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Detection and processing of bistatically reflected GPS signals from low Earth orbit for the purpose of ocean remote sensing

机译:检测和处理来自低地球轨道的双向反射Gps信号,用于海洋遥感

摘要

We will show that ocean-reflected signals from the global positioning system (GPS) navigation satellite constellation can be detected from a low-earth orbiting satellite and that these signals show rough correlation with independent measurements of the sea winds. We will present waveforms of ocean-reflected GPS signals that have been detected using the experiment onboard the United Kingdom's Disaster Monitoring Constellation satellite and describe the processing methods used to obtain their delay and Doppler power distributions. The GPS bistatic radar experiment has made several raw data collections, and reflected GPS signals have been found on all attempts. The down linked data from an experiment has undergone extensive processing, and ocean-scattered signals have been mapped across a wide range of delay and Doppler space revealing characteristics which are known to be related to geophysical parameters such as surface roughness and wind speed. Here we will discuss the effects of integration time, reflection incidence angle and examine several delay-Doppler signal maps. The signals detected have been found to be in general agreement with an existing model (based on geometric optics) and with limited independent measurements of sea winds; a brief comparison is presented here. These results demonstrate that the concept of using bistatically reflected global navigation satellite systems signals from low earth orbit is a viable means of ocean remote sensing.
机译:我们将显示,可以从低地球轨道卫星检测到来自全球定位系统(GPS)导航卫星星座的海洋反射信号,并且这些信号与独立测量的海风显示出粗略的相关性。我们将介绍通过英国“灾害监测星座”卫星上的实验检测到的海洋反射GPS信号的波形,并描述用于获取其延迟和多普勒功率分布的处理方法。 GPS双基地雷达实验已经收集了一些原始数据,并且在所有尝试中都发现了反射的GPS信号。来自实验的下行链路数据已进行了广泛的处理,并且海洋散射信号已映射到宽范围的延迟和多普勒空间揭示特性,这些特性与地球物理参数(例如表面粗糙度和风速)有关。在这里,我们将讨论积分时间,反射入射角的影响,并研究几个延迟多普勒信号图。已发现检测到的信号与现有模型(基于几何光学)总体上一致,并且与海风的独立测量值有限;这里进行简要的比较。这些结果表明,使用来自低地球轨道的双基地反射式全球导航卫星系统信号的概念是一种可行的海洋遥感手段。

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