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首页> 外文期刊>IEEE Transactions on Consumer Electronics >Wear-Aware Out-of-Order Dynamic Scheduling for NAND Flash-Based Consumer Electronics
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Wear-Aware Out-of-Order Dynamic Scheduling for NAND Flash-Based Consumer Electronics

机译:基于NAND闪存的消费电子产品的磨损感知无序动态调度

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摘要

Because of the excellent performance and decreasing price of NAND flash, NAND flash-based solid-state drive (SSD) has been widely used as a storage system in consumer electronics. Moreover, modern consumer SSDs usually adopt a multichannel parallel structure. Thus, how to fully utilize the internal parallelism through IO scheduling is a key problem. The existing IO schedulers fail to solve the following: 1) the utilization of flash translation layer information to optimize the internal parallelism is not sufficient; 2) the wear of flash memory is not considered when allocating write requests. This article proposes a Wear-aware Out-of-order Dynamic Scheduling Algorithm (WODSA). First, according to the information of the flash translation layer, the max-parallel-based scheduling strategy is proposed to schedule the read requests to maximize read parallelism. Second, the wear-aware dynamic write allocation strategy is proposed based on the idle/busy state and wear degree of channels and chips. WODSA allocates write requests to channels and chips with less wear preferentially in a maximized parallel manner to achieve write parallelism and active dynamic wear-leveling. Experimental results show that compared with existing IO schedulers and dynamic wear-leveling algorithms, WODSA can improve both the average response time and wear-leveling in block-level and channel-level.
机译:由于NAND Flash的优异性能和降低,NAND基于闪存的固态驱动(SSD)已被广泛用作消费电子产品的存储系统。此外,现代消费者SSD通常采用多通道并联结构。因此,如何通过IO调度充分利用内部并行性是关键问题。现有的IO调度器无法解决:1)利用闪光翻译层信息以优化内部并行性是不够的; 2)分配写请求时不考虑闪存的磨损。本文提出了一种磨损无序的动态调度算法(WODSA)。首先,根据闪光翻译层的信息,提出了基于MAX-并行的调度策略来调度读取请求以最大化读取的并行性。其次,基于怠速/繁忙状态和频道和芯片的磨损程度提出了磨损动态写分配策略。 Wodsa分配给频道和芯片的写入请求,优先以最大化的并行方式优先穿着,以实现写并行和主动动态磨损。实验结果表明,与现有的IO调度仪和动态磨损算法相比,沃多达可以改善块级和通道级别的平均响应时间和磨损。

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