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Ionosphere-Free Phase Combinations for Modernized GPS

机译:现代化GPS的无电离层相位组合

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In this contribution, optimal ionosphere-free combinations for a modernized triple-frequency global positioning system (GPS) are derived. It is shown that these ionosphere-free combinations are directly related to the model based on carrier phase observations only, in which the ionospheric delays are estimated. For this model and thus for the ionosphere-free combinations, integer ambiguity estimation is possible, in contrast to what is often read in GPS positioning literature. In this article the estimable integer ambiguities are presented and the expected success rates when trying to resolve these ambiguities are given. In addition, the baseline precision is analyzed for both the ambiguity-float and ambiguity-fixed ionosphere-free cases.
机译:在此贡献中,得出了用于现代化三频全球定位系统(GPS)的最佳无电离层组合。结果表明,这些无电离层的组合仅与基于载波相位观测值的模型直接相关,其中估计了电离层延迟。对于这种模型,因此对于无电离层的组合,与GPS定位文献中经常看到的相反,整数模糊度估计是可能的。本文介绍了可估计的整数歧义,并给出了尝试解决这些歧义时的预期成功率。此外,还对不确定性浮起和不确定性电离层情况下的基线精度进行了分析。

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