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The integrated use of GPS/GLONASS observations in network code differential positioning

机译:在网络代码差分定位中的GPS / GLONASS观测的综合使用

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We present the methodology and results of GPS/GLONASS integration in network code differential positioning for regional coverage across Poland using single frequency. Previous studies have only concerned the GPS system and relatively short distances to reference stations of up to tens of kilometers. This study is limited to using GPS and GLONASS. However, the methodology presented applies to all satellite navigation systems. The deterministic and stochastic models, as well as the most important issues in GPS/GLONASS integration are discussed. Two weeks of the GNSS observations were processed using software developed by the first author. In addition to interpolation of pseudorange corrections (PRCs) within the polygon of reference stations, the effect of their extrapolation outside that polygon is also briefly presented. It is well known that the positioning accuracy in a network of heterogeneous receivers can be degraded by GLONASS-FDMA frequency-dependent hardware biases. Our research reveals that when using such networks, the effect of these biases on the network differential GNSS (NDGNSS) positioning results as derived from both GPS and GLONASS can be reduced by simple down-weighting of GLONASS observations. We found that the same approach for the homogeneous equipment is not required; however, it can enhance performance of NDGNSS. Yet, the addition of the down-weighted GLONASS pseudoranges still improves the positioning accuracy by 14-25 %. The representative NDGNSS estimation is characterized by 0.17, 0.12 and 0.32 m RMS errors for the north, east and up component, respectively.
机译:我们介绍了在网络代码中的GPS / GLONASS集成的方法和结果,使用单个频率在波兰横跨波兰覆盖的差分定位。以前的研究仅涉及GPS系统和相对较短的距离到高达数十公里的参考站。本研究仅限于使用GPS和GLONASS。但是,所呈现的方法适用于所有卫星导航系统。讨论了确定性和随机模型,以及GPS / GLONASS集成中最重要的问题。使用第一个作者开发的软件处理了两周的GNSS观察。除了参考站的多边形内的伪静脉校正(PRC)的插值之外,还简要介绍了多边形外的外推外的效果。众所周知,通过GLONASS-FDMA频率相关的硬件偏差可以降低非均相接收器网络中的定位精度。我们的研究表明,当使用此类网络时,通过简单的Glonass观测,可以减少这些网络在网络差分GNSS(NDGNSS)定位结果上的效果。我们发现不需要相同的均匀设备的方法;但是,它可以增强NDGNSS的性能。然而,向下加权Glonass伪距离仍然将定位精度提高14-25%。代表性的NDGNSS估计分别为北,东部和上升组件的0.17,0.12和0.32毫升误差。

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