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A Novel Method for Deformation Estimation Based on Multibaseline InSAR Phase Unwrapping

机译:基于多基线InSAR相位展开的变形估计新方法

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The three-pass differential synthetic aperture radar interferometry (DInSAR) is one of the approaches in radar interferometry applications for measuring the deformation of the earth surface. The conventional three-pass DInSAR needs a successful single-baseline (SB) phase unwrapping (PU) procedure on each interferogram to ensure accurate deformation monitoring. Because of the limitation of the phase continuity assumption, the SB PU becomes a challenging processing step when the study area has strong phase variation. In this paper, the multibaseline (MB) InSAR PU methodology, which can eliminate the phase continuity assumption by means of the baseline diversity, is transplanted into the conventional three-pass DInSAR domain. Based on MB PU, a novel terrain deformation estimation approach is developed. Both theoretical analysis and experimental results demonstrate that the proposed method is an effective surface deformation estimation method.
机译:三通差分合成孔径雷达干涉测量(DInSAR)是雷达干涉测量应用中用于测量地球表面变形的方法之一。常规的三遍DInSAR需要在每个干涉图上成功完成单基线(SB)相位展开(PU)程序,以确保精确的变形监测。由于相位连续性假设的限制,当研究区域具有强烈的相位变化时,SB PU成为具有挑战性的处理步骤。本文将多基线InSAR PU方法移植到常规的三遍DInSAR域中,该方法可以通过基线分集消除相位连续性假设。基于MB PU,开发了一种新颖的地形变形估计方法。理论分析和实验结果均表明,该方法是一种有效的表面变形估计方法。

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