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DEM Generation with SAR Interferometry Based on Weighted Wavelet Phase Unwrapping

机译:基于加权小波展示的SAR干涉测量法生成DEM

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Synthetic aperture radar Interferometry (InSAR) is a significant 3D imaging technique to generate a Digital Elevation Model (DEM). The phase difference between the complex SAR images displays an interference fringe pattern from which the elevation of any point in the imaged terrain can be determined. Phase unwrapping is the most critical step in the signal processing of InSAR and especially in DEM generation. In this paper, a least squares weighted wavelet technique is used which overcomes the problem of slow convergence and the less-accurate Gauss-Seidel method. Here, by decomposing a grid to low-frequency and high-frequency components, the problem for a low-frequency component is solved. The technique is applied to ENVISAT ASAR images of Bam area. The experimental results compared with the Statistical-Cost Network Flow approach and the DEM generated from a 1/25000 scale map of the area shows the effectiveness of the proposed method.
机译:合成孔径雷达干涉测量(INSAR)是产生数字高度模型(DEM)的重要3D成像技术。复杂SAR图像之间的相位差显示有关的干涉条纹图案,可以确定成像地形中的任何点的仰角。相位展开是INSAR信号处理中最关键的步骤,尤其是在DEM生成中。在本文中,使用了最小二乘重量小波技术,其克服了慢收敛的问题和较低准确的高斯 - Seidel方法。这里,通过将网格分解到低频和高频分量,解决了低频分量的问题。该技术应用于BAM区域的Envisat Asar图像。实验结果与统计成本网络流动方法相比,该区域的1/25000刻度图产生的DEM显示了该方法的有效性。

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