Web应用程序流量的MMPP特性

Ali Rajabi, J. Wong
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引用次数: 15

摘要

Web应用程序流量表现出突发性。基于泊松过程的传统模型无法捕捉到流量的突发性。另一方面,马尔可夫调制泊松过程(MMPP)已被成功地用于模拟各种计算环境中的突发流量。在本文中,我们通过实验来研究MMPP作为一种流量模型在web应用程序资源配置环境中的有效性。我们首先扩展一个可用的工作负载生成器,以生成一个受控突发的工作到达的合成跟踪。接下来,我们考虑一个现有的算法,以及该算法的一个变体,将MMPP拟合到合成轨迹;每个参数用于获取MMPP参数的值。然后通过比较模拟的性能结果来评估MMPP的有效性,使用估计的MMPP产生的合成跟踪和工作到达作为输入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MMPP Characterization of Web Application Traffic
Web application traffic has been shown to exhibit burstiness. The traditional model based on Poisson process is unable to capture the burstiness in traffic. On the other hand, the Markov-modulated Poisson process (MMPP) has been successfully used to model bursty traffic in a variety of computing environments. In this paper, we conduct experiments to investigate the effectiveness of MMPP as a traffic model in the context of resource provisioning in web applications. We first extend an available workload generator to produce a synthetic trace of job arrivals with controlled burstiness. We next consider an existing algorithm, as well as a variant of this algorithm, to fit an MMPP to the synthetic trace; each of them is used to obtain values for the MMPP parameters. The effectiveness of MMPP is then evaluated by comparing the performance results through simulation, using as input the synthetic trace and job arrivals generated by the estimated MMPP.
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