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Extended Three-Stage Polarimetric SAR Interferometry Algorithm by Dual-Polarization Data

机译:利用双极化数据扩展三阶段极化SAR干涉测量算法

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Until now, most polarimetric synthetic aperture radar interferometry (PolInSAR) research has been based on full-polarization (HH HV VH VV) SAR data, which can provide complete polarimetric information but usually have a smaller swath and lower spatial resolution than dual-polarization (dual-pol) data. Some existing researches concern the dual-pol PolInSAR; however, these works did not perform the coherence optimization process which may make the inversion unstable. In this paper, the PolInSAR technique based on dual-pol (HH HV) SAR data is investigated in order to demonstrate its validity for forest height retrieval and thus show that PolInSAR is better able to meet the requirements of global-scale research. We extend the three-stage inversion process and coherence optimization algorithm to dual-pol PolInSAR. In addition, based on the random volume over ground model, a search method for finding the volume-only coherence on ambiguous line segments is proposed. Finally, the dual-pol PolInSAR technique is applied to forest height estimation using airborne L-band SAR data acquired by the E-SAR system over the Traunstein test site in Germany. The forest heights estimated by dual-pol PolInSAR are compared with those estimated using the full-pol mode and also with measurements made . The results show that dual-pol PolInSAR can obtain similar estimated forest heights to the full-pol mode and also that the search method for volume-only coherence retrieval can improve the inversion accuracy. The coefficient of determination for the relation between the dual-pol PolInSAR an- the measurements is 0.7287.
机译:到目前为止,大多数极化合成孔径雷达干涉仪(PolInSAR)研究都基于全极化(HH HV VH VV)SAR数据,该数据可以提供完整的极化信息,但与双极化相比,其幅值较小且空间分辨率较低( double-pol)数据。现有的一些研究涉及双极化PolInSAR。但是,这些工作并未执行相干优化过程,这可能会使反演变得不稳定。本文研究了基于双极化(HH HV)SAR数据的PolInSAR技术,以证明其在森林高度检索中的有效性,从而表明PolInSAR能够更好地满足全球规模研究的要求。我们将三阶段反演过程和相干优化算法扩展到双极化PolInSAR。另外,基于地面上的随机体积模型,提出了一种寻找模糊线段上仅体积相干性的搜索方法。最后,将双极化PolInSAR技术应用于通过E-SAR系统在德国Traunstein试验地点获得的机载L波段SAR数据进行森林高度估计。将双极化PolInSAR估计的森林高度与使用全极化模式估计的森林高度进行比较,并进行测量。结果表明,双极化PolInSAR可以得到与全极化模式相似的估计森林高度,而且仅体积相干检索的搜索方法可以提高反演精度。双极化PolInSAR测量之间的关系的确定系数为0.7287。

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