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A double-differenced cycle slip detection and repair method for GNSS CORS network

机译:GNSS CORS网络的双差周期滑动检测与修复方法

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摘要

The difficulty to detect and repair cycle slip of carrier phase measurements is a key limit for continuously high accuracy of GNSS positioning and navigation services. We propose an automated cycle slip detection and repair method for data preprocessing of a CORS network. The method jointly uses double-differenced (DD) geometry-free (GF) combination and ionospheric-free observation corrected for the computed geometrical distance (IF-OMC) to estimate the cycle slips in dual-frequency observations. The DD GF combination, which is only affected by the ionospheric residual, can be used to detect cycle slips with high reliability except for special pairs such as (77, 60) on GPS L1/L2 frequencies. The detection principle of the IF-OMC observable is such that there is a large discontinuity related to the previous epoch when cycle slips occur at the present epoch. The disadvantages of these two combinations can be overcome employing the proposed detection method. The cycle slip pair (77, 60) has no effect on the GF combination, while a change of 14.65 m is derived from GPS L1/L2 observations using the IF-OMC algorithm. Using pre-determined station coordinates as precise values, we found that the accuracy of the DDIF-OMC combination was 18 mm for a 200-km CORS baseline. Therefore, cycle slips in dual-frequency observations can be correctly and uniquely determined using DD GF and IF-OMC equations. The proposed method was verified by adding simulated cycle slips in observations collected from the CORS network under a quiet ionosphere and shown to be effective. Moreover, the method was assessed with observations made during intense ionospheric activity, which generated extensive cycle slips. The results show that the algorithm can detect and repair all cycle slips apart from two exceptions relating to long data gaps.
机译:难以检测和修复载波相位测量的周跳是实现GNSS定位和导航服务连续高精度的关键限制。我们提出了一种自动循环滑动检测和修复方法,用于CORS网络的数据预处理。该方法联合使用双差(DD)无几何(GF)组合和针对计算的几何距离(IF-OMC)校正的无电离层观测来估计双频观测中的周跳。 DD GF组合仅受电离层残差的影响,可用于检测循环滑移,具有高可靠性,除了特殊对,例如GPS L1 / L2频率上的(77,60)。可观察到的IF-OMC的检测原理是,当在当前时期发生周跳时,与先前的时期有关的不连续性很大。可以采用建议的检测方法来克服这两种组合的缺点。循环滑移对(77、60)对GF组合没有影响,而使用IF-OMC算法从GPS L1 / L2观测值得出的变化为14.65 m。使用预定的站点坐标作为精确值,我们发现DDIF-OMC组合对于200 km CORS基准线的精度为18 mm。因此,使用DD GF和IF-OMC方程可以正确唯一地确定双频观测中的周跳。通过在安静电离层下从CORS网络收集的观测结果中添加模拟周期滑动来验证该方法的有效性。此外,该方法是根据在强烈电离层活动期间观察到的结果进行评估的,该活动产生了大量的循环滑移。结果表明,该算法可以检测和修复所有周期滑移,而与涉及长数据间隙的两个例外无关。

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