互联网服务器请求调度的频域滤波器设计与分析

Minghua Xu, Chengzhong Xu
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引用次数: 2

摘要

互联网流量具有强相关性的特点。这种流量特征极大地使服务器性能建模和优化问题复杂化。传统的时域分析方法在研究复杂流量对服务器性能的影响时存在局限性,因为互联网流量的自相似性往往表现在频域。在本文中,我们提出了一个频域滤波模型来表征一般输入流量的服务器容量、资源分配和服务质量之间的关系。功率谱密度(PSD)表示变化强度(功率)作为频率的函数。通过该模型,服务器调度器作为输入流量的过滤器,将其PSD函数转换为服务器利用过程的另一个PSD函数。二阶统计调度器的最优性是使变换过程中的漏功率最小。大多数互联网流量具有单调递减的PSD函数。对于这种类型的输入流量,我们证明了最优调度程序具有凸结构。均匀分配是凸性的一种极端情况,对于独立到达的交通是最优的。我们将凸结构调度原理与GPS规则相结合,结果表明,改进后的GPS策略显著提高了服务质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency Domain Filter Design and Analysis of Request Scheduling in Internet Servers
Internet traffic has a characteristic of strong correlation. This traffic characteristic greatly complicates the problem of server performance modeling and optimization. Conventional time domain analysis has limitations in the study of the impact of complex traffic on server performance, because self-similarity of Internet traffic is often characterized in frequency domain. In this paper, we present a frequency domain filter model to characterize the relationship between server capacity, resource allocation, and service quality for general input traffic. Power spectral density (PSD) shows the strength of variations (power) as a function of frequency. By the model, server scheduler operates as a filter of input traffic that transforms its PSD function into another PSD function of server utilization process. The optimality of the scheduler in second-order statistics is to minimize the power leakage in the transformation. Most Internet traffic has monotonically decreasing PSD functions. For this type of input traffic, we prove that the optimal schedulers have a convex structure. Uniform allocation is an extreme case of the convexity and is proven to be optimal for traffic of independent arrivals. We integrate the convex-structured scheduling principle with GPS discipline and show that the enhanced GPS policy improves the service quality significantly.
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