ADN: An Information-Centric Networking Architecture for the Internet of Things

J. Garcia-Luna-Aceves
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引用次数: 14

Abstract

Forwarding data by name has been assumed to be a necessary aspect of an information-centric redesign of the current Internet architecture that makes content access, dissemination, and storage more efficient. The Named Data Networking (NDN) and Content-Centric Networking (CCNx) architectures are the leading examples of such an approach. However, forwarding data by name incurs storage and communication complexities that are orders of magnitude larger than solutions based on forwarding data using addresses. Furthermore, the specific algorithms used in NDN and CCNx have been shown to have a number of limitations. The Addressable Data Networking (ADN) architecture is introduced as an alternative to NDN and CCNx. ADN is particularly attractive for large-scale deployments of the Internet of Things (IoT), because it requires far less storage and processing in relaying nodes than NDN. ADN allows things and data to be denoted by names, just like NDN and CCNx do. However, instead of replacing the waist of the Internet with named-data forwarding, ADN uses an address-based forwarding plane and introduces an information plane that seamlessly maps names to addresses without the involvement of end-user applications. Simulation results illustrate the order of magnitude savings in complexity that can be attained with ADN compared to NDN.
面向物联网的以信息为中心的网络架构
按名称转发数据被认为是当前Internet体系结构以信息为中心的重新设计的必要方面,以使内容访问、传播和存储更有效。命名数据网络(NDN)和内容中心网络(CCNx)体系结构是这种方法的主要示例。但是,根据名称转发数据会导致存储和通信的复杂性,这比基于使用地址转发数据的解决方案要高几个数量级。此外,NDN和CCNx中使用的特定算法已被证明具有许多局限性。介绍了可寻址数据网络(ADN)架构,作为NDN和CCNx的替代方案。ADN对于物联网(IoT)的大规模部署特别有吸引力,因为它在中继节点上需要的存储和处理比NDN少得多。ADN允许用名称表示事物和数据,就像NDN和CCNx一样。然而,ADN并没有用命名数据转发取代Internet的腰部,而是使用了基于地址的转发平面,并引入了一个信息平面,可以无缝地将名称映射到地址,而不需要最终用户应用程序的参与。仿真结果表明,与NDN相比,ADN可以节省数量级的复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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