一种新的动态贪婪双大小替换策略,使时间关键型Web应用程序成功

Allan K. Y. Wong, Jackei H. K. Wong, Wilfred W. K. Lin, T. Dillon
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引用次数: 1

摘要

GreedyDual-Size (GD-Size)替换算法是一种静态缓存大小的方法,比基本的LRU替换算法产生更高的命中率。然而,维持给定的命中率需要动态缓存大小调优,到目前为止,这只能通过MACSC(自适应缓存大小控制模型)模型实现。由于GD-Size比基本LRU产生更高的命中率,本文提出用GD-Size算法代替MACSC中的LRU单元。这种替换创建了一个新的、更有效的动态缓存大小调优器,dynamic greedy - dual - size (DGD-Size)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Dynamic Greedydual-Size Replacement Strategy to Make Time-Critical Web Applications Successful
The GreedyDual-Size (GD-Size) replacement algorithm is a static-cache-size approach that yields a higher hit ratio than the basic LRU replacement algorithm. Yet, maintaining a given hit ratio needs dynamic cache size tuning, and this can only be achieved by the MACSC (model for adaptive cache size control) model so far. Since the GD-Size yields a higher hit ratio than the basic LRU, it is proposed in this paper to replace the LRU unit in MACSC with the GD-Size algorithm. The replacement creates a new and more efficient dynamic cache size tuner, Dynamic GreedyDual-Size (DGD-Size).
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