首页> 外文会议>Geoscience and Remote Sensing Symposium, 1995. IGARSS '95. 'Quantitative Remote Sensing for Science and Applications', International >The relationship between radar cross section and surface wind in two oceanic regions: ERS-1 scatterometer and buoy measurements
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The relationship between radar cross section and surface wind in two oceanic regions: ERS-1 scatterometer and buoy measurements

机译:ERS-1散射仪和浮标测量两个海洋区域中的雷达横截面与表面风之间的关系

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A wind vector retrieval algorithm is developed and validated using the ERS-1 scatterometer and collocated buoy measurements in two oceanic regions during 1992 and 1993. This algorithm, denoted RBT, and the ESA delivered winds are compared. The wind speed is retrieved from near 0.1 m/s to 18 m/s overestimating the lowest winds by about 0.4 m/s using the RBT algorithm; whereas the ESA algorithm is restricted to U<2 m/s. Existing algorithms consistently retrieve 180/spl deg/ ambiguities in wind direction about as often as the true directions. These ambiguities are caused by a small and variable upwind/downwind modulation inherent in the C-band vertically polarized backscatter. The wind speed and direction variability are similar for both algorithms; a rms deviation near 1.2 m/s and 25/spl deg/ provided the directional ambiguities are removed.
机译:开发了风矢量检索算法,并使用ERS-1散射仪和1992年至1993年在两个大洋区域的并置浮标测量进行了验证。该算法用RBT表示,并比较了ESA输送的风。使用RBT算法将风速从大约0.1 m / s恢复到18 m / s,将最低风高估了大约0.4 m / s。而ESA算法被限制为U <2 m / s。现有算法在风向上始终以大约真实方向的频率连续获取180 / spl度/模糊度。这些歧义是由C波段垂直极化后向散射固有的小而可变的迎风/顺风调制引起的。两种算法的风速和方向变化都相似。如果消除了方向歧义,则均方根偏差接近1.2 m / s和25 / spl deg /。

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