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Dependency of backscattering from ocean surface on wind direction by using airborne SAR - low wind speed case

机译:机载SAR从海洋表面向后散射对风向的依赖性-低风速情况

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The dependency of backscattering from ocean surface on wind direction under low wind speed (5m/s) is analyzed using observation data by an airborne dual-frequency SAR in the L- and X-bands. The NRCS differencebetween up- and down-wind conditions depends on the incidence angle in the X-band HH polarization, though that in the VV polarization, the NRCS difference is almost zero. Moreover, the NRCS difference between parallel- and cross-wind conditions in the VV polarization is greater than that in the HH polarization. Though the dependency of the NRCS in the L-band on the wind direction is smaller than that in the X-band, the NRCSs in the L-band cross polarizations under the cross-wind condition is greater than that under the parallel-wind condition. The polarizatuion ratio (PR) difference between up- and down-wind directions depends on the incidence angle as the incidence angle dependency in the X-band HH polarization. The dependency of the PR in the L-band on wind direction is also weaker than that in the X-band. The results suggest the possibility of ocean wind measurement using the polarimetric SAR in the X-band and/or using the dual-frequency SAR.
机译:在低风速(5m / s)下,利用机载双频SAR在L波段和X波段的观测数据,分析了海面反向散射对风向的依赖性。上风和下风条件之间的NRCS差异取决于X波段HH极化的入射角,而在VV极化中,NRCS差异几乎为零。此外,VV极化中平行风和侧风条件之间的NRCS差异大于HH极化中的NRCS差异。虽然L波段的NRCS对风向的依赖性小于X波段,但在横风条件下L波段交叉极化的NRCS大于平行风条件下的NRCS。 。上下风向之间的极化率(PR)差取决于入射角,因为X波段HH极化中的入射角具有依赖性。 L波段中PR对风向的依赖性也比X波段中PR的依赖性弱。结果表明使用X波段的极化SAR和/或双频SAR进行海风测量的可能性。

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