Web缓存层次结构中的工作负载表征

Guangwei Bai, C. Williamson
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引用次数: 16

摘要

本文使用跟踪驱动模拟和合成Web工作负载来研究简单Web代理缓存层次结构的每个级别的请求到达过程。仿真结果表明,Web缓存可以降低Web流量负载的峰值请求到达率和平均请求到达率。但是,请求到达过程的可变性在缓存之后可能增加、减少或保持不变,这取决于输入到达过程和缓存的配置。如果输入请求到达过程是自相似的,那么过滤后的请求到达过程仍然是自相似的,尽管平均值降低了。此外,来自多个子缓存的Web请求流的叠加会导致突发的聚合请求流。最后,我们发现伽马分布提供了一种灵活的方法来对分层Web缓存架构中的请求到达数分布进行建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Workload characterization in Web caching hierarchies
The paper uses trace-driven simulation and synthetic Web workloads to study the request arrival process at each level of a simple Web proxy caching hierarchy. The simulation results show that a Web cache reduces both the peak and the mean request arrival rate for Web traffic workloads. However, the variability of the request arrival process may either increase, decrease, or remain the same after the cache, depending on the input arrival process and the configuration of the cache. If the input request arrival process is self-similar, then the filtered request arrival process remains self-similar, though with reduced mean. Furthermore, the superposition of Web request streams from multiple child caches results in a bursty aggregate request stream. Finally, we find that a gamma distribution provides a flexible means of modeling the request arrival count distribution in hierarchical Web caching architectures.
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