An information-centric networking architecture with small routing tables

J. J. Aceves, Maziar Mirzazad Barijough
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Abstract

The basic design of the Named Data Networking (NDN) architecture is shown to incur problems, in that Interests (content requests) may go unanswered even if content is available in the network, and Pending Interest Tables (PIT) are shown to provide limited performance benefits in the presence of in- network caching. A new approach to content-centric networking is introduced that eliminates the need to maintain PITs while providing the benefits sought by NDN. Content-Centric Networking with Data Answer Routing Table (CCN-DART) replaces PITs with Data Answer Routing Tables (DARTs) to forward Interests that do not state their sources. The size of a DART is proportional to the number of routes used by Interests traversing a router, rather than the number of Interests traversing a router. It is shown that undetected Interest loops cannot occur in CCN-DART, and that Interests and responses to them are forwarded correctly independently of the state of the network. The results of simulation experiments comparing CCN-DART with NDN using the ndnSIM simulation tool show that CCN-DART attains similar or better latencies than NDN when no looping problems occur in NDN, while using a similar number of Interests and storing an order of magnitude fewer forwarding entries.
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具有小路由表的以信息为中心的网络体系结构
命名数据网络(NDN)体系结构的基本设计会产生问题,因为兴趣(内容请求)可能得不到回答,即使内容在网络中可用,并且待定兴趣表(PIT)在存在网络缓存的情况下提供有限的性能优势。介绍了一种以内容为中心的网络的新方法,该方法消除了维护pit的需要,同时提供了NDN所寻求的好处。使用数据回答路由表(CCN-DART)的以内容为中心的网络用数据回答路由表(dart)取代坑,以转发不说明其来源的兴趣。DART的大小与穿越路由器的兴趣所使用的路由数量成正比,而不是与穿越路由器的兴趣数量成正比。研究表明,未检测到的兴趣循环不会在CCN-DART中发生,并且兴趣和对它们的响应都是独立于网络状态正确转发的。利用ndnSIM仿真工具对CCN-DART和NDN进行了仿真实验,结果表明,在NDN中不发生循环问题的情况下,CCN-DART获得了与NDN相似或更好的延迟,同时使用了相似数量的兴趣,并且存储的转发项少了一个数量级。
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