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Ionospheric delay corrections for single-frequency GPS receivers over Europe using tomographic mapping

机译:欧洲使用层析成像技术对欧洲单频GPS接收机的电离层延迟校正

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The majority of navigation satellites receivers operate on a single frequency and experience a positioning error due to the ionospheric delay. This can be compensated for using a variety of approaches that are compared in this paper. The study focuses on the last solar maximum. A 4D tomographic imaging technique is used to map the ionospheric electron density over the European region during 2002 and 2003. The electron density maps are then used to calculate the excess propagation delay on the L1 frequency experienced by GPS receivers at selected locations across Europe. The excess delay is applied to correct the pseudo-range single frequency observations at each location and the improvements to the resulting positioning are calculated. The real-time tomographic technique is shown to give navigation solutions that are better than empirical modelling methods and approach the accuracy of the full dual-frequency solution. The improvements in positioning accuracy vary from day to day depending on ionospheric conditions but can be up to 25 m during mid_day during these solar maximum conditions at European mid-latitudes.
机译:大多数导航卫星接收机工作在单个频率上,并且由于电离层延迟而遇到定位误差。使用本文中比较的各种方法可以弥补这一点。该研究集中在最后一个太阳最大值。 4D断层成像技术用于在2002年和2003年期间绘制欧洲区域的电离层电子密度图。然后,电子密度图用于计算GPS接收机在欧洲所选位置经历的L1频率上的过量传播延迟。应用多余的延迟来校正每个位置的伪距单频观测值,并计算对所得定位的改进。实时层析成像技术显示出比经验建模方法更好的导航解决方案,并能接近全双频解决方案的准确性。定位精度的提高每天都在变化,具体取决于电离层的状况,但在欧洲中纬度的这些太阳最大状况下,在中午可能会达到25 m。

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