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Characterisation of GNSS Carrier Phase Data on a Moving Zero-Baseline in Urban and Aerial Navigation

机译:城市和航天导航中移动零基线GNSS载波相位数据的表征

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摘要

We present analyses of Global Navigation Satellite System (GNSS) carrier phase observations in multiple kinematic scenarios for different receiver types. Multi-GNSS observations are recorded on high sensitivity and geodetic-grade receivers operating on a moving zero-baseline by conducting terrestrial urban and aerial flight experiments. The captured data is post-processed; carrier phase residuals are computed using the double difference (DD) concept. The estimated noise levels of carrier phases are analysed with respect to different parameters. We find DD noise levels for L1 carrier phase observations in the range of 1.4–2 mm (GPS, Global Positioning System), 2.8–4.6 mm (GLONASS, Global Navigation Satellite System), and 1.5–1.7 mm (Galileo) for geodetic receiver pairs. The noise level for high sensitivity receivers is at least higher by a factor of 2. For satellites elevating above , the dominant noise process is white phase noise. For the flight experiment, the elevation dependency of the noise is well described by the exponential model, while for the terrestrial urban experiment, multipath and diffraction effects overlay; hence no elevation dependency is found. For both experiments, a carrier-to-noise density ratio (C/N ) dependency for carrier phase DDs of GPS and Galileo is clearly visible with geodetic-grade receivers. In addition, C/N dependency is also visible for carrier phase DDs of GLONASS with geodetic-grade receivers for the terrestrial urban experiment.
机译:我们在不同接收器类型的多个运动场景中展示了全局导航卫星系统(GNSS)载波相位观察的分析。通过进行陆地城市和航拍实验,记录在高灵敏度和大地测量级接收器上的高灵敏度和大地测量级接收器。捕获的数据是后处理的;使用双差(DD)概念计算载体相残差。关于不同参数分析载波相的估计噪声水平。我们发现L1载波相位观测的DD噪声水平在1.4-2 mm(GPS,全球定位系统),2.8-4.6mm(Glonass,全球导航卫星系统)和1.5-1.7 mm(Galileo)的大地测量接收器的范围内对。高灵敏度接收器的噪声水平至少更高,对于上述卫星升高,对于上述卫星来说,主噪声过程是白相噪声。对于飞行实验,噪声的高度依赖性由指数模型很好地描述,而陆地城市实验,多路径和衍射效应覆盖;因此,没有找到高度依赖性。对于两种实验,通过大地测级接收器清楚地看到了GPS和伽利略的载波相位DDS的载波噪声密度比(C / N)依赖性。此外,对于陆地城市实验的Glonass的载体相位DDS也可见C / N依赖性。

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