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用软件定义无线电技术刻画多普勒效应对以人体为中心的 LoRa 链路的影响。

Characterizing the Impact of Doppler Effects on Body-Centric LoRa Links with SDR.

机构信息

IDLab, Department of Information Technology (INTEC), Ghent University-imec, Technologiepark-Zwijnaarde 126, B-9052 Ghent, Belgium.

Department of Telecommunications and Information Processing (TELIN), Ghent University, Sint-Pietersnieuwstraat 41, B-9000 Ghent, Belgium.

出版信息

Sensors (Basel). 2021 Jun 12;21(12):4049. doi: 10.3390/s21124049.

Abstract

Long-range, low-power wireless technologies such as LoRa have been shown to exhibit excellent performance when applied in body-centric wireless applications. However, the robustness of LoRa technology to Doppler spread has recently been called into question by a number of researchers. This paper evaluates the impact of static and dynamic Doppler shifts on a simulated LoRa symbol detector and two types of simulated LoRa receivers. The results are interpreted specifically for body-centric applications and confirm that, in most application environments, pure Doppler effects are unlikely to severely disrupt wireless communication, confirming previous research, which stated that the link deteriorations observed in a number of practical LoRa measurement campaigns would mainly be caused by multipath fading effects. Yet, dynamic Doppler shifts, which occur as a result of the relative acceleration between communicating nodes, are also shown to contribute to link degradation. This is especially so for higher LoRa spreading factors and larger packet sizes.

摘要

长距离、低功耗的无线技术,如 LoRa,在应用于以人体为中心的无线应用时,已经被证明具有出色的性能。然而,最近一些研究人员对 LoRa 技术对多普勒频移的鲁棒性提出了质疑。本文评估了静态和动态多普勒频移对模拟 LoRa 符号检测器和两种类型的模拟 LoRa 接收器的影响。结果特别针对以人体为中心的应用进行了解释,并证实,在大多数应用环境中,纯多普勒效应不太可能严重干扰无线通信,这证实了之前的研究,该研究指出,在许多实际的 LoRa 测量活动中观察到的链路恶化主要是由多径衰落效应引起的。然而,由于通信节点之间的相对加速度而产生的动态多普勒频移也被证明会导致链路降级。对于较高的 LoRa 扩频因子和较大的数据包大小尤其如此。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88d0/8231252/82b23b78897e/sensors-21-04049-g001.jpg

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