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首页> 外文期刊>Acta Oceanologica Sinica >An inverse method for underwater bottom topography by using SAR imagery
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An inverse method for underwater bottom topography by using SAR imagery

机译:利用SAR图像反演水下海底地形的方法

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摘要

Interaction between current and underwater bottom topography leads to roughness of the sea surface, which in turn yields variation of the radar scattering echo. By using the continuity equation and weak hydrodynamic interaction theory in the relaxation time approximation, the spatial variation of the radar scattering cross-section has been proved as proportional to the gradient of current velocity. The current direction is first determined by using two-dimensional (2-D) correlation of spatial variation of backscattering measured by the SAR imagery, as the priori knowledge of the current direction is not available. The inverse algorithm to successively derive 2-D underwater bottom topography from the SAR imagery is developed. As an application, the SAR SIR-C image over the sea area of Hong Kong, China is studied.
机译:当前和水下底部地形之间的相互作用导致海面的粗糙度,进而导致雷达散射回波的变化。通过在弛豫时间近似中使用连续性方程和弱流体动力相互作用理论,证明了雷达散射截面的空间变化与当前速度的梯度成比例。由于无法获得当前方向的先验知识,因此首先通过使用由SAR图像测量的反向散射空间变化的二维(2-D)相关性来确定当前方向。开发了从SAR图像中连续导出二维水下底部地形的逆算法。作为应用,研究了中国香港海域的SAR SIR-C图像。

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