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首页> 外文期刊>The Journal of Navigation >A New Cycle Slip Detection and Repair Method for Single-Frequency GNSS Data
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A New Cycle Slip Detection and Repair Method for Single-Frequency GNSS Data

机译:一种单频GNSS数据的周跳检测与修复新方法

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摘要

Cycle slip detection for single frequency Global Navigation Satellite System (GNSS) data is currently mainly based on measurement modelling or prediction, which cannot be effectively performed for kinematic applications and it is difficult to detect or repair small cycle slips such as half-cycle slips. In this paper, a new method that is based on the total differential of ambiguity and Least-Squares Adjustment (LSA) for cycle slip detection and repair is introduced and validated. This method utilises only carrier-phase observations to build an ambiguity function. LSA is then conducted for detecting and repairing cycle slips, where the coordinate and cycle slips are obtained successively. The performance of this method is assessed through processing short and long baselines in static and kinematic modes and the impact of linearization and atmospheric errors are analysed at the same time under a controlled variable method. The results indicate this method is very effective and reliable in detecting and repairing multiple cycle slips, especially small cycle slips.
机译:当前,单频全球导航卫星系统(GNSS)数据的周跳检测主要基于测量模型或预测,这在运动学应用中无法有效执行,并且难以检测或修复小周跳(如半周跳)。本文提出并验证了一种基于模糊度和最小二乘平差(LSA)的总差分的周期滑移检测和修复的新方法。该方法仅利用载波相位观测值来建立歧义函数。然后,执行LSA来检测和修复循环滑移,并依次获取坐标和循环滑移。通过在静态和运动学模式下处理短基线和长基线来评估此方法的性能,并在可控变量方法下同时分析线性化和大气误差的影响。结果表明,该方法在检测和修复多个循环滑移,特别是小循环滑移方面非常有效和可靠。

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