National School of Surveying, University of Otago, 310 Castle Street, Dunedin 9016, New Zealand.
Faculty of Built Environment and Surveying, Universiti Teknologi Malaysia, Johor Bahru 81310, Malaysia.
Sensors (Basel). 2021 Dec 13;21(24):8318. doi: 10.3390/s21248318.
The recent development of the smartphone Global Navigation Satellite System (GNSS) chipsets, such as Broadcom BCM47755 and Qualcomm Snapdragon 855 embedded, makes instantaneous and cm level real-time kinematic (RTK) positioning possible with Android-based smartphones. In this contribution we investigate the instantaneous single-baseline RTK performance of Samsung Galaxy S20 and Google Pixel 4 (GP4) smartphones with such chipsets, while making use of dual-frequency L1 + L5 Global Positioning System (GPS), E1 + E5a Galileo, L1 + L5 Quasi-Zenith Satellite System (QZSS) and B1 BeiDou Navigation Satellite System (BDS) code and phase observations in Dunedin, New Zealand. The effects of locating the smartphones in an upright and lying down position were evaluated, and we show that the choice of smartphone configuration can affect the positioning performance even in a zero-baseline setup. In particular, we found non-zero mean and linear trends in the double-differenced carrier-phase residuals for one of the smartphone models when lying down, which become absent when in an upright position. This implies that the two assessed smartphones have different antenna gain pattern and antenna sensitivity to interferences. Finally, we demonstrate, for the first time, a near hundred percent (98.7% to 99.9%) instantaneous RTK integer least-squares success rate for one of the smartphone models and cm level positioning precision while using short-baseline experiments with internal and external antennas, respectively.
智能手机全球导航卫星系统(GNSS)芯片组的最新发展,如博通 BCM47755 和高通骁龙 855 嵌入式系统,使得基于 Android 的智能手机能够实现即时和厘米级实时动态(RTK)定位。在本研究中,我们利用双频 L1 + L5 全球定位系统(GPS)、E1 + E5a 伽利略、L1 + L5 准天顶卫星系统(QZSS)和 B1 北斗导航卫星系统(BDS)码和相位观测,研究了具有此类芯片组的三星 Galaxy S20 和谷歌 Pixel 4(GP4)智能手机的即时单基线 RTK 性能,观测地点位于新西兰达尼丁。评估了智能手机处于垂直和水平两种位置时的定位性能,结果表明,即使在零基线设置中,智能手机的配置选择也会影响定位性能。特别是,我们发现当智能手机处于水平位置时,其中一个模型的双差载波相位残差存在非零均值和线性趋势,而当处于垂直位置时,这种趋势则消失了。这意味着这两款评估的智能手机具有不同的天线增益模式和对干扰的天线灵敏度。最后,我们首次演示了其中一个智能手机模型在短基线实验中,无论是使用内部天线还是外部天线,都能实现接近百分之百(98.7%至 99.9%)的即时 RTK 整数最小二乘成功率和厘米级的定位精度。