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首页> 外文期刊>Journal of surveying engineering >Efficient Approximation for a Fully Populated Variance-Covariance Matrix in RTK Positioning
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Efficient Approximation for a Fully Populated Variance-Covariance Matrix in RTK Positioning

机译:RTK定位中完全填充的方差-协方差矩阵的有效逼近

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摘要

Global navigation satellite system (GNSS) observations have been shown to be physically correlated. Disregarding the physical correlations in a variance-covariance matrix (VCM) will lead to adverse impacts on GNSS applications. Typically, physical correlations have three types in a fully populated VCM: spatial, cross, and temporal correlations. However, such a fully populated VCM cannot be easily estimated and inverted, especially in real-time kinematic (RTK) positioning. The authors propose an efficient approximation approach for processing these physical correlations. This method appropriately considers the significant covariance elements and efficiently transforms the time-dependent VCM to a time-independent block diagonal matrix. As an example, 10 data sets of BeiDou code and phase observations with different baseline lengths and receivers were collected. The results showed that this proposed method had fewer covariance elements to be estimated, thus decreasing the number of unknowns when using (co)variance component estimation (VCE). In addition, the proposed method had lower computation burden than the multiple-epoch method. For instance, the computation efficiency was increased by more than 50% in the case of the 60-epoch data window. It can also provide more realistic baseline solutions and precisions compared with the traditional single-epoch method.
机译:全球导航卫星系统(GNSS)的观测结果已显示出物理相关性。忽略方差-协方差矩阵(VCM)中的物理相关性将导致对GNSS应用的不利影响。通常,在完全填充的VCM中,物理相关具有三种类型:空间,交叉和时间相关。但是,这样一个完全填充的VCM不能容易地估计和求逆,尤其是在实时运动(RTK)定位中。作者提出了一种有效的近似方法来处理这些物理相关性。该方法适当地考虑了重要的协方差元素,并有效地将时间相关的VCM转换为时间无关的块对角矩阵。例如,收集了10个北斗代码和具有不同基线长度和接收器的相位观测数据集。结果表明,该方法估计的协方差元素较少,因此减少了使用(协)方差分量估计(VCE)时未知数的数量。另外,该方法的计算负担比多历元方法低。例如,在60历元数据窗口的情况下,计算效率提高了50%以上。与传统的单周期方法相比,它还可以提供更现实的基线解决方案和精度。

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