A generic delay tolerant routing strategy for information centric networking (ICN)

Sibendu Paul, Bitan Banerjee, Rajdeep Das, A. Mukherjee, M. K. Naskar
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引用次数: 4

Abstract

It is a paradigm shift in internet architecture from receiver centric model to the information centric networking (ICN) model to improve the end-users' latency experience. With exponential increment in number of users and data volume, efficient usage of the nodes (caches) and content forwarding methodology are key issues in an ICN architecture. In ICN intra-domain routers have storage capacity and they can act as temporary content provider, therefore it reduces average hop count and correspondingly average delay for content download. In this article, we formulate the content management issues in a cache having finite storage capability and propose an efficient content management policy that metamorphoses a node to a self-sustained cache. We address how content packets are stored in buffer of the cache before processing and how they suffer from several finite propagation delays during the processing in a cache. We simulate our proposition with deploying real-life network environment and calculate user experience metrics like average latency, throughput and good-put. From simulation results we observe that our proposed model outperforms the existing state-of-the-art on-path caching policies.
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面向信息中心网络(ICN)的通用容错路由策略
从以接收者为中心的网络模型到以信息为中心的网络(ICN)模型是互联网架构的一个范式转变,旨在改善终端用户的延迟体验。随着用户数量和数据量呈指数级增长,节点(缓存)的有效使用和内容转发方法是ICN体系结构中的关键问题。在ICN中,域内路由器具有存储容量,可以作为临时内容提供者,因此减少了平均跳数和相应的平均内容下载延迟。在本文中,我们阐述了具有有限存储能力的缓存中的内容管理问题,并提出了一种有效的内容管理策略,该策略将节点转化为自维持缓存。我们讨论了内容包在处理之前如何存储在缓存的缓冲区中,以及它们在缓存处理期间如何遭受几个有限的传播延迟。我们通过部署真实的网络环境来模拟我们的主张,并计算用户体验指标,如平均延迟、吞吐量和good-put。从仿真结果中,我们观察到我们提出的模型优于现有的最先进的路径上缓存策略。
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