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A Novel Triple-Frequency Cycle Slip Detection and Correction Method for BDS

机译:一种新型三频循环滑动检测和BDS的校正方法

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A novel triple-frequency cycle slip detection and correction method for BDS is proposed to detect and correct cycle slips when the ionosphere is active. Firstly, two sets of phase combinations whose sum equals zero are selected, and the corresponding pseudorange coefficients are obtained by the optimization algorithm, which effectively reduces the ionospheric amplification factor. Then, a set of phase combinations whose sum not equal to zero is adopted to reduce the condition number of coefficient matrices, meanwhile, the ionospheric delay variation between the epochs of this combination data is estimated and corrected. Thus, three linear independence sets of geometry-free and ionosphere-free pseudorange-phase combinations are constructed. Finally, the covariance matrix of the combined observations is obtained by employing observation error and ionospheric correct error, accordingly, the search space and objective function of cycle correction are constructed, which improves the correction accuracy. Based on BDS triple-frequency observations, the experiment results show that the proposed method possesses a good cycle slip detection and correction performance under active ionospheric situation.
机译:提出了一种新的三频循环滑动检测和BDS的校正方法,以检测电离层有效时的循环滑动。首先,选择总等值零的两组相组合,并且通过优化算法获得相应的伪距系数,从而有效地降低了电离层放大因子。然后,采用一组相位组合,其总和不等于零,以减少系数矩阵的条件数量,同时,估计和校正该组合数据的时期之间的电离层延迟变化。因此,构建了三种无间隙和无极层的伪距离相组合的三种线性独立组。最后,通过采用观察误差和电离层的正确误差来获得组合观察的协方差矩阵,因此,构造循环校正的搜索空间和客观函数,这提高了校正精度。基于BDS三频观察,实验结果表明,该方法在主动电离层情况下具有良好的循环滑动检测和校正性能。

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