SAR interferometrie phase filtering based on wavelet transform and local frequency estimation

Fangfang Li, X. Lin, Yueting Zhang, Donghui Hu, Lijia Huang, C. Ding
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引用次数: 2

Abstract

A novel approach combining the local frequency estimation with wavelet transform is presented to reduce interferometric phase noise for InSAR. First, the maximum likelihood estimator is used to obtain the frequency range of the noisy interferogram. Then, the wavelet transform is employed to obtain the wavelet coefficients of the real and imaginary parts of the complex interferogram. For the wavelet coefficients within the estimated frequency range and that out of the range, the NeighShrink and VisuShrink methods are employed respectively to shrink them. As a result, the noise can be effectively filtered without the loss of detailed information of the interferogram based on the advantages of the two shrinkage methods. The performance of noise reduction and fringe preservation is verified by the experiments with real interferogram.
基于小波变换和局部频率估计的SAR干涉相位滤波
提出了一种将局部频率估计与小波变换相结合的方法来降低InSAR干涉相位噪声。首先,利用极大似然估计得到噪声干涉图的频率范围。然后,利用小波变换得到复干涉图实部和虚部的小波系数。对于估计频率范围内的小波系数和估计频率范围外的小波系数,分别采用neighborshrink和VisuShrink方法进行收缩。基于两种收缩方法的优点,可以在不损失干涉图详细信息的情况下有效滤除噪声。通过实际干涉图的实验验证了该方法的降噪和条纹保留性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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