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Numerical Calculation and Simulation of Sea Surface Bistatic Scattering for Ku and C-band

机译:KU和C波段海面双面散射数值计算与仿真

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Complete analysis of bistatic scattering feature to Gaussian rough sea surface is critical for inversion of surface physical parameters (such as sea surface wind and wave field) from satellite remote sensing data. A numerical simulation of the bistatic normalized radar cross section (BNRCS) is performed with unified wave spectrum, proposed by Elfouhaily, with cases of Ku and C band configuration and different polarization in term of a theoretical approximation model - small slope approximation (SSA) model. The results of the SSA model and the SASS-II test model are compared and analyzed. Given the different wind speed, the variation of BNRCS with the scattering angle and azimuth scattering is calculated and analyzed on the above configuration. The results further confirm that selection the appropriate wave spectrum and the Gaussian integration method in the V-V polarization, SSA model results can reach the precision of less than 1.1dB.
机译:对高斯粗糙海面的双静电散射特征完全分析对于来自卫星遥感数据的表面物理参数(如海上风和波场)的反演至关重要。通过Elfouhaily提出的统一波谱进行双面归一化雷达横截面(BNRC)的数值模拟,以及在理论近似模型中的Ku和C波段配置和不同偏振的情况下进行了不同的偏振 - 小斜率近似(SSA)模型。比较和分析SSA模型和SASS-II测试模型的结果。鉴于不同的风速,计算并分析上述配置的散射角和方位角散射的BNRC的变化。结果进一步证实,在V-V极化中选择适当的波谱和高斯集成方法,SSA模型结果可以达到小于1.1dB的精度。

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