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Indoor C-band polarimetric interferometry observations of a mature wheat canopy

机译:成熟的小麦冠层的室内C波段偏振干涉法观测

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We present results from experiments carried out in the ground-based synthetic aperture radar (GB-SAR) facility at the University of Sheffield to ascertain the role of polarimetric interferometry in crop height retrieval. To this end, a mature wheat canopy, grown in outdoor conditions, was reassembled inside the GB-SAR chamber and imaged at C-band using a two-dimensional scan. This allowed fully polarimetric tomography and interferometry. Interferometry using the VV, HH, and VH polarization states shows that the HH and VH interferograms retrieve a height close to the top of the soil layer for all angles of incidence considered, whereas the height retrieved from the VV interferogram increases with angle of incidence. The use of a Pauli basis gives poor results, due to the different location of the scattering phase centers in the VV and HH channels. The use of arbitrary polarization states shows that the top of the soil can be very accurately estimated using left-circular polarization, whereas, for angles of incidence close to 45/spl deg/, a polarization state similar to VV can be used to retrieve the top of the canopy; hence crop height can be recovered as the difference of these two interferometric heights. Polarimetric coherence optimization techniques are also studied. Unconstrained coherence optimization gives very unstable results, due to the small number of available samples. Constrained optimization results in stable retrieved heights, and the retrieved polarization states agree well with the polarization synthesis results.
机译:我们提供谢菲尔德大学在地面合成孔径雷达(GB-SAR)设施中进行的实验结果,以确定极化干涉法在作物高度检索中的作用。为此,将在室外条件下生长的成熟小麦冠层在GB-SAR室内重新组装,并使用二维扫描在C波段成像。这样就可以进行完全偏振层析成像和干涉测量。使用VV,HH和VH极化状态的干涉仪显示,对于所有考虑的入射角,HH和VH干涉图检索的高度都接近土壤层的顶部,而从VV干涉图中检索的高度随入射角的增加而增加。由于散射相位中心在VV和HH通道中的位置不同,因此使用Pauli基会产生较差的结果。任意极化状态的使用表明,使用左圆极化可以非常准确地估计土壤的顶部,而对于接近45 / spl deg /的入射角,可以使用类似于VV的极化状态来检索土壤的顶部。顶篷的顶部因此,可以通过这两个干涉高度的差来恢复作物高度。还研究了偏振相干优化技术。由于可用样本数量少,无约束的相干优化给出了非常不稳定的结果。约束优化导致稳定的检索高度,并且检索的偏振态与偏振合成结果非常吻合。

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