Drafting behind Akamai (travelocity-based detouring)

Ao-Jan Su, D. Choffnes, A. Kuzmanovic, F. Bustamante
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引用次数: 212

Abstract

To enhance web browsing experiences, content distribution networks (CDNs) move web content "closer" to clients by caching copies of web objects on thousands of servers worldwide. Additionally, to minimize client download times, such systems perform extensive network and server measurements, and use them to redirect clients to different servers over short time scales. In this paper, we explore techniques for inferring and exploiting network measurements performed by the largest CDN, Akamai; our objective is to locate and utilize quality Internet paths without performing extensive path probing or monitoring.Our contributions are threefold. First, we conduct a broad measurement study of Akamai's CDN. We probe Akamai's network from 140 PlanetLab vantage points for two months. We find that Akamai redirection times, while slightly higher than advertised, are sufficiently low to be useful for network control. Second, we empirically show that Akamai redirections overwhelmingly correlate with network latencies on the paths between clients and the Akamai servers. Finally, we illustrate how large-scale overlay networks can exploit Akamai redirections to identify the best detouring nodes for one-hop source routing. Our research shows that in more than 50% of investigated scenarios, it is better to route through the nodes "recommended" by Akamai, than to use the direct paths. Because this is not the case for the rest of the scenarios, we develop lowoverhead pruning algorithms that avoid Akamai-driven paths when they are not beneficial.
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Akamai背后的绘图(基于旅行城市的绕行)
为了增强web浏览体验,内容分发网络(cdn)通过在全球数千台服务器上缓存web对象的副本,使web内容“更接近”客户端。此外,为了最大限度地减少客户机下载时间,这些系统执行广泛的网络和服务器测量,并使用它们在短时间内将客户机重定向到不同的服务器。在本文中,我们探索了推断和利用最大的CDN Akamai执行的网络测量的技术;我们的目标是定位和利用高质量的互联网路径,而无需执行广泛的路径探测或监控。我们的贡献是三重的。首先,我们对Akamai的CDN进行了广泛的测量研究。我们从行星实验室的140个有利位置对阿卡迈的网络进行了两个月的调查。我们发现,Akamai重定向时间虽然略高于广告,但对于网络控制来说足够低。其次,我们的经验表明,Akamai重定向与客户端和Akamai服务器之间路径上的网络延迟有着压倒性的关联。最后,我们说明了大规模覆盖网络如何利用Akamai重定向来识别单跳源路由的最佳绕路节点。我们的研究表明,在超过50%的调查场景中,通过Akamai“推荐”的节点路由比使用直接路径要好。因为这不是其他场景的情况,所以我们开发了低开销的修剪算法,当akamai驱动的路径无益时,可以避免它们。
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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Session details: Wireless Proceedings of the 2006 conference on Applications, technologies, architectures, and protocols for computer communications Session details: Applications Session details: Measurement Session details: Routing 1
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