多phy 6TiSCH网络的实验评估

1. MilicaLekić, 1. GordanaGardašević, Milan Mlađen, G. Gardasevic
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引用次数: 0

摘要

用于工业物联网(IIoT)应用的无线传感器网络(wsn)的架构设计需要仔细规划和选择适当的操作策略。标准的协调对于确保工业物联网解决方案的更容易认证和商业化至关重要。正在进行的研究活动旨在设计敏捷、可靠和安全的传输技术和协议。最近,时隙信道跳频(TSCH)标准化机构已经开始考虑支持多物理层,从而适应广泛的应用。本文介绍了在支持多个物理层(phy)的情况下,研究6TiSCH (IEEE 802.15.4e的TSCH模式上的IPv6)网络性能的广泛实验测量活动的结果。为了测量目的,所有实验都在OpenMote-B硬件上进行。这些设备配备了Atmel AT86RF215双无线电收发器,实现IEEE 802.15.4g。性能评价指标包括:网络形成时间、PDR (Packet Delivery Ratio)、时延、占空比。结果令人鼓舞,特别是在所有接受测试的物理医生的高PDR方面。性能评估表明,正确的节点定位、链路质量估计和仔细选择网络参数的重要性。此外,收集的实验结果创建了一个数据集,该数据集提供了对测试物理性能及其在室内6TiSCH网络中的潜力的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental evaluation of multi-PHY 6TiSCH networks
The architectural design of Wireless Sensor Networks (WSNs) for the Industrial Internet of Things (IIoT) applications requires the careful planning and selection of an appropriate operational strategy. Harmonization of standards is crucial to ensure easier certification and commercialization of IIoT solutions. The ongoing research activities are directed toward designing agile, reliable, and secure transmission technologies and protocols. Recently, Time Slotted Channel Hopping (TSCH) standardization bodies have started to consider support for multiple physical layers thus accommodating a wide range of applications. This paper presents the results of the extensive experimental measurement campaign to study the performance of the 6TiSCH (IPv6 over the TSCH mode of IEEE 802.15.4e) network while supporting multiple physical layers (PHYs). For measurement purposes, all experiments were performed on OpenMote-B hardware. These devices are equipped with an Atmel AT86RF215 dual radio transceiver implementing IEEE 802.15.4g. The performance evaluation is provided for the following metrics: network formation time, Packet Delivery Ratio (PDR), latency, and duty cycle. Results are encouraging, particularly in terms of high PDR for all tested PHYs. Performance evaluation indicates the importance of proper node positioning, link quality estimation and careful selection of network parameters. Moreover, collected experimental results create a dataset that provides insights into the tested PHYs' performance and their potential for indoor 6TiSCH networking.
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