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New leveling and bias estimation algorithms for processing COSMIC/FORMOSAT-3 data for slant total electron content measurements

机译:用于处理COSMIC / FORMOSAT-3数据以进行倾斜总电子含量测量的新平整和偏差估计算法

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摘要

Ionospheric modeling can be improved by the inclusion of occultation data between satellites and GPS transmitters. COSMIC/FORMOSAT-3 provides a large data set of such occultations. In order to utilize these absolute measurements in an assimilative model, the data must be carefully processed; the level of the ionospheric combination and the differential biases must be accurately determined. The COSMIC GPS receivers operate in a high multipath environment; a phase leveling algorithm, utilizing the information in the multipath, improves the leveling errors by at least 0.4 total electron content units. Receiver biases are then computed from the leveled data by making some simplifying assumptions about the structure of the ionosphere and plasmasphere. This processing algorithm provides occultation measurements as slant total electron content to an accuracy of 3.55 total electron content units.
机译:通过在卫星和GPS发射器之间包含掩星数据,可以改善电离层建模。 COSMIC / FORMOSAT-3提供了此类掩星的大量数据。为了在同化模型中利用这些绝对测量值,必须仔细处理数据;电离层组合的水平和微分偏差必须准确确定。 COSMIC GPS接收机在高多径环境中运行;一种利用多径信息的相位均衡算法,可以将均衡误差提高至少0.4个总电子含量单位。然后,通过对电离层和等离子层的结构进行一些简化的假设,从水准数据中计算出接收器的偏差。该处理算法提供掩星测量,将其作为倾斜的总电子含量至3.55总电子含量单位的精度。

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