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Time-differenced carrier phases technique for precise GNSS velocity estimation

机译:时差载波相位技术用于精确GNSS速度估计

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Classically, a stand-alone GNSS receiver estimates its velocity by forming the approximate derivative of consecutive user positions or more often by using the Doppler observable. The first method is very inaccurate, while the second one allows estimation of the order of some cm/s. The time-differenced carrier phase (TDCP) technique, which consists in differencing successive carrier phases, enables accuracies at the mm/s level. A study on the existing TDCP velocity estimation algorithms has revealed that the use of different broadcast ephemeris sets to calculate the satellite positions and clock offsets produces a discontinuity in the TDCP measurements that affects the velocity estimation. We propose a method to overcome this limitation based on the use of the same set of ephemeris to calculate the satellite positions and clock offsets at consecutive epochs. We describe in detail the TDCP algorithm used, and the complete implementation in MATLAB is included.
机译:传统上,独立的GNSS接收机通过形成连续用户位置的近似导数或更经常地通过使用多普勒观测器来估计其速度。第一种方法非常不准确,而第二种方法则允许估计一些cm / s的量级。时差载波相位(TDCP)技术由不同的连续载波相位组成,可实现mm / s级的精度。对现有TDCP速度估计算法的研究表明,使用不同的广播星历集来计算卫星位置和时钟偏移会在TDCP测量中产生不连续性,从而影响速度估计。我们提出了一种方法,该方法基于使用同一组星历来计算连续历元的卫星位置和时钟偏移,从而克服了这一限制。我们将详细描述所使用的TDCP算法,并包括在MATLAB中的完整实现。

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