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A method to correct the raw Doppler observations for GNSS velocity determination

机译:一种校正GNSS速度测定原料多普勒观测的方法

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In the application of GNSS in the velocity determination, it is often the case that some GNSS receivers give an opposite sign for the raw Doppler observations which do not correspond to the real Doppler shift. This is caused by different methods of the GNSS signal processing in different GNSS receivers. If the velocities of kinematic platforms are calculated by using raw Doppler observations from the GNSS receiver directly, the directions of the estimated velocities may be reversed, and the value of the velocity is wrong with respect to the actual movement. This would lead to incorrect results, and unacceptable for research and applications. To overcome this problem, a new method of sign correction for raw Doppler observations is proposed in this study. This algorithm constructs a correction function based on the GNSS carrier-phase-derived Doppler observations. To test this approach, GNSS data of GEOHALO airborne gravimetric missions have been used. The results show that the proposed method, which is straightforward and practical, can produce the correct velocity for a kinematic platform in any case, independent of the internal hardware structure and the specific way of the signal processing of the GNSS receivers in question.
机译:在速度确定中的GNSS应用中,通常是一些GNSS接收器的情况对于未对应于真正的多普勒偏移的原始多普勒观测,这是一种相反的符号。这是由不同GNSS接收器中的GNSS信号处理的不同方法引起的。如果通过使用从GNSS接收器的原始多普勒观察来计算运动平台的速度,则估计速度的方向可以颠倒,并且速度相对于实际运动是错误的。这将导致结果不正确,对研究和应用不可接受。为了克服这个问题,在本研究中提出了一种对原始多普勒观测的符号校正方法。该算法基于GNSS载波相位衍生的多普勒观测构建校正功能。为了测试这种方法,已经使用了Geohalo Airborge重量任务的GNSS数据。结果表明,该方法直截了当,实用,可以在任何情况下为运动平台产生正确的速度,与内部硬件结构和所讨论的GNSS接收器的信号处理的特定方式不同。

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    《GPS/GNSS Symposium》|2020年|276-277|共2页
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    Kaifei He;

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