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New Methods in Multibaseline Polarimetric SAR Interferometry Coherence Optimization

机译:多基线极化SAR干涉测量相干优化的新方法

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摘要

A new extension method in the equal scattering mechanism (ESM) from single baseline to multibaseline (MB) for polarimetric synthetic aperture radar interferometry (PolInSAR) coherence optimization is proposed in this letter. However, despite this, this new method and the traditional available methods such as Best, ESM, MB-ESM, and suboptimum scattering mechanism have their disadvantages in the framework of differential interferometric SAR (DInSAR) applications. The ESM method cannot guarantee the global maximum in theory and just optimizes an approximation formula of the original coherence definition, which leads to a deviation. The method using exhaustive search polarimetric optimization (ESPO) must search four parameters one by one in a defined step size and cost the main computational drawback. Focusing on the disadvantage of these methods, this letter proposes another new method to transform the 4-D optimization problem into two independent 2-D problems, which costs less time than that by ESPO with basically the same accuracy. Seven full polarimetric RADARSAT-2 images are taken for experiment, and the results show that this new method has a better effect in computation time and accuracy for DInSAR applications.
机译:本文提出了一种在等散射机制(ESM)中从单基线扩展到多基线(MB)的新方法,用于极化合成孔径雷达干涉测量(PolInSAR)相干优化。然而,尽管如此,这种新方法以及诸如Best,ESM,MB-ESM和次最佳散射机制之类的传统可用方法在差分干涉SAR(DInSAR)应用框架中仍具有其缺点。 ESM方法不能在理论上保证全局最大值,而只能优化原始相干定义的近似公式,从而导致偏差。使用穷举搜索极化优化(ESPO)的方法必须在定义的步长中一个接一个地搜索四个参数,并且会浪费主要的计算缺陷。着眼于这些方法的缺点,这封信提出了另一种将4-D优化问题转换为两个独立的2-D问题的新方法,与ESPO相比,其花费的时间基本相同。拍摄了七张全极化RADARSAT-2图像进行实验,结果表明,该新方法在DInSAR应用中具有更好的计算时间和精度。

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