Ionosphere-gradient based filtering approach for precise relative navigation in LEO

F. Causa, A. Renga, M. Grassi
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引用次数: 1

Abstract

Formation flying missions require the knowledge of the relative positions of the satellites for formation, maintenance and scientific purposes. In Low Earth Orbit, this task is typically performed by GPS-based navigation filters. However, the final accuracy, especially over long baselines, is strongly affected by the capability of correctly estimating the ionospheric delays. In this paper the performance of a real-time relative positioning filter are improved with the introduction of an ionospheric model capable of representing horizontal ionospheric gradients, referred to as Linear Thin Shell model. This model can be used as an alternative to the most common isotropic ionospheric model. Filter performance are investigated in high and low ionospheric intensity conditions using real flight data. Results show that, in intense ionospheric conditions, positioning accuracy is improved with respect to the case of using an isotropic model.
基于电离层梯度的低轨道精确相对导航滤波方法
编队飞行任务需要了解卫星的相对位置,以便进行编队、维修和科学研究。在近地轨道上,这项任务通常由基于gps的导航滤波器执行。然而,最终的精度,特别是在长基线上,受到正确估计电离层延迟的能力的强烈影响。本文通过引入一种能够表示水平电离层梯度的电离层模型,即线性薄壳模型,提高了实时相对定位滤波器的性能。这个模型可以用来替代最常见的各向同性电离层模型。利用实际飞行数据研究了高、低电离层强度条件下的滤波性能。结果表明,在强烈的电离层条件下,相对于使用各向同性模式,定位精度有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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