Characterization and mitigation of interference between GNSS radio occultation and reflectometry signals for low‐altitude occultations

Ian Collett, Y. Morton, Yang Wang, Brian Breitsch
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引用次数: 2

Abstract

This research investigates the mutual interference between a GNSS signal refracted through the atmosphere and the same signal reflected from the surface below. For low-altitude occultations, the reflected signal can be present as multipath when tracking the direct signal. This poses a problem when making remote sensing measurements using GNSS-RO or GNSS-R techniques. Here, this issue is addressed in the context of GNSS data collected by a mountaintop receiver on the Hawaiian island of Maui. First, an elevation-angle threshold, below which the reflected signal can be present as multipath on the direct signal, is calculated for the mountaintop geometry. Next, the first steps are taken to mitigate the mutual interference between the direct and reflected signals. A frequency-domain filtering approach and a time-domain smoothing approach are applied to the signal intensity in an effort to separate the multipath contribution and the direct signal contribution.
低空掩星GNSS无线电掩星和反射测量信号之间干扰的表征和缓解
这项研究调查了通过大气层折射的全球导航卫星系统信号与从下面表面反射的相同信号之间的相互干扰。对于低空掩星,在跟踪直接信号时,反射信号可能以多路径形式存在。当使用GNSS-RO或GNSS-R技术进行遥感测量时,这会带来问题。在这里,这个问题是在夏威夷毛伊岛山顶接收器收集的全球导航卫星系统数据的背景下解决的。首先,为山顶几何形状计算仰角阈值,低于该阈值,反射信号可以作为直接信号上的多径出现。接下来,采取第一步骤来减轻直接信号和反射信号之间的相互干扰。频域滤波方法和时域平滑方法被应用于信号强度,以努力分离多径贡献和直接信号贡献。
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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