Di Renzone Gabriele, Parrino Stefano, Peruzzi Giacomo, Pozzebon Alessandro, Vangelista Lorenzo
Department of Information Engineering, University of Pisa, 56122 Pisa, Italy.
Department of Information Engineering and Mathematics, University of Siena, 53100 Siena, Italy.
Sensors (Basel). 2024 Mar 11;24(6):1801. doi: 10.3390/s24061801.
Vehicular wireless networks are one of the most valuable tools for monitoring platforms in the automotive domain. At the same time, Internet of Things (IoT) solutions are playing a crucial role in the same framework, allowing users to connect to vehicles in order to gather data related to their working cycle. Such tasks can be accomplished by resorting to either cellular or non-cellular wireless technologies. While the former can ensure low latency but require high running costs, the latter can be employed in quasi-real-time applications but definitely reduce costs. To this end, this paper proposes the results of two measurement campaigns aimed at assessing the performance of the long-range wide-area network (LoRaWAN) protocol when it is exploited as an enabling technology to provide vehicles with connectivity. Performances are evaluated in terms of packet loss (PL) and received signal strength indicator (RSSI) in wireless links. The two testing scenarios consisted of a transmitter installed on a motorbike running on an elliptical track and a receiver placed in the centre of the track, and a transmitter installed on the roof of a car and a receiver placed next to a straight road. Several speeds were tested, and all the spreading factors (SFs) foreseen by the protocol were examined, showing that the Doppler effect has a marginal influence on the receiving performance of the technology, and that, on the whole, performance is not significantly affected by the speed. Such results prove the feasibility of LoRaWAN links for vehicular network purposes.
车载无线网络是汽车领域中用于监测平台的最有价值的工具之一。与此同时,物联网(IoT)解决方案在同一框架中发挥着关键作用,允许用户连接到车辆,以便收集与其工作周期相关的数据。此类任务可以通过采用蜂窝或非蜂窝无线技术来完成。前者可以确保低延迟,但运行成本高,而后者可用于准实时应用,但肯定能降低成本。为此,本文提出了两项测量活动的结果,旨在评估将长距离广域网(LoRaWAN)协议用作使车辆具备连接能力的 enabling 技术时的性能。在无线链路中,根据丢包率(PL)和接收信号强度指示符(RSSI)对性能进行评估。这两个测试场景包括:一个发射器安装在在椭圆形轨道上行驶的摩托车上,一个接收器放置在轨道中心;以及一个发射器安装在汽车车顶上,一个接收器放置在一条直道旁边。测试了几种速度,并检查了该协议预见的所有扩频因子(SF),结果表明多普勒效应对该技术的接收性能影响很小,并且总体而言,性能不会受到速度的显著影响。这些结果证明了 LoRaWAN 链路用于车载网络目的的可行性。