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RTK and PPP-RTK Using Smartphones: From Short-Baseline to Long-Baseline Applications

机译:使用智能手机的RTK和PP​​P-RK:从短基线到长基线应用

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Low cost receivers providing GNSS code and phase raw measurements for multiple frequencies and multiple GNSS constellations have recently become available on the market. This significantly increases the number of devices equipped with the necessary sensors to perform precise GNSS positioning like Network-RTK or PPP. The smartphone GNSS measurements often suffer from low signal-to-noise, inhomogeneous antenna gain and high levels of multipath. Here, we show how to tackle several of currently present obstacles and demonstrate centimeter-level kinematic positioning with a low-cost GNSS antenna and a low-cost GNSS receiver built into an off-the-shelf smartphone. For some devices we found that the phase observations do not have integer characteristic but appear to have random biases. To some extend these observations can still be used in a "float"- type precise algorithm. Low cost GNSS sensors like the ones built into smartphones are generally used with antennas that have a uniform gain pattern and do not reject LHCP signals. Accordingly, strong multipath influence is observed in many applications. Experiments both in a zero-baseline and a short-baseline configuration have been performed, to evaluate the aforementioned biases and discontinuities. We demonstrate instantaneous ambiguity resolution in the zero-baseline setup, showing the potential for RTK-positioning with low-cost sensors available inside smartphones. Positioning with PPP-RTK or Network-RTK is more challenging because additional residual atmospheric noise is present. Experiments with different baseline lengths have been performed in different ionospheric conditions and the achieved accuracies are reported.
机译:在市场上最近可用,为多个频率和多个GNSS星座提供GNSS代码和相位原始测量的低成本接收器最近可用。这显着增加了配备有必要传感器的设备数量,以执行像网络-TK或PPP的精确GNSS定位。智能手机GNSS测量通常遭受低信噪比,不均匀的天线增益和高水平的多径。在这里,我们展示了如何应对当前目前的障碍物,并展示具有低成本GNSS天线的厘米级运动定位和内置于货架上的智能手机中的低成本GNSS接收器。对于某些设备,我们发现相位观察没有整数特性,但似乎具有随机偏差。对于一些延伸,这些观察仍可以“浮点” - 型精确算法使用。低成本GNSS传感器,如智能手机中内置的GNSS传感器通常与具有均匀增益模式的天线一起使用并且不拒绝LHCP信号。因此,在许多应用中观察到强烈的多径影响。已经进行了零基线和短基线配置的实验,以评估上述偏差和不连续性。我们展示了零基线设置中的瞬时模糊分辨率,显示了在智能手机内可用的低成本传感器的RTK定位的可能性。使用PPP-RTK或NetWork-RTK定位更具挑战性,因为存在额外的残余大气噪声。在不同的电离层条件下进行了不同基线长度的实验,并报告了达到的精度。

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