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IONOSPHERIC DELAY CORRECTION METHOD FOR LEO SATELLITE AUGMENTED NAVIGATION SYSTEMS

机译:LEO卫星增强导航系统的电球延迟校正方法

摘要

The invention discloses an ionospheric delay correction method for LEO satellite augmented navigation systems for GNSS. According to the method, GNSS satellite navigation signals received by LEO GNSS receiver loads are used for providing ionospheric information for navigation augmentation for earth surface users. In the method, as a set of mobile navigation augmentation reference stations, LEO satellites continuously observe the global ionosphere to generate ionospheric delay correction information, and the ionospheric delay correction information is sent to the earth surface users to obtain augmented navigation performance. By adoption of the method, ionospheric delay correction data covering the whole world instead of covering certain areas and particularly ionospheric delay correction data covering the vast marine areas are obtained; ionospheric gradient data are provided; and compared with traditional approaches, ionospheric delay correction accuracy is higher than that of traditional approaches; ionospheric activities and events are monitored in orbit to provide complete ionospheric delay correction information.
机译:本发明公开了一种用于GNSS的LEO卫星增强导航系统的电离层延迟校正方法。根据该方法,LEO GNSS接收器负载接收到的GNSS卫星导航信号用于为地球表面用户提供电离层信息以进行导航增强。在该方法中,作为一组移动导航增强参考站,LEO卫星连续观测全球电离层以生成电离层延迟校正信息,并将电离层延迟校正信息发送给地表用户以获得增强的导航性能。通过该方法,可以获得覆盖整个世界而不是覆盖某些区域的电离层延迟校正数据,特别是获得了覆盖广阔海洋区域的电离层延迟校正数据;提供了电离层梯度数据;与传统方法相比,电离层延迟校正的精度要高于传统方法。电离层活动和事件在轨道上受到监控,以提供完整的电离层延迟校正信息。

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