全球定位系统
计算机科学
电离层
GPS信号
卫星
算法
群时延和相位时延
卫星导航
遥感
辅助全球定位系统
实时计算
电信
物理
工程类
带宽(计算)
地球物理学
地理
航空航天工程
标识
DOI:10.1109/taes.1987.310829
摘要
The goal in designing an ionospheric time-delay correctionalgorithm for the single-frequency global positioning system userwas to include the main features of the complex behavior of theionosphere, yet require a minimum of coefficients and usercomputational time, while still yielding an rms correction of at least50 percent. The algorithm designed for this purpose, andimplemented in the GPS satellites, requires only eight coefficientssent as part of the satellite message, contains numerousapproximations designed to reduce user computationalrequirements, yet preserves the essential elements required to obtaingroup delay values along multiple satellite viewing directions.
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