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An Algorithm for the Retrieval of the Earth's Atmospheric Parameters from Occultation Data of GPS/LEO Satellites With Non-circular Orbits

机译:基于非圆轨道GPS / LEO卫星的掩星数据反演地球大气参数的算法

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摘要

A more direct iterative algorithm of the atmospheric bending angle in the retrieval of the earth's atmospheric parameters from radio occultation data of GPS/LEO satellites on non-circular orbits is presented. The convergence of this iterative method is mathematically proved. By using the simulative software package SHAOOS for the earth atmosphere retrieval from the GPS occultation observations, the effects of the circular orbit assumption on the retrieved atmospheric profiles are estimated quantitatively, and under the condition of non-circular orbits, the consistency of different iterative processes is verified. In addition, the shortage of a kind of iterative algorithm by means of series expansion is indicated.
机译:在非圆轨道上从GPS / LEO卫星的无线电掩星数据中检索地球大气参数时,提出了一种更直接的大气弯曲角迭代算法。数学上证明了该迭代方法的收敛性。通过使用模拟软件包SHAOOS从GPS掩星观测中检索地球大气,定量估计了圆形轨道假设对所检索的大气剖面的影响,并且在非圆形轨道的条件下,不同迭代过程的一致性已验证。另外,指出了一种借助于级数展开的迭代算法的不足。

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