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GPS interfrequency biases and total electron content errors in ionospheric imaging over Europe

机译:欧洲电离层成像中的GPS频偏和总电子含量误差

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Measurements from the Global Positioning System (GPS) satellites provide a valuable source of information about the ionosphere in the form of integrations of electron concentration. The slant total electron content (TEC) through the ionosphere can be estimated for specific satellite-to-ground paths using the two GPS frequencies and knowledge of the dispersive properties of the ionosphere. However, these TEC values are in error because of the interfrequency biases of the satellites and receivers. In order to assess the accuracy of TEC in the ionospheric images, the determination of interfrequency biases must be studied. This paper addresses the determination of the magnitudes of these biases for individual GPS satellites paired with GPS receivers in Europe using the ionospheric imaging tool Multi-instrument Data Analysis System (MIDAS). This is done so that the accuracy of the TEC in the ionospheric images can be assessed. A simulation study was undertaken to verify the approach, then experimental results were compared with independent values of the biases calculated by the Center for Orbit Determination in Europe. Experimental results reveal that changes in the biases can be related directly to documented changes in receiver hardware. They allow an estimate of the receiver biases and hence the error in TEC estimation using GPS data.
机译:来自全球定位系统(GPS)卫星的测量以电子浓度积分的形式提供了有关电离层的有价值的信息来源。可以使用两个GPS频率并了解电离层的色散特性,针对特定的卫星到地面路径估算通过电离层的倾斜总电子含量(TEC)。但是,由于卫星和接收器的频率间偏差,这些TEC值是错误的。为了评估电离层图像中TEC的准确性,必须研究频率间偏差的确定。本文介绍了使用电离层成像工具多仪器数据分析系统(MIDAS)确定与欧洲GPS接收器配对的单个GPS卫星的这些偏差的大小的方法。这样做是为了评估电离层图像中TEC的准确性。进行了仿真研究以验证该方法,然后将实验结果与欧洲轨道确定中心计算的偏差的独立值进行比较。实验结果表明,偏差的变化可以直接与接收器硬件中记录的变化直接相关。它们允许对接收器偏置进行估算,从而可以使用GPS数据估算TEC误差。

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