Gutiérrez-Gómez Amado, Rangel Víctor, Edwards Robert M, Davis John G, Aquino Raúl, López-De la Cruz Jesús, Mendoza-Cano Oliver, Lopez-Guerrero Miguel, Geng Yu
School of Engineering, National Autonomous University of Mexico (UNAM), Building Q-Valdes Vallejo, Ciudad Universitaria, Delegación de Coyoacán, CDMX, Mexico City 04510, Mexico.
5G Research Centre, Loughborough University, Loughborough LE11 3TU, UK.
Sensors (Basel). 2021 Oct 16;21(20):6872. doi: 10.3390/s21206872.
Internet of Things (IoT) radio networks are becoming popular in several scenarios for short-range applications (e.g., wearables and home security) and medium-range applications (e.g., shipping container tracking and autonomous farming). They have also been proposed for water monitoring in flood warning systems. IoT communications may use long range (LoRa) radios working in the 915 MHz industrial, scientific and medical (ISM) band. In this research, we study the propagation characteristics of LoRa chirp radio signals close to and over water in a tropical meadow region. We use as a case study the Colima River in Mexico. We develop a novel point-to-point IoT measurement sounding system that does not require decoding of LoRa propriety bursts and provides accurate power versus distance profiles along the riparian zone of a steeply dropping mountain river. We used this system to obtain the measurements reported in this work, which are also analyzed and modeled. The results show that the LoRa signal propagation over water exhibits a log-normal distribution. As a result of the chirp signal processing, two new experimental path loss models are presented. The path loss results show a considerable degradation of the received signal power over water within vegetation and less signal degradation at antenna heights closer to the water surface.
物联网(IoT)无线网络在多种短距离应用场景(如可穿戴设备和家庭安全)和中距离应用场景(如集装箱跟踪和自主农业)中越来越受欢迎。它们也被提议用于洪水预警系统中的水情监测。物联网通信可能会使用工作在915兆赫兹工业、科学和医疗(ISM)频段的长距离(LoRa)无线电。在本研究中,我们研究了热带草甸地区靠近水面和水面上方的LoRa线性调频无线电信号的传播特性。我们以墨西哥的科利马河为例进行研究。我们开发了一种新颖的点对点物联网测量探测系统,该系统不需要对LoRa专有突发信号进行解码,并能沿着陡峭落差山区河流的河岸区域提供准确的功率与距离分布图。我们使用该系统获得了本研究报告中的测量数据,并对这些数据进行了分析和建模。结果表明,LoRa信号在水面上的传播呈现对数正态分布。由于线性调频信号处理的结果,提出了两种新的实验路径损耗模型。路径损耗结果表明,在植被覆盖区域内水面上接收信号功率有相当大的衰减,而在靠近水面的天线高度处信号衰减较小。