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Pruned Adaptive Routing in the heterogeneous Internet of Things

机译:异构物联网中的修剪自适应路由

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摘要

Recent research endeavours are capitalizing on state of the art technologies to build a scalable Internet of Things (IoT). Envisioned as a technology to integrate the best of Wireless Sensor Networks and RFID systems, there is much promise for a global network of objects that are identifiable, track-able, and harmoniously informing. However, the realization of an IoT framework is hindered by many factors, the most pressing of which is attributed to the integration of these heterogeneous nodes and devices. A considerable subset of these nodes undergoes movement and dynamically enters and leaves the network backbone/topology. Routing packets and inter-nodal communication has received little attention; mainly due to the sheer reliance on the Internet as a backbone. However, spatially correlated entities in the IoT, and those which most often interact, would pose a significant overhead of communication if all intermediate packets need to be routed over distant backhauls. In remedy, we present a Pruned Adaptive IoT Routing (PAIR) protocol that selectively establishes routes of communication between IoT nodes. Since nodes in the IoT belong to different owners, we also introduce a pricing model to cater for the exchange of monetary costs by intermediate nodes to utilize their relaying resources. We also establish a cap on inter-nodal routing to dynamically utilize the Internet backbone if the source to destination distance surpasses a preset (case optimized) threshold. The PAIR routing protocol is elaborated upon, building upon the detailed system model presented in this paper. We finally present a use case to demonstrate the utility and practicality of PAIR in the heterogeneous IoT as it scales.
机译:最近的研究工作是利用最先进的技术来构建可扩展的物联网(IoT)。作为一种将最佳的无线传感器网络和RFID系统集成在一起的技术,可以预见到一个可识别,可跟踪和协调通知的全球对象网络。但是,IoT框架的实现受到许多因素的阻碍,其中最紧迫的原因是这些异构节点和设备的集成。这些节点的相当一部分进行移动并动态进入和离开网络主干/拓扑。路由数据包和节点间通信很少受到关注。主要是由于完全依赖Internet作为骨干网。但是,如果所有中间数据包都需要通过远距离回程进行路由,则物联网中与空间相关的实体以及最常交互的实体将构成大量通信开销。作为补救措施,我们提出了一种修剪的自适应IoT路由(PAIR)协议,该协议有选择地建立IoT节点之间的通信路由。由于物联网中的节点属于不同的所有者,因此我们还引入了定价模型,以适应中间节点利用其中继资源进行货币成本的交换。如果源到目标的距离超过预设的阈值(案例优化),我们还对节点间路由设置上限以动态利用Internet骨干网。在本文介绍的详细系统模型的基础上,详细阐述了PAIR路由协议。我们最终提出一个用例,以证明PAIR在异构IoT扩展中的实用性和实用性。

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