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GPS-based remote sensing of ocean-surface wind speed from space

机译:基于GPS的远程感测空间的海面风速

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Previous papers have demonstrated the ability to determine wind speed and direction from ocean-reflected GPS signals observed at aircraft altitudes to within 2 m/s and 20 degrees of in situ measurements. This paper presents a preliminary step towards extending GPS-based wind vector retrievals to spacecraft altitudes. The work takes the form of visibility, sensitivity, and noise analyses. The visibility analysis reveals the number of ocean-reflected GPS signals visible per day, a value that drives the uncertainty in wind vector estimates. The sensitivity analysis determines which delay/Doppler cells of a glistening zone visible from space are most sensitive to changes in wind speed and direction. Finally, the noise analysis uses results from the previous two analyses to determine the uncertainty in wind vector retrievals using the cells identified in the sensitivity analysis.
机译:之前的论文已经证明了在飞机上观察到的海洋反射GPS信号中的风速和方向的能力,在2米/秒内和20度的原位测量中。本文介绍了将基于GPS的风向量延伸到航天器高度的初步步骤。这项工作采用了可见性,敏感性和噪声分析的形式。可见性分析显示每天可见的海洋反射GPS信号的数量,这是驱动风矢量估计中不确定性的值。灵敏度分析确定从空间可见的闪闪发光区的延迟/多普勒电池对风速和方向的变化最敏感。最后,噪声分析使用前两种分析的结果,以使用敏感性分析中识别的细胞来确定风矢量检索中的不确定性。

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