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An on-demand off-path cache exploration based multipath forwarding strategy

机译:基于按需的路径外高速缓存探索的多路径转发策略

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Information-Centric Networking (ICN), such as Named Data Networking (NDN), intrinsically supports multipath forwarding and in-network caching. In order to take full advantage of both multipath forwarding and in-network caching, it requires sophisticated coordination among consumers, publishers and in-network caches for consumers to learn the fine-grained packet-level cache reachability information. The complexity introduced by the coordination as well as the cache organization hinders the full potential of NDN. Network coding enabled NDN architecture, referred to as NC-NDN, was proposed to significantly simplify the coordination design. However, the NC-NDN proposed so far only exploits on path caches, which leaves much room for performance improvement. This work enhances NC-NDN with an On-demand Off-path Cache Exploration based Multipath Forwarding strategy, dubbed as O2CEMF, to make the best of the multipath forwarding to efficiently utilize off-path cached content. Under O2CEMF, each network node reactively explores nearby off-path caches when consumers begin to request a generation of content and then maintains the reachability information at the more coarse-grained generation level of granularity instead. Then each consumer can simultaneously retrieve diverse content segments from the original content publisher(s) and the explored capable off-path caches. Our experimental studies validate that our proposed O2CEMF strategy improves the content delivery performance in terms of the average cache hit ratio, the average hops that an Interest traverses, and the average time for retrieving content at an affordable cost as compared to that in the present NC-NDN without exploiting off-path caches. (C) 2019 Elsevier B.V. All rights reserved.
机译:诸如命名数据网络(NDN)之类的以信息为中心的网络(ICN)本质上支持多路径转发和网络内缓存。为了充分利用多路径转发和网络内缓存,它要求消费者,发布者和网络内缓存之间进行复杂的协调,以使消费者了解细粒度的数据包级缓存可达性信息。协调以及缓存组织引入的复杂性阻碍了NDN的全部潜力。提出了启用网络编码的NDN体系结构,称为NC-NDN,以显着简化协调设计。但是,迄今为止,NC-NDN仅提出了对路径缓存的利用,这为性能提升留下了很大的空间。这项工作采用一种称为O2CEMF的基于按需离路径缓存探索的多路径转发策略来增强NC-NDN,以充分利用多路径转发来有效利用离路径缓存的内容。在O2CEMF下,当消费者开始请求生成内容时,每个网络节点都会反应性地探索附近的路径外高速缓存,然后将可达性信息保持在更粗粒度的粒度级别上。然后,每个消费者都可以同时从原始内容发布者和已探究的功能偏离路径缓存中检索不同的内容片段。我们的实验研究证实,与目前的NC相比,我们提出的O2CEMF策略在平均缓存命中率,兴趣遍历的平均跃点以及以可承受的成本获取内容的平均时间方面提高了内容交付性能-NDN,而无需利用路径外高速缓存。 (C)2019 Elsevier B.V.保留所有权利。

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