, KMTPM only incurs 3.8% of performance overhead and 0.015% of area overhead.
机译:基于NAND基于闪存的存储设备(NFSD)已广泛用于各种系统,包括云服务器以及移动设备。 NFSD的核心组件是NAND闪存(NFM),其与传统硬盘驱动器(HDD)相比具有若干优点。 NFSD通常采用一堆NFMS,该NFMS并联操作,以便最大化I / O吞吐量。然而,从电力预算(PB)的角度来看,可能不需要对性能进行优化。换句话说,NFMS的并发操作通常会耗尽过度的电流,这导致违反为存储设备分配的PB。在本文中,我们提出了一种新的电源管理方案,可在给定的功率约束下最大化NFMS的并发操作。该方法量化了NFSD的给定功率约束。量子也称为令牌是电源管理的基本单位。所提出的电源管理方案将令牌分配给NFMS,只有足够令牌的NFMS可以执行其操作。我们称此方法基于多岁的电源管理(MTPM)。 MTPM的临界问题是一个僵局,它通过关键分配方案解决了。此外,我们增强了MTPM以提高性能。通过放宽关键采集要求并允许提包操作来提高整个性能,允许提高借调方法,并允许提包操作来提高整体性能。在实验结果中,我们确认所提出的方法总是满足给定的功率约束。与现有技术的状态相比,拟议的KMTPM将吞吐量提高22.85%。此外,KMTPM仅判处3.8%的性能开销和0.015%的区域开销。

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