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Ionospheric correction of GPS radio occultation data in the troposphere

机译:对流层中GPS无线电掩星数据的电离层校正

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摘要

For inversions of the GPS radio occultation (RO) data in the neutral atmosphere, this study investigates an optimal transition height for replacing the standard ionospheric correction using the linear combination of the L1 and L2 bending angles with the correction of the L1 bending angle by the L1-L2 bending angle extrapolated from above. The optimal transition height depends on the RO mission (i.e., the receiver and firmware) and is different between rising and setting occultations and between L2P and L2C GPS signals. This height is within the range of approximately 10-20 km. One fixed transition height, which can be used for the processing of currently available GPS RO data, can be set to 20 km. Analysis of the L1CA and the L2C bending angles shows that in some occultations the errors of standard ionospheric correction substantially increase around the strong inversion layers (such as the top of the boundary layer). This error increase is modeled and explained by the horizontal inhomogeneity of the ionosphere.
机译:对于中性大气中GPS无线电掩星(RO)数据的反演,本研究研究了一种最佳的过渡高度,以取代使用L1和L2弯曲角度的线性组合并用L1弯曲角度的校正来替代标准电离层校正。 L1-L2弯曲角度是从上方推断的。最佳过渡高度取决于RO任务(即接收器和固件),并且在上升掩星和设置掩星之间以及L2P和L2C GPS信号之间是不同的。该高度在大约10-20 km的范围内。一个可以用于处理当前可用的GPS RO数据的固定过渡高度可以设置为20 km。对L1CA和L2C弯曲角的分析表明,在某些掩星中,标准电离层校正的误差在强反演层(例如边界层的顶部)附近显着增加。通过电离层的水平不均匀性来模拟和解释这种误差增加。

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