Advantages of C-band and L-band atmospheric remote sensing

Stefan Junker, T. Schüler
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引用次数: 0

Abstract

Atmospheric sounding is an important scientific GNSS application: knowledge of the water vapor distribution is fundamental for weather and climate prediction and can be improved by ground GNSS networks and occultation measurements. All present global and regional navigation satellite systems use frequencies in L-band, which is getting more and more crowded. To generate a larger variety of frequency options and to avoid some of the frequency-dependent errors in navigation, S-and C-band offers some interesting opportunities for scientific applications using GNSS. This paper shows the benefit of S- and C-band for retrieval of atmospheric parameters related to both the troposphere and the ionosphere. The concept comprises the development of models and algorithms for C-band data generation and its processing. A clear advantage of L-C-band combinations over traditional L-band-only linear combinations was successfully demonstrated for ground-based methods as well as radio occultation scenarios.
c波段和l波段大气遥感的优势
大气探测是GNSS重要的科学应用:了解水汽分布是天气和气候预测的基础,可以通过地面GNSS网络和掩星测量来改进。现有的全球和区域卫星导航系统都使用l波段的频率,这一频段越来越拥挤。为了产生更多种类的频率选择,并避免导航中的一些频率相关错误,s - c波段为使用GNSS的科学应用提供了一些有趣的机会。本文介绍了S波段和c波段在反演对流层和电离层大气参数方面的优势。该概念包括c波段数据生成及其处理的模型和算法的发展。在地面方法和无线电掩星场景中,l - c波段组合比传统的仅l波段线性组合具有明显的优势。
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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