GNSS大气层析成像新方法——建议与试验

M. Kačmařík, Lukás Rapant
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引用次数: 4

摘要

论文的重点是全球导航卫星系统气象学,通常用于确定大气中的水蒸气分布从全球导航卫星系统的测量。大气中的水蒸气是影响天气状态和发展的重要参数。本文首先介绍了GNSS气象学和大气层析成像的基础知识,随后介绍了一种新的GNSS层析成像方法,该方法不需要广泛的GNSS接收器网络,而只使用位于一条线上的少数接收器。在描述了该方法的理论概念和数学背景后,给出了实际实验结果并进行了讨论。不幸的是,结果表明,所提出的方法不能提供可靠的输出。可能主要问题在于当前全球导航卫星系统(GPS和GLONASS)的可用信号数量不足,在伽利略和指南针启动后,有望得到改善。在最后一节中概述了如何在不增加卫星数量的情况下改善结果的潜在方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New GNSS tomography of the atmosphere method – proposal and testing
Paper is focused on GNSS meteorology which is generally used for the determination of water vapour distribution in the atmosphere from GNSS measurements. Water vapour in the atmosphere is an important parameter which influences the state and development of the weather. At first, the paper presents basics of the GNSS meteorology and tomography of the atmosphere and subsequently introduces a new GNSS tomography method which doesn't require an extensive network of GNSS receivers, but uses only a few receivers situated in a line. After a theoretical concept describing this method and used mathematical background, the results from a real experiment are shown and discussed. Unfortunately the results indicate that presented method is not able to provide credible outputs. Possibly the main problem lies in an insufficient number of available signals from current global navigation satellite systems (GPS and GLONASS) where the improvement could be expected after the start of Galileo and Compass. Potential ways how to improve the results without increasing the number of satellites are outlined in the last section.
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