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Integration of Smartphones Into Small Unmanned Aircraft Systems to Sense Water in Soil by Using Reflected GPS Signals

机译:通过使用反射的GPS信号将智能手机集成到小型无人机系统中,以检测土壤中的水分

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We investigate the feasibility of using built-in GNSS sensors within ubiquitous smartphone devices from a small UAS for the purpose of land remote sensing. We summarize the experimental findings and challenges that need to be resolved in order to perform the GNSS reflectometry (GNSS-R) technique via smartphones. In late 2018, a series of experiments were conducted and designed by integrating two smartphones into a multicopter UAS by attaching them to ground plates to isolate and record both direct and reflected GNSS carrier-to-noise density ratio ( $C/N_0$ ) separately. It was demonstrated that, first, fluctuations of moving GNSS specular reflections are correlated with spatial ground features with appreciable dynamic range and second, radiation pattern of the smartphone's inbuilt antenna has a significant effect on the received signal strength. In 2020, more experiments were conducted to examine the quality of in-built chip and antenna of a smartphone with regard to the GNSS-R approach as well as the consistency of measurements. These follow-up experiments involved, first, placement of the smartphone on a pan-tilt mechanism on a tripod, second, formation flights with smartphone on a gimbal and a high-quality custom-built dual-channel GNSS-R receiver, and, third, flying the UAS at different times of the day on two consecutive days. It was demonstrated that, first, the radiation pattern of the smartphone's GNSS antenna are observed to be highly irregular, but time-invariant, and, second, internal GNSS chip produces observables of sufficient quality, and, third, the fluctuations of the reflected signal are repeatable under the same configuration at different times.
机译:我们调查使用内置智能手机设备中的内置GNSS传感器的可行性,从小UAS为陆地遥感的目的。我们总结了需要解决的实验结果和挑战,以便通过智能手机执行GNSS反射测量法(GNSS-R)技术。 2018年底,通过将两个智能手机将两个智能手机将其与接地板将其与接地板集成到多板UAS以隔离并记录直接和反射的GNSS载波密度比(<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ c / n_0 $ )单独。据证明,首先,移动GNSS镜面反射的波动与空间接地特征相关,具有明显的动态范围和第二,智能手机内置天线的辐射图案对接收的信号强度具有显着影响。在2020年,进行了更多的实验,以检查关于GNSS-R方法的内置芯片和天线的质量以及测量的一致性。参与这些后续实验,首先,将智能手机放在三脚架上的泛倾斜机制上,第二个,在Gimbal上与智能手机的形成航班以及高质量的定制双通道GNSS-R接收器,以及第三,连续两天在当天的不同时间飞行UA。据证明,首先,观察到智能手机的GNSS天线的辐射图案是高度不规则的,而是时间不变,并且第二内部GNSS芯片产生足够的质量的可观察,并且第三,反射信号的波动产生了足够的可观察者在不同时间的配置下可重复。

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