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InCan : In-network cache assisted eNodeB caching mechanism in 4G LTE networks

机译:InCan:4G LTE网络中的网络内缓存辅助eNodeB缓存机制

摘要

The rapid growth of wireless data networks has introduced unprecedented traffic that far exceeds the deployment of cellular infrastructures. Caching has been a common approach for coping with the increased amount of traffic. In this paper we propose an in-network cache assisted eNodeB caching mechanism for 4G LTE Networks. The idea is to cache content objects at eNodeBs1 and leverage in-network caches to improve eNodeB caching. We model the cost structure from both bandwidth and delay viewpoints and show that eNoodeB caching is noticeably beneficial. We propose a framework in which eNodeBs can use the information from in-network caches to improve caching performance. We formulate the problem of maximizing delay reduction and prove that the problem is NP-complete. We provide a 2-competitive offline algorithm and a practical online algorithm to solve the problem. We conduct trace-driven simulations and experiment under both synthetic and real network topologies. Results show that our approach can significantly save bandwidth for mobile operators and reduce delays for end users.
机译:无线数据网络的迅速发展带来了空前的流量,远远超出了蜂窝基础架构的部署。缓存已成为应对日益增长的流量的一种常用方法。在本文中,我们提出了一种用于4G LTE网络的网络内缓存辅助eNodeB缓存机制。这个想法是在eNodeBs1上缓存内容对象,并利用网络内缓存来改善eNodeB缓存。我们从带宽和延迟的角度对成本结构进行建模,并表明eNoodeB缓存显着有益。我们提出了一个框架,其中eNodeB可以使用来自网络内缓存的信息来提高缓存性能。我们提出最大化延迟减少的问题,并证明该问题是NP完全的。我们提供了2竞争离线算法和实用在线算法来解决该问题。我们在综合和真实网络拓扑下进行跟踪驱动的仿真和实验。结果表明,我们的方法可以大大节省移动运营商的带宽,并减少最终用户的延迟。

著录项

  • 作者

    Ming Z; Xu M; Wang D;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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