未来互联网中高效移动内容传递服务的缓存转发网络架构

Sanjoy Paul, Roy Yates, Dipankar Raychaudhuri, Jim Kurose
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引用次数: 96

摘要

提出了一种面向未来互联网移动内容交付服务的新型“缓存转发”(CNF)协议体系结构。CNF体系结构可以作为互联网协议(IP)的覆盖层来实现,也可以作为下一代网络的全新协议来实现。CNF基于具有大存储空间的存储转发路由器的概念,为偶尔断开连接的移动用户提供机会传递和网络内内容缓存。提议的CNF协议在CNF路由器之间使用可靠的逐跳传输大型数据文件,以取代像TCP这样的端到端传输协议。这种方法可以为间歇性连接的移动用户提供服务,同时还可以减轻多跳无线场景中出现的自干扰问题。逐跳传输在有线网络中同样有用,其中路由器存储可以帮助消除TCP/IP网络中出现的链路拥塞瓶颈。CNF协议的第二个关键特性是基于地址和基于内容的路由的集成,以支持利用网络内存储的各种内容交付模式。概述了CNF架构和主要协议组件,并总结了初步性能评估结果,以验证主要设计原则。
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The cache-and-forward network architecture for efficient mobile content delivery services in the future internet
This paper presents a novel "cache-and-forward" (CNF) protocol architecture for mobile content delivery services in the future Internet. The CNF architecture can be implemented as an overlay on top of the Internet Protocol (IP), or as a clean slate protocol for next-generation networks. CNF is based on the concept of store-and-forward routers with large storage, providing for opportunistic delivery to occasionally disconnected mobile users and for in-network caching of content. The proposed CNF protocol uses reliable hop-by-hop transfer of large data files between CNF routers in place of an end-to-end transport protocol like TCP. This approach makes it possible to serve mobile users with intermittent connectivity, while also mitigating self- interference problems which arise in multi-hop wireless scenarios. Hop-by-hop transport is similarly useful in wired networks where router storage can help to smooth out link congestion bottlenecks which arise in TCP/IP networks. A second key feature of the CNF protocol is the integration of address- based and content-based routing to support various content delivery modes that take advantage of in-network storage. An overview of the CNF architecture and major protocol components is given, and preliminary performance evaluation results are summarized to validate the main design principles.
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