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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Doppler spectrum of microwave SAR signals from two-dimensional time-varying sea surface
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Doppler spectrum of microwave SAR signals from two-dimensional time-varying sea surface

机译:二维时变海面微波SAR信号的多普勒谱

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Within the framework of the two-scale scattering model, Doppler shift and bandwidth of microwave scattering field from two-dimensional (2-D) sea surface have been simulated. And the comparisons of the simulated results with the Doppler anomaly measurements from Envisat ASAR demonstrate the rationality of the formulas proposed by us. Meanwhile, the influences of the tilt and the hydrodynamic modulations due to large-scale underlying waves on Doppler shift and bandwidth have also been discussed in detail. Numerical results show that the Doppler shifts for HH-and VV-polarizations are both observably affected by the tilt and the hydrodynamic modulations and the values of the predicted Doppler shifts are always larger than Bragg frequency. Because the radar scattering coefficient is more sensitive to sea surface slope in HH polarization than in VV, the predicted Doppler shifts in HH polarization are always somewhat larger than those in VV. Moreover, we also find that there is a remarkable difference between the Doppler shift predicted in upwind and downwind direction due to the hydrodynamic modulations. Relative to Doppler shift, bandwidth of Doppler spectrum is mainly affected by orbit velocity of large-scale waves and is insensitive to the modulations and radar polarizations.
机译:在二维散射模型的框架内,对二维(2-D)海面微波散射场的多普勒频移和带宽进行了模拟。仿真结果与Envisat ASAR的多普勒异常测量结果的比较证明了我们提出的公式的合理性。同时,还详细讨论了由于大范围下伏波引起的倾斜和流体动力调制对多普勒频移和带宽的影响。数值结果表明,HH和VV极化的多普勒频移均受倾斜和流体动力调制的影响,并且预测的多普勒频移值始终大于布拉格频率。由于雷达散射系数在HH极化中比VV对海面斜率更敏感,因此HH极化中预测的多普勒频移总是比VV更大。此外,我们还发现由于流体动力调制,在上风和下风方向预测的多普勒频移之间存在显着差异。相对于多普勒频移,多普勒频谱的带宽主要受大型波轨道速度的影响,并且对调制和雷达极化不敏感。

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