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Research Article. Improved Dual Frequency PPP Model Using GPS and BeiDou Observations

机译:研究文章。利用GPS和北斗观测改进的双频PPP模型

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This paper introduces a new dual-frequency precise point positioning (PPP) model, which combines GPS and BeiDou observations. Combining GPS and BeiDou observations in a PPP model offers more visible satellites to the user, which is expected to enhance the satellite geometry and the overall PPP solution in comparison with GPSonly PPP solution. However, combining different GNSS constellations introduces additional biases, which require rigorous modelling, including GNSS time offset and hardware delays. In this research, ionosphere-free linear combination PPP model is developed. The additional biases, which result from combining the GPS and BeiDou observables, are lumped into a new unknown parameter identified as the inter-system bias. Natural Resources Canada’s GPSPace PPP software is modified to enable a combined GPS/BeiDou PPP solution and to handle the newly introduced biases. A total of four data sets at four IGS stations are processed to verify the developed PPP model. Precise satellite orbit and clock products from the IGS-MGEX network are used to correct both of the GPS and BeiDou measurements. It is shown that a sub-decimeter positioning accuracy level and 25% reduction in the solution convergence time can be achieved with combining GPS and Bei-Dou observables in a PPP model, in comparison with the GPS-only PPP solution.
机译:本文介绍了一种结合GPS和北斗观测资料的新型双频精确点定位(PPP)模型。在PPP模型中将GPS和北斗的观测结果结合起来可以为用户提供更多可见卫星,与GPSonly PPP解决方案相比,有望增强卫星的几何形状和整体PPP解决方案。但是,组合不同的GNSS星座会引入额外的偏差,这需要严格的建模,包括GNSS时间偏移和硬件延迟。在这项研究中,建立了无电离层线性组合PPP模型。由GPS和北斗可观测物的组合产生的额外偏差被汇总到一个新的未知参数中,该参数被识别为系统间偏差。加拿大自然资源公司的GPSPace PPP软件进行了修改,以实现GPS /北斗PPP组合解决方案并处理新引入的​​偏差。共处理了四个IGS站的四个数据集,以验证开发的PPP模型。来自IGS-MGEX网络的精确卫星轨道和时钟产品可用于校正GPS和北斗的测量结果。结果表明,与仅使用GPS的PPP解决方案相比,在PPP模型中结合使用GPS和北斗可观测值可以达到亚分米级的定位精度水平,并且解决方案收敛时间减少了25%。

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