IEEE 802.15.4-2015 TSCH网络中链路质量和基于路径的聚类

A. Mavromatis, Georgios Z. Papadopoulos, Xenofon Fafoutis, A. Goulianos, G. Oikonomou, P. Chatzimisios, T. Tryfonas
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引用次数: 4

摘要

先进的聚类技术已广泛应用于无线传感器网络(wsn),因为它们可以潜在地减少延迟,改进调度,减少端到端延迟,并在密集的网络拓扑结构中优化能耗。在本文中,我们提出了一种新的高密度IEEE 802.15.4-2015时隙信道跳频(TSCH)聚类算法。特别地,提出的方法将各种解决方案合并到一个集成的集群设计中。假设网络分布均匀,所提出的配置采用等量子组的自上而下分层方法,其中独立子组的形成适应网络密度,节点选择度量基于链路质量指标。提出的算法在Contiki操作系统(OS)上实现,并设计了几个测试向量,以评估该算法在COOJA仿真环境中的性能。性能结果证明了集群结构的能力,因为与默认方案相比,它显著提高了能源效率高达35%,数据包下降超过40%,数据包重传率也有所提高。最后但并非最不重要的是,本研究的结果表明网络生命周期大幅增加,即高达50%。
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Link quality and path based clustering in IEEE 802.15.4-2015 TSCH networks
Advance clustering techniques have been widely used in Wireless Sensor Networks (WSNs) since they can potentially reduce latency, improve scheduling, decrease end-to-end delay and optimise energy consumption within a dense network topology. In this paper, we present a novel clustering algorithm for high density IEEE 802.15.4-2015 Time-Slotted Channel Hopping (TSCH). In particular, the proposed methodology merges a variety of solutions into an integrated clustering design. Assuming an homogeneous network distribution, the proposed configuration deploys a hierarchical down-top approach of equally numbered sub-groups, in which the formation of the separate sub-groups is adapted to the network density and the node selection metric is based on the link quality indicator. The presented algorithm is implemented in Contiki Operating System (OS) and several test vectors have been designed in order to evaluate the performance of the proposed algorithm in a COOJA simulation environment. Performance results demonstrate the capability of the clustering structure since compared to the default scheme it significantly improves the energy efficiency up to 35%, packet drops more than 40% as well the packet retransmission rate. Last but not least, the outcome of this study indicates a major increase in the network lifetime, i.e., up to 50%.
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Uncertainty-driven ensemble forecasting of QoS in Software Defined Networks A Reactive Security Framework for operational wind parks using Service Function Chaining The use of predictive models in dynamic treatment planning Link quality and path based clustering in IEEE 802.15.4-2015 TSCH networks Using repeated game for maximizing high priority data trustworthiness in Wireless Sensor Networks
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