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CoAR: Congestion-Aware Routing Protocol for Low Power and Lossy Networks for IoT Applications

机译:CoAR:用于物联网应用的低功耗有损网络的拥塞感知路由协议

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摘要

The IPv6 routing protocol for low power and lossy networks (RPL) was designed to satisfy the requirements of a wide range of Internet of Things (IoT) applications, including industrial and environmental monitoring. In most scenarios, different from an ordinary environment, the industrial monitoring system under emergency scenarios needs to not only periodically collect the information from the sensing region, but also respond rapidly to some unusual situations. In the monitoring system, particularly when an event occurs in the sensing region, a surge of data generated by the sensors may lead to congestion at parent node as data packets converge towards the root. Congestion problem degrades the network performance that has an impact on quality of service. To resolve this problem, we propose a congestion-aware routing protocol (CoAR) which utilizes the selection of an alternative parent to alleviate the congestion in the network. The proposed mechanism uses a multi-criteria decision-making approach to select the best alternative parent node within the congestion by combining the multiple routing metrics. Moreover, the neighborhood index is used as the tie-breaking metric during the parent selection process when the routing score is equal. In order to determine the congestion, CoAR adopts the adaptive congestion detection mechanism based on the current queue occupancy and observation of present and past traffic trends. The proposed protocol has been tested and evaluated in different scenarios in comparison with ECRM and RPL. The simulation results show that CoAR is capable of dealing successfully with congestion in LLNs while preserving the required characteristics of the IoT applications.
机译:低功耗和有损网络(RPL)的IPv6路由协议旨在满足包括工业和环境监控在内的各种物联网(IoT)应用程序的需求。在大多数情况下,与普通环境不同,紧急情况下的工业监视系统不仅需要定期从传感区域收集信息,而且还需要对某些异常情况做出快速响应。在监视系统中,特别是当在感测区域中发生事件时,由于数据包朝着根汇聚,由传感器生成的数据激增可能导致父节点处的拥塞。拥塞问题会降低网络性能,从而影响服务质量。为了解决此问题,我们提出了一种拥塞感知路由协议(CoAR),该协议利用对备用父节点的选择来缓解网络中的拥塞。所提出的机制使用多准则决策方法,通过组合多个路由度量来选择拥塞内的最佳备用父节点。此外,当路由分数相等时,在父选择过程中将邻域索引用作平局决胜度量。为了确定拥塞,CoAR基于当前队列占用率以及对当前和过去流量趋势的观察,采用自适应拥塞检测机制。与ECRM和RPL相比,已在不同的场景中对所提出的协议进行了测试和评估。仿真结果表明,CoAR能够成功处理LLN中的拥塞,同时保留了IoT应用程序所需的特性。

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