Overlay Node Placement: Analysis, Algorithms and Impact on Applications

Sabyasachi Roy, Himabindu Pucha, Zheng Zhang, Y. C. Hu, L. Qiu
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引用次数: 41

Abstract

Overlay routing has emerged as a promising approach to improving performance and reliability of Internet paths. To fully realize the potential of overlay routing under the constraints of deployment costs in terms of hardware, network connectivity and human effort, it is critical to carefully place infrastructure overlay nodes to balance the trade-off between performance and resource constraints. In this paper, we investigate approaches to perform intelligent placement of overlay nodes to facilitate (i) resilient routing and (ii) TCP performance improvement. We formulate objective functions to accurately capture application behavior: reliability and TCP performance, and develop several placement algorithms, which offer a wide range of trade-offs in complexity and required knowledge of the client- server location and traffic load. Using simulations on synthetic and real Internet topologies, and PlanetLab experiments, we demonstrate the effectiveness of the placement algorithms and objective functions developed, respectively. We conclude that an approach, hybrid of random and greedy approaches, provides the best tradeoff between computational efficiency and accuracy. We also uncover the fundamental challenge in simultaneously optimizing for reliability and TCP performance, and propose a simple unified algorithm to achieve the same.
覆盖节点放置:分析、算法和对应用的影响
覆盖路由已经成为一种很有前途的方法来提高互联网路径的性能和可靠性。为了在硬件、网络连接和人力方面的部署成本约束下充分发挥覆盖路由的潜力,仔细放置基础设施覆盖节点以平衡性能和资源约束之间的权衡至关重要。在本文中,我们研究了执行覆盖节点的智能放置的方法,以促进(i)弹性路由和(ii) TCP性能改进。我们制定了目标函数来准确地捕获应用程序行为:可靠性和TCP性能,并开发了几种放置算法,这些算法在复杂性和客户端-服务器位置和流量负载所需的知识方面提供了广泛的权衡。通过仿真和PlanetLab实验,我们分别证明了所开发的布局算法和目标函数的有效性。我们得出的结论是,一种方法,随机和贪婪的混合方法,提供了计算效率和精度之间的最佳权衡。我们还揭示了同时优化可靠性和TCP性能的基本挑战,并提出了一个简单的统一算法来实现相同的目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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