物联网容错路由的自适应学习方法

S. Misra, Anshima Gupta, P. V. Krishna, Harshit Agarwal, M. Obaidat
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引用次数: 35

摘要

物联网(IOT)是一种无线自组织网络,日常物品之间相互协作,以完成一些共同的目标。设想的人类与物联网节点的高度关联需要同样高的网络可靠性。为了使物联网网络具有这种可靠性,有必要使其具有容错能力。在本文中,我们提出了基于混合跨层和学习自动机(LA)的物联网容错路由协议,该协议确保即使在一对源节点和目标节点之间存在故障的情况下也能成功传输数据包。由于这项工作涉及物联网,设计的算法应该具有高度可扩展性,并且应该能够在异构环境中提供高度的性能。所提出的方法中采用的LA和跨层概念赋予了算法这种灵活性,以便在整个网络中使用相同的标准。它动态地适应不断变化的环境,从而选择最优的行动。由于能源是物联网的主要问题,因此该算法执行能量感知容错路由。为了节省能量,所有未使用路径上的节点都进入休眠状态。同样,这种睡眠安排是动态的和自适应的。与本研究中作为基准的现有协议相比,所提出策略的仿真结果表明,该策略提高了网络的整体能效,减少了开销。
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An adaptive learning approach for fault-tolerant routing in Internet of Things
Internet of Things (IOT) is a wireless ad-hoc network of everyday objects collaborating and cooperating with one other in order to accomplish some shared objectives. The envisioned high degrees of association of humans with IOT nodes require equally high degrees of reliability of the network. In order to render this reliability to IOT networks, it is necessary to make them tolerant to faults. In this paper, we propose mixed cross-layered and learning automata (LA)-based fault-tolerant routing protocol for IOTs, which assures successful delivery of packets even in the presence of faults between a pair of source and destination nodes. As this work concerns IOT, the algorithm designed should be highly scalable and should be able to deliver high degrees of performance in a heterogeneous environment. The LA and cross-layer concepts adopted in the proposed approach endow this flexibility to the algorithm so that the same standard can be used across the network. It dynamically adopts itself to the changing environment and, hence, chooses the optimal action. Since energy is a major concern in IOTs, the algorithm performs energy-aware fault-tolerant routing. To save on energy, all the nodes lying in the unused path are put to sleep. Again this sleep scheduling is dynamic and adaptive. The simulation results of the proposed strategy shows an increase in the overall energy-efficiency of the network and decrease in overhead, as compared to the existing protocols we have considered as benchmarks in this study.
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