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Triple-Frequency GPS Precise Point Positioning Ambiguity Resolution Using Dual-Frequency Based IGS Precise Clock Products

机译:使用基于双频的IGS精密时钟产品的三频GPS精确点定位模糊度解决方案

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摘要

With the availability of the third civil signal in the Global Positioning System, triple-frequency Precise Point Positioning ambiguity resolution methods have drawn increasing attention due to significantly reduced convergence time. However, the corresponding triple-frequency based precise clock products are notwidely available and adopted by applications. Currently, most precise products are generated based on ionosphere-free combination of dual-frequency L1/L2 signals, which however are not consistent with the triple-frequency ionosphere-free carrier-phase measurements, resulting in inaccurate positioning and unstable float ambiguities. In this study, a GPS triple-frequency PPP ambiguity resolution method is developed using the widely used dual-frequency based clock products. In this method, the interfrequency clock biases between the triple-frequency and dual-frequency ionosphere-free carrier-phase measurements are first estimated and then applied to triple-frequency ionosphere-free carrier-phase measurements to obtain stable float ambiguities. After this, the wide-lane L2/L5 and wide-lane L1/L2 integer property of ambiguities are recovered by estimating the satellite fractional cycle biases. Atest using a sparse network is conducted to verify the effectiveness of themethod. The results show that the ambiguity resolution can be achieved in minutes even tens of seconds and the positioning accuracy is in decimeter level.
机译:随着全球定位系统中第三个民用信号的出现,由于大大减少了收敛时间,三频精确点定位模糊度解决方法引起了越来越多的关注。但是,相应的基于三频的精确时钟产品尚未广泛获得并被应用所采用。当前,最精确的产品是基于双频L1 / L2信号的无电离层组合而产生的,但是与三频无电离层载波相位测量结果不一致,从而导致定位不准确和不稳定的浮点模糊度。在这项研究中,使用广泛使用的基于双频的时钟产品开发了GPS三频PPP模糊度解析方法。在这种方法中,首先估算三频和双频无电离层载波相位测量之间的频率间时钟偏差,然后将其应用于三频无电离层载波相位测量,以获得稳定的浮点模糊度。此后,通过估计卫星分数周期偏差来恢复歧义的宽车道L2 / L5和宽车道L1 / L2整数属性。使用稀疏网络进行测试以验证该方法的有效性。结果表明,歧义分辨率可以在数分钟甚至数十秒内实现,并且定位精度在分米级。

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