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Evaluating Named Data Networking forwarding strategies in different IoT topologies

机译:在不同的IoT拓扑中评估命名数据网络转发策略

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The Internet of Things (IoT) is a growing paradigm that has seen multitudes of devices getting connected. From smartphones to smartwatches, smart agriculture, and smart HVAC (Heating, Ventilation, and Air-Conditioning) systems, schools, businesses, and homes to are trying to reduce human efforts and better lives through technology. The exponential growth of IoT devices on the Internet, results in a lot of challenges because the current Internet was not necessarily designed to cater for resource constrained devices. There is, therefore, a need to investigate an alternative Internet architecture that will take into account such device limitations and quantities. Named Data Networking (NDN) has been shown to be one of those architectures. Preliminary studies so far show that NDN has more advantages over the current TCP/IP architecture. NDN has forwarding strategies/ schemes that are essentially rules that tell NDN nodes how to forward interests and data packets from consumers to producers and back. This study aims to evaluate some of the forwarding strategies available in NDN, that is, best route, broadcast, multicast, and client-control strategy in different topologies that are star, mesh, ring, and a hybrid topology composed by mesh and star topology. The study was conducted by varying the number of producers in each topology, and the experimental results show that the multicast strategy outperforms the other strategies in a mesh, ring, and hybrid topology.
机译:物联网(IoT)是一个不断发展的范例,已经看到许多设备相互连接。从智能手机到智能手表,智能农业和智能HVAC(供暖,通风和空调)系统,学校,企业和家庭都在尝试通过技术来减少人类的努力并改善生活。物联网设备在互联网上的指数级增长带来了许多挑战,因为当前的互联网不一定是为满足资源受限的设备而设计的。因此,有必要研究一种替代的Internet体系结构,该体系结构应考虑到此类设备的局限性和数量。命名数据网络(NDN)已被证明是这些体系结构之一。到目前为止的初步研究表明,NDN比当前的TCP / IP体系结构具有更多优势。 NDN具有转发策略/方案,本质上是一些规则,用于告诉NDN节点如何将兴趣和数据包从消费者转发到生产者,再返回。本研究旨在评估NDN中可用的一些转发策略,即在星形,网格,环形和由网格和星形拓扑组成的混合拓扑的不同拓扑中的最佳路由,广播,多播和客户端控制策略。 。通过改变每种拓扑中生产者的数量来进行研究,实验结果表明,在网状,环形和混合拓扑中,组播策略的性能优于其他策略。

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