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The relationship between radar polarimetric and interferometric phase

机译:雷达偏振相位与干涉相位之间的关系

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Generally, the polarimetric phase difference between the VV and HH channels is interpreted in terms of the spatial difference between the HH and VV scattering centers. In the case of interferometry, the phase difference at a particular polarization combination is usually interpreted as a three-dimensional position of a scattering center, allowing one to reconstruct the topography of the scene. Recent results from polarimetric radar interferometers suggest that a slightly different phase value is measured when different polarizations are used at each end of the interferometric baseline. If this interferometric phase difference is indeed interpreted in the same way as the traditional interferometric phase, it suggests that a slightly different elevation would be measured at each polarization, leading to the idea that polarimetric interferometry could provide information about the vertical structure of vegetation. This paper examines the relationship between the phase measured by a radar polarimeter and a radar interferometer.
机译:通常,根据HH和VV散射中心之间的空间差异来解释VV和HH通道之间的偏振相位差。在干涉测量的情况下,通常将特定偏振组合下的相位差解释为散射中心的三维位置,从而可以重建场景的地形。极化雷达干涉仪的最新结果表明,当在干涉基线的每一端使用不同的极化时,所测量的相位值会稍有不同。如果确实以与传统干涉相相同的方式解释了这种干涉相差,则表明在每个偏振方向上都将测量到略微不同的海拔高度,从而得出这样的想法,即偏振干涉法可以提供有关植被垂直结构的信息。本文研究了雷达偏振计和雷达干涉仪测得的相位之间的关系。

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