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Geometry-free Analysis of GIOVE-A/B E1 - E5a, and GPS L1 - L5 Measurements

机译:Giove-A / B E1-E5A的几何分析,以及GPS L1 - L5测量

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This contribution provides an in-depth demonstration of a geometry-free approach to estimate stochastic properties of GPS and GIOVE pseudorange and carrier phase observables based on short and zero baseline measurements. The results clearly show a pseudorange precision improvement with the GIOVE E1B signal compared to the GPS L1C/A signal, as well as a precision improvement of the GPS L5Q and GIOVE E5aQ signal with respect to the L1/E1 signals under real operational conditions. However, strong multipath effects were found on the new signals, which might prevent advantageous use of the improved precision. Finally, the feasibility of integer carrier phase cycle ambiguity resolution in the absence of precise ephemerides is demonstrated, indicating GPS-Galileo inter-operability.
机译:该贡献提供了一种基于短零基线测量的GPS和Giove伪距离和载波相位观察的几何形状的方法的深入演示。结果清楚地显示了与GPS L1C / A信号相比的Giove E1b信号的假致精度改进,以及GPS L5Q和Giove E5AQ信号相对于L1 / E1信号的精确改善在实际操作条件下。然而,在新信号上发现了强大的多径效应,这可能会阻止利用改进的精度。最后,证明了在没有精确的间榄胺的情况下进行整数载波相循环模糊分辨率的可行性,表明GPS-Galileo间可互操作性。

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