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Network of Information (Netlnf) - An information-centric networking architecture

机译:信息网络(Netlnf)-以信息为中心的网络体系结构

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Information-centric networking (ICN) is a promising approach to networking that has the potential to provide better - more natural and more efficient - solutions for many of today's important communication applications including but not limited to large-scale content distribution. This article describes the Network of Information (Netlnf) architecture - a specific ICN approach that targets global-scale communication and supports many different types of networks and deployments, including traditional Internet access/core network configurations, data centers, as well as challenged and infrastructure-less networks. Netlnf s approach to connecting different technology and administrative domains into a single information-centric network is based on a hybrid name-based routing and name resolution scheme. In this article, we describe the most important requirements that motivated the Netlnf design. We present an architecture overview and discuss the different architecture elements such as naming, message forwarding, caching, and a name resolution service (NRS) in detail. As efficient caching and a scalable NRS are two main success factors, we present an evaluation of both elements based on a theoretical analysis, comple-mental simulation results, and prototyping results. The results suggest that a scalable NRS for 10~(15) and more objects with resolution latencies (well) below 100 ms is possible, implying that a global Network of Information that removes the need for today's application-specific overlay solutions is feasible.
机译:以信息为中心的联网(ICN)是一种有前途的联网方法,它有潜力为当今许多重要的通信应用程序提供更好-更自然,更高效-的解决方案,包括但不限于大规模内容分发。本文介绍了信息网络(Netlnf)体系结构-一种特定的ICN方法,该方法针对全球范围的通信并支持许多不同类型的网络和部署,包括传统的Internet访问/核心网络配置,数据中心以及受挑战的基础设施-较少的网络。 Netlnf将不同技术和管理域连接到单个以信息为中心的网络的方法是基于混合的基于名称的路由和名称解析方案。在本文中,我们描述了激发Netlnf设计的最重要的要求。我们将提供架构概述,并详细讨论诸如命名,消息转发,缓存和名称解析服务(NRS)之类的不同架构元素。由于高效的缓存和可伸缩的NRS是两个主要的成功因素,因此我们将基于理论分析,补充仿真结果和原型设计结果对这两个元素进行评估。结果表明,可扩展的NRS适用于10〜(15)和更多分辨率延迟(远)低于100 ms的对象,这意味着消除当今专用覆盖解决方案需求的全球信息网络是可行的。

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