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Scalability and Performance Analysis of Wireless Networks and Information-Centric Networks

机译:无线网络和以信息为中心的网络的可伸缩性和性能分析

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摘要

Computer networks are complex constructs consisting of many entities that simultaneously interact with one another. Understanding various aspects of such complex systems and their scaling properties is therefore a challenging task. This thesis studies the performance of computer networks through several layers of abstraction---namely communication, social and information---and investigates the interplay between these layers at a large scale and from an analytical point of view. The results derived from this analysis are crucial in early identifying of design issues and potential weaknesses of large-scale networks such as the Internet for which performing simulations is prohibitive.;The first part of this dissertation studies how the spatial diversity of social contacts affect the scalability of communication networks and identifies classes of social models that let computer networks properly scale. From this analysis, it is established that scalability is achieved under social models in which social contacts are statistically concentrated within a confined geographical region around each node. We shall recognize that the true distribution of social contacts in real networks does not generally meet this requirement, imposing a scalability gap on today's networks.;The second part of the dissertation studies information-centric networking (ICN); a framework that utilizes distributed content caching that can be used to bridge the foregoing scalability gap. Three dominant methods of distributed content caching---namely uniform-, optimal- and edge-caching---are compared. We shall see that caching only at the edge of the network outperforms uniform-caching (the de facto standard of ICN) in terms of end-to-end latency while offering slightly inferior results compared to the more complex optimal-caching strategy. This result is further augmented by the observation that higher degrees of reference locality in space and/or time improve the performance of edge-caching, making it a viable alternative to optimal solution.;Finally, an analysis of the forwarding plane of ICN is presented. In the absence of host addressing, ICN routers are required to keep track of all requests (Interests) passing through them in Pending Interest Tables (PITs) that are needed to deliver data back to the requesters as well as to enable optimization mechanisms such as Interest aggregation. Through careful analysis of the PIT size distribution and the probability of Interest aggregation at PIT, we shall see not only are the true benefits from the stateful forwarding plane of ICN much smaller than anticipated, but also they come at the high expense of maintaining very large PITs. These results reveal that the forwarding plane of ICN must be rethought; an important finding that provokes the investigation of a stateless forwarding plane for future ICNs.
机译:计算机网络是复杂的结构,由许多彼此同时交互的实体组成。因此,了解这种复杂系统的各个方面及其缩放特性是一项艰巨的任务。本文通过多层抽象层(即通信,社会和信息)研究计算机网络的性能,并从分析的角度大规模研究了这些层之间的相互作用。从分析中得出的结果对于尽早发现设计问题和大规模网络(例如禁止进行模拟的互联网)的潜在弱点至关重要。本文的第一部分研究了社交联系的空间多样性如何影响社交网络。通信网络的可扩展性,并确定可让计算机网络正确扩展的社交模型类别。通过该分析,可以确定,在社交模型下实现了可伸缩性,其中社交联系人在统计上集中在每个节点周围的有限地理区域内。我们将认识到,真实网络中社交联系人的真实分布通常不能满足此要求,这给当今的网络带来了可扩展性的差距。论文的第二部分研究以信息为中心的网络(ICN)。一个利用分布式内容缓存的框架,可用于弥合上述可伸缩性差距。比较了三种主要的分布式内容缓存方法,即统一缓存,最佳缓存和边缘缓存。我们将看到,就端到端延迟而言,仅在网络边缘进行的缓存优于统一缓存(ICN的事实上的标准),而与更复杂的最佳缓存策略相比,其缓存效果稍差。通过观察到更高的空间和/或时间参考位置度可以改善边缘缓存的性能,从而使其成为最佳解决方案的可行替代方案,这一结果得到了进一步的增强。;最后,对ICN转发平面进行了分析。 。在没有主机寻址的情况下,ICN路由器需要在将数据传送回请求者以及启用优化机制(例如兴趣)所需的未决兴趣表(PIT)中跟踪通过它们的所有请求(兴趣)。聚合。通过仔细分析PIT的大小分布和PIT上的利益聚集概率,我们将不仅看到ICN有状态转发平面的实际收益比预期的要小得多,而且它们付出的代价是维持非常大的收益PIT。这些结果表明,必须重新考虑ICN的转发平面。一个重要的发现促使对未来ICN的无状态转发平面进行调查。

著录项

  • 作者

    Dabirmoghaddam, Ali.;

  • 作者单位

    University of California, Santa Cruz.;

  • 授予单位 University of California, Santa Cruz.;
  • 学科 Computer engineering.;Computer science.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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