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An Efficient Garbage Collection Policy for Flash Memory Based Swap Systems

机译:基于闪存的交换系统的有效垃圾回收策略

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摘要

Mobile computing devices use flash memory as a secondary storage because it has many attractive features such as small size, fast access speeds, shock resistance, and light weight. Mobile computing devices exploit a swap system to extend a limited main memory space and use flash memory as a swap system. Although flash memory has the attractive features, it should perform garbage collection, which includes erase operations. The erase operations are very slow, and usually decrease the performance of the system. Besides, the number of the erase operations allowed to each block is also limited. To minimize the garbage collection time and evenly wear out, our proposed garbage collection policy focuses on minimizing the garbage collection time and wear-leveling. Trace-driven simulations show that the proposed policy performs better than existing garbage collection policies in terms of the number of erase operation, the garbage collection time, total amount of energy consumption and the endurance of flash memory.
机译:移动计算设备使用闪存作为辅助存储设备,因为它具有许多吸引人的功能,例如体积小,访问速度快,抗冲击性和重量轻。移动计算设备利用交换系统来扩展有限的主存储空间,并将闪存用作交换系统。尽管闪存具有吸引人的功能,但它应执行垃圾回收,其中包括擦除操作。擦除操作非常慢,通常会降低系统性能。此外,每个块所允许的擦除操作的次数也受到限制。为了最大程度地减少垃圾收集时间并平均磨损,我们提出的垃圾收集策略着重于最大程度地减少垃圾收集时间和损耗均衡。跟踪驱动的模拟显示,在擦除操作的次数,垃圾收集时间,总能耗量和闪存的耐用性方面,所提出的策略比现有的垃圾收集策略表现更好。

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