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An Improved Precise Point Positioning Method Based on Between-Satellite Single-Difference and Carrier Smoothing

机译:一种改进的基于卫星单差和载波平滑的精密点定位方法

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Adding GLONASS data to GPS is a common way to enhance the performance of precise point positioning (PPP) in terms of convergence time and accuracy. However, the combined GPS/GLONASS PPP is not always guaranteed to provide a better solution than GPS PPP alone due to data quality issues. To improve this problem, we propose a new observation model for GPS/GLONASS PPP. We adopt a between-satellite single-difference (BSSD) combination and carrier smoothing (CS) techniques for GPS and GLONASS observations. The proposed BSSD-CS is shown to be effective in the improvement of performance of GPS/GLONASS PPP. A 7-day data set from 19 IGS stations are used to assess and verify the effectiveness of the proposed PPP model in static modes. Furthermore, three different GNSS receivers are used to investigate the potential of the proposed PPP model. It is shown that the proposed GPS/GLONASS PPP model can indeed reduce the convergence time and achieve better positioning precision in comparison with traditional GPS/GLONASS PPP models. In addition, even used with a low-cost GNSS receiver, the proposed PPP can still yield decimeter-level positioning accuracy and precision within a few minutes, which is as precise as and as fast as using a high-end GNSS receiver.
机译:向GPS添加Glonass数据是在收敛时间和准确性方面提高精确点定位(PPP)的性能的常用方法。但是,由于数据质量问题,并不总是保证组合的GPS / GLONASS PPP以单独提供比GPS PPP更好的解决方案。为了改善这个问题,我们为GPS / GLONASS PPP提出了一种新的观察模型。我们采用卫星单差(BSSD)组合和载波平滑(CS)技术,用于GPS和GLONASS观察。所提出的BSSD-CS显示在改善GPS / GLONASS PPP的性能方面是有效的。从19个IGS站的7天数据集用于评估和验证所提出的PPP模型在静态模式中的有效性。此外,使用三种不同的GNSS接收器来研究所提出的PPP模型的潜力。结果表明,与传统的GPS / GLONASS PPP模型相比,所提出的GPS / GLONASS PPP模型确实可以降低收敛时间并实现更好的定位精度。此外,甚至与低成本的GNSS接收器一起使用,所提出的PPP仍然可以在几分钟内产生排入量级定位精度和精度,这与使用高端GNSS接收器一样精确。

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