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Positioning Precision Analysis of GNSS Multi-frequency Carrier Phase Combinations

机译:GNSS多频载波相位组合的定位精度分析

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GPS positioning precision is affected by various error sources, and traditional combinations of GPS carrier phase observations have their own limitations such as the wide-lane, the narrow-lane and the ionospheric-free combinations. To obtain the optimal positioning precision, a new linear combination method is addressed through the variance-covariance (VCV) of the GPS multi-frequency carrier phase combination equations, and the impact of the positioning precision is analyzed with the changing of the observation errors deduced by the law of error propagation. For the high precision positioning with only one carrier phase combination, the optimal combination method is deduced and further validated by an example of a baseline resolution with 60 km length. The result indicates that this method is the simplest, and the positioning precision is the best. Therefore, it is useful for long baseline quick positioning for different precision requirements in various distances.
机译:GPS定位精度受各种误差源的影响,传统的GPS载波相位观测组合有其自身的局限性,例如宽车道,窄车道和无电离层的组合。为了获得最佳的定位精度,通过GPS多频载波相位组合方程的方差-协方差(VCV)解决了一种新的线性组合方法,并随着推导观测误差的变化分析了定位精度的影响。通过错误传播定律。对于只有一个载波相位组合的高精度定位,推导了最佳组合方法,并以一个60 km长的基线分辨率为例进一步进行了验证。结果表明,该方法最简单,定位精度最高。因此,对于在各种距离下满足不同精度要求的长基线快速定位很有用。

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