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GNSS Reflectometry from Smartphones: Testing Performance of In-Built Antennas and GNSS Chips

机译:来自智能手机的GNSS反射仪:测试内置天线和GNSS芯片的测试性能

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Raw Global Navigation Satellites Systems (GNSS) data have been directly accessible from mass-market devices running the Android Nougat (or newer) operating system since late 2016. The availability of GNSS raw data made possible to investigate feasibility of using in-built GNSS chipsets within smartphone devices as passive radar receivers for the purpose of land remote sensing. In this study, we integrate smart-phones into small Unmanned Aircraft Systems (UAS) to collect reflected GNSS raw data for the purpose of mapping top 5-cm soil moisture. The reflected GNSS signals collected by the smartphones show high correlation with spatial features on the ground such as ponds, crops, and small creeks. To determine the quality of smartphone in-built antenna and chipset, we conducted several experiments. The results show that (1) the radiation pattern of smartphone's GNSS antenna are observed to be highly irregular, but time-invariant, and (2) internal GNSS chip produces observables of sufficient quality when the GNSS smartphone reflected signals are compared with a high quality custom-built dual channel receiver. This paper summarizes the experimental findings and challenges that need to be resolved in order to use the GNSS-Reflectometry (GNSS-R) technique via ubiquitous smartphones from small UASs.
机译:原始的全球导航卫星系统(GNSS)数据已直接从2016年底以来运行的Android Nougat(或更新)操作系统的大众市场设备。GNSS原始数据的可用性可以调查使用内置的GNSS芯片组的可行性在智能手机设备中作为被动雷达接收器,用于陆地遥感。在这项研究中,我们将智能手机整合到小型无人机系统(UAS)中,以收集反射的GNSS原始数据,以绘制前5厘米的土壤水分。由智能手机收集的反射GNSS信号显示出与地面上的空间特征的高相关性,例如池塘,庄稼和小溪。要确定智能手机内置天线和芯片组的质量,我们进行了几个实验。结果表明,(1)智能手机的GNSS天线的辐射模式被观察到高度不规则,但是时不变,并且(2)内部GNSS芯片在GNSS智能手机反射信号与高质量进行比较时产生足够的质量的可观察到定制的双通道接收器。本文总结了需要解决的实验结果和挑战,以便通过来自小型乌斯的无处不在的智能手机使用GNSS反射测量仪(GNSS-R)技术。

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