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An Improved Local Gradient Method for Sea Surface Wind Direction Retrieval from SAR Imagery

机译:SAR图像反演海面风向的改进局部梯度法。

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Sea surface wind affects the fluxes of energy, mass and momentum between the atmosphere and ocean, and therefore regional and global weather and climate. With various satellite microwave sensors, sea surface wind can be measured with large spatial coverage in almost all-weather conditions, day or night. Like any other remote sensing measurements, sea surface wind measurement is also indirect. Therefore, it is important to develop appropriate wind speed and direction retrieval models for different types of microwave instruments. In this paper, a new sea surface wind direction retrieval method from synthetic aperture radar (SAR) imagery is developed. In the method, local gradients are computed in frequency domain by combining the operation of smoothing and computing local gradients in one step to simplify the process and avoid the difference approximation. This improved local gradients (ILG) method is compared with the traditional two-dimensional fast Fourier transform (2D FFT) method and local gradients (LG) method, using interpolating wind directions from the European Centre for Medium-Range Weather Forecast (ECMWF) reanalysis data and the Cross-Calibrated Multi-Platform (CCMP) wind vector product. The sensitivities to the salt-and-pepper noise, the additive noise and the multiplicative noise are analyzed. The ILG method shows a better performance of retrieval wind directions than the other two methods.
机译:海面风影响着大气与海洋之间的能量,质量和动量通量,进而影响区域和全球的天气和气候。使用各种卫星微波传感器,几乎可以在白天或夜晚的所有天气条件下,以较大的空间覆盖范围测量海面风。像其他任何遥感测量一样,海面风的测量也是间接的。因此,为不同类型的微波仪器开发合适的风速和方向检索模型非常重要。本文提出了一种从合成孔径雷达(SAR)图像获取海面风向的新方法。该方法通过一步一步结合平滑和计算局部梯度的操作,在频域中计算局部梯度,从而简化了过程,避免了差分逼近。该改进的局部梯度(ILG)方法与传统的二维快速傅立叶变换(2D FFT)方法和局部梯度(LG)方法进行了比较,使用了欧洲中距离天气预报中心(ECMWF)重新分析得出的风向数据和交叉校准的多平台(CCMP)风矢量积。分析了对盐和胡椒噪声,加性噪声和乘性噪声的敏感性。 ILG方法显示出比其他两种方法更好的风向检索性能。

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