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Chapter 13 Research on Receiver Clock Jump Detection and Processing in Precise Point Positioning

机译:第13章精确点定位中接收机时钟跳变检测与处理的研究

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The Melbourne-Wubbena (MW) and Geometry-Free (GF) combinations of observations are generally used to detect cycle slips in Precise Point Positioning (PPP). This article describes the GNSS receiver clock jump phenomenon, and analyzes its impact on MW and GF combined observations from the observation model. The experiment confirms that receiver clock jump will not affect GF combination observations, but will lead to a misjudgment of MW cycle slip detection; and changes are same for all satellites. This essay proposes a new method that uses satellite differenced MW together with the undifferenced MW and GF combinations to detect the clock jump in PPP; in the processing, clock jump is estimated with the coordinate parameters together. The experimental results show that this method can detect and estimate receiver clock jump, avoid unnecessary re-initialization and help to improve the positioning accuracy, effectively.
机译:Melbourne-Wubbena(MW)和Free-Free Geometry(GF)观测值的组合通常用于检测精确点定位(PPP)中的周跳。本文介绍了GNSS接收器时钟跳变现象,并从观测模型分析了其对MW和GF组合观测的影响。实验证实,接收器时钟跳变不会影响GF组合观测,但会导致对MW循环转差检测的误判;所有卫星的变化都相同。本文提出了一种新的方法,该方法使用卫星差分兆瓦与毫不差的兆瓦和GF组合来检测PPP中的时钟跳变。在处理中,时钟跳变与坐标参数一起被估计。实验结果表明,该方法可以检测和估计接收机的时钟跳变,避免不必要的重新初始化,有效地提高了定位精度。

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