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Distributed monitoring in 6LoWPAN based Internet of Things

机译:基于6LoWPAN的物联网中的分布式监视

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The emergence of the Internet of Things (IoT) is introducing more and more services and applications such as smart cities. For some services, the availability of elements and the connectivity between them are necessary. The robust functioning of a fragile and often dynamic system in IoT needs strong monitoring which is investigated in this paper. IPv6 Routing Protocol for Low Power and Lossy Networks (RPL) is the standardized routing protocol over IP-connected IoT networks. In tandem with RPL, we propose a new solution which aims to achieve distributed monitoring with minimal computational complexity. The main objective is to increase robustness in IoT via monitoring the links in the Destination Oriented Directed Acyclic Graphs (DODAG) constructed by RPL. Although RPL has a reactive repairing mechanism to tackle robustness in connectivity in case of node failures, we found that for real-time critical applications it is important to use proactive approaches for preventing faults and making recovery for connectivity faster. The problem can be modeled as a Vertex Cover Problem (VCP) on the DODAG. Such problem is a well known NP-hard optimization problem. The monitoring should be simple and energy aware. We demonstrate that the monitor placement in our case is only Fixed-Parameter Tractable, and also polynomial-time solvable, which is the best case.
机译:物联网(IoT)的出现正在引入越来越多的服务和应用程序,例如智慧城市。对于某些服务,元素的可用性及其之间的连通性是必需的。物联网中脆弱且经常动态的系统的强大功能需要强大的监控,本文对此进行了研究。低功耗有损网络的IPv6路由协议(RPL)是IP连接的IoT网络上的标准化路由协议。与RPL一起,我们提出了一种新的解决方案,旨在以最小的计算复杂度实现分布式监视。主要目标是通过监视RPL构造的面向目的地的有向无环图(DODAG)中的链接来提高IoT的鲁棒性。尽管RPL具有反应性修复机制来解决节点故障时连接的鲁棒性,但我们发现对于实时关键应用程序,重要的是使用主动方法来预防故障并更快地恢复连接。可以将该问题建模为DODAG上的顶点覆盖问题(VCP)。这样的问题是众所周知的NP难优化问题。监控应该简单且节能。我们证明,在我们的案例中,监视器的放置方式仅是固定参数可牵引的,并且多项式时间也可求解,这是最好的情况。

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