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MST-based stepwise connection strategies for multipass Radar data, with application to coregistration and equalization

机译:基于MST的多通道雷达数据逐步连接策略,应用于共成和均衡

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This paper proposes a unified framework for predicting optimized pairing strategies for interferometric processing of multipass synthetic aperture radar data. The approach consists in a minimum spanning tree (MST) structure based on a distance function encoding an a priori model for the interferometric quality of each image pair. Using a distance function modeled after the interferometric coherence allows reproducing many "small baseline" strategies presented in the recent literature. A novel application of the method to the processing steps of image coregistration and equalization is illustrated, using a test European Remote Sensing Satellite dataset. Widespread methods used for these two operations rely on the computation of the amplitude cross correlation over a large number of corresponding tie patches distributed over the scene. Geometric shift and radiometric equalization parameters are estimated over the patches and used, respectively, within a polynomial warp model and a radiometric correction scheme. The number of reliable patches available behaves similarly to the interferometric synthetic aperture radar (InSAR) coherence with respect to the baselines, and can be assimilated to a quality figure for the derivation of the MST. Results show an improvement in the quality of the stepwise (SW)-processed image stack with respect to the classical single-master procedure, confirming that the SW approach is able to provide better conditions for the estimation of correlation-related InSAR parameters.
机译:本文提出了一个统一的框架,用于预测多通道合成孔径雷达数据干涉测量的优化配对策略。该方法包括基于距离函数的最小生成树(MST)结构,该距离函数编码用于每个图像对的干涉质量的先验模型。使用在干涉相干之后建模的距离函数可以重现最近文献中提出的许多“小基线”策略。使用测试的欧洲遥感卫星数据集,说明了该方法在图像融合和均衡处理步骤中的新颖应用。用于这两个操作的广泛方法依赖于分布在场景上的大量相应联系补丁上幅度互相关的计算。在样片上估计几何位移和辐射均衡参数,并分别在多项式翘曲模型和辐射校正方案中使用。相对于基线,可用的可靠补丁的数量与干涉式合成孔径雷达(InSAR)相干性相似,并且可以与用于推导MST的质量指标相提并论。结果表明,相对于经典的单原版过程,逐步处理(SW)的图像堆栈的质量得到了改善,这证实了SW方法能够为估计与相关相关的InSAR参数提供更好的条件。

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