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Designing content distribution networks for optimal cost and performance

机译:设计内容分发网络以获得最佳成本和性能

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摘要

One strategy for alleviating excess latency (delay) in the Internet is the caching of web content at multiple locations. This reduces the number of hops necessary to reach the desired content. This strategy is used for web content such as html pages, images, streaming video, and Internet radio. The network of servers which store this content, and the collections of objects stored on each server, is called a content distribution network (CDN). In order to optimally design a CDN, given a network topology with available server storage capacity at various points in the network, one must decide which object collections to place on each server in order to achieve performance or cost objectives. The placements must be within the storage limits of the servers and must reflect the request patterns for each collection of objects to be cached. Researchers have suggested formulations for the CDN problem which address performance by minimizing latency (the average number of hops is a commonly accepted measure of latency) from client to content, or formulations that focus on minimizing cost of storage and/or bandwidth. In this research, we develop a model which allows for the simultaneous treatment of performance and cost, present examples to illustrate the application of the model and perform a detailed designed experiment to gain insights into cost/hops tradeoff for a variety of network parameters.
机译:减轻Internet中过多延迟(延迟)的一种策略是在多个位置缓存Web内容。这减少了达到所需内容所需的跃点数。此策略用于Web内容,例如html页面,图像,流视频和Internet广播。存储此内容的服务器网络以及存储在每个服务器上的对象的集合称为内容分发网络(CDN)。为了优化设计CDN,给定一种网络拓扑,在网络中的各个点都具有可用的服务器存储容量,必须确定要在每个服务器上放置哪些对象集合才能实现性能或成本目标。放置位置必须在服务器的存储限制内,并且必须反映要缓存的每个对象集合的请求模式。研究人员提出了CDN问题的解决方案,该解决方案通过最小化从客户端到内容的等待时间(平均跃点数是普遍接受的等待时间度量)来解决性能问题,或者着重于使存储和/或带宽成本最小化的建议。在这项研究中,我们开发了一个可同时处理性能和成本的模型,并提供了一些实例来说明该模型的应用,并进行了详细设计的实验,以洞悉各种网络参数的成本/跳跃权衡。

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