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Improved content management for information-centric networking in SDN-based wireless mesh network

机译:改进了基于SDN的无线网状网络中以信息为中心的网络的内容管理

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Information Centric Networking (ICN) is a new network paradigm that emphasizes information and content, and considers the content name rather than the existing destination address as the routing criterion. Software-Defined Networking (SDN) can be a great help to the feasibility of ICN because it provides a network with flexibility and continuous management. In this paper, we present a method for significantly improving the efficiency of ICN content management using the SDN concept in a Wireless Mesh Network (WMN) environment. Each mesh node of a WMN can utilize its memory and storage as a cache, and the cache server, which has a sufficient amount of space, is used for high-capacity content. SDN enables a network to support various caching techniques, such as content identification, cache location decision, and cache distribution on the network layer. In particular, the SDN described in this paper significantly improves the cache distribution performance and content management efficiency through a cache location decision considering the features of wireless communication, a mesh topology, and constraints to the hardware capacity and cache space. The proposed system was evaluated through actual experiments. In the environment where the clients are locally converged, the proposed SDN-based content management schemes decrease the average response delay by 22.74% with only 4.59 kb control traffic load per second in comparison to other in-network cache schemes. (C) 2015 Elsevier B.V. All rights reserved.
机译:信息中心网络(ICN)是一种新的网络范式,它强调信息和内容,并且将内容名称而不是现有的目标地址视为路由标准。软件定义网络(SDN)可以为ICN的可行性提供很大的帮助,因为它为网络提供了灵活性和连续性管理。在本文中,我们提出了一种在无线网格网络(WMN)环境中使用SDN概念显着提高ICN内容管理效率的方法。 WMN的每个网格节点都可以将其内存和存储用作缓存,并且具有足够空间的缓存服务器用于大容量内容。 SDN使网络能够支持各种缓存技术,例如内容识别,缓存位置确定和网络层上的缓存分发。特别是,本文所述的SDN通过考虑无线通信的特性,网状拓扑以及对硬件容量和缓存空间的限制,通过缓存位置决定显着提高了缓存分发性能和内容管理效率。通过实际实验对提出的系统进行了评估。在客户端本地融合的环境中,与其他网络内缓存方案相比,基于SDN的内容管理方案所建议的平均响应延迟降低了22.74%,每秒仅提供4.59 kb的控制流量。 (C)2015 Elsevier B.V.保留所有权利。

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