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Characterization of LoRa Point-to-Point Path Loss: Measurement Campaigns and Modeling Considering Censored Data

机译:LORA点对点路径损耗的特征:考虑审查数据的测量运动和建模

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摘要

Low-power wide-area technologies have demonstrated their usefulness in a wide variety of Internet of Things applications. New applications are emerging, requiring a mesh or point-to-point (P2P) topology, in contrast to the conventional star-of-stars topology. In this article, we evaluate the coverage and model the path loss (PL) of these links, based on experimental campaigns in three environments: 1) urban; 2) forest; and 3) coastal. More obstructions, scattering, and diffraction are encountered because the terminals are typically at a low height. This results in a higher PL compared to the star-of-stars topology. Consequently, more packets drop below the receiver sensitivity. Realistic PL parameters are estimated by also taking the censored data into account. The packet error ratio is determined based on the estimated PL parameters to evaluate the performance of P2P links. Even in these adverse environments, 80% of the transmitted packets are successfully received at a distance of approximately 200 m. Moreover, a range of over 4 km is observed in the line-of-sight scenario. Despite the unfavorable radio propagation in the urban scenario and the densely forested terrain, a maximum range of 1 km is achieved.
机译:低功耗广域技术在各种各样的东西互联网上展示了它们的实用性。与传统的恒星拓扑相比,新应用正在出现,需要网格或点对点(P2P)拓扑。在本文中,我们根据三个环境中的实验活动评估这些链接的路径损耗(PL)的覆盖范围和模型:1)城市; 2)森林;和3)沿海。遇到更多障碍物,散射和衍射,因为端子通常处于低高度。与恒星颗星拓扑相比,这导致更高的PL。因此,更多的数据包低于接收器灵敏度。估计现实的PL参数也通过考虑被审查的数据来估算。基于估计的PL参数来确定数据包误差比以评估P2P链路的性能。即使在这些不利的环境中,80%的传输分组也在大约200米的距离处成功接收。此外,在视线方案中观察到超过4km的范围。尽管城市场景中不利的无线电传播,但茂密森林地形,但最大范围为1公里。

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