InSAR interferogram filtering methods in the contourlet domain

C. Zhu, H. Fan, K. Deng, Jiqun Xue
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Abstract

The interferogram contains much noise which reduce the precision when phase unwrapping. In this paper, we filter the interferogram in the contourlet domain. The contourlet transform (CT) has flexible aspect ratios and can effectively capture geometry information of interferogram edges. However, the CT is lack of the feature of translation invariance. Hereby we study the cycle-spinning CT (CSCT) to convert the commonly CT to translation invariance. Firstly, we translate the original interferogram before being decomposed. Secondly, we decompose the translated interferogram using the CT, and modify the coefficients. Finally, we reconstructed the interferogram with the modified coefficients and translate back. In the experimentation, the data is selected both from the plain and mountain area. The results show that the CSCT outperform the discrete wavelet transform (DWT), the CT in terms of the residues number and the mean value of the correlation coefficient. In texture retrieval, the CSCT shows improvements in performance for various oriented texture and the results indicate a better compromise between noise removal and the detail preservation. Besides, in the mountain area, the CSCT performed well than in the plain area because there is more texture in the mountain area.
InSAR干涉图的轮廓波域滤波方法
干涉图中含有较多的噪声,降低了相位展开的精度。本文在contourlet域中对干涉图进行滤波。轮廓波变换(contourlet transform, CT)具有灵活的宽高比,能有效捕获干涉图边缘的几何信息。然而,CT缺乏平移不变性的特点。在此,我们研究了循环旋转CT (CSCT),将普通CT转化为平移不变性。首先对原始干涉图进行平移,然后进行分解。其次,利用CT对平移后的干涉图进行分解,并对系数进行修正。最后,利用修正后的系数重建干涉图并进行反平移。在实验中,数据分别取自平原和山区。结果表明,CSCT在残差数和相关系数均值方面优于离散小波变换(DWT)和CT。在纹理检索中,CSCT在不同方向纹理检索中表现出较好的性能,结果表明CSCT在去除噪声和保留细节之间取得了更好的折衷。此外,在山区,由于山区纹理较多,CSCT在平原地区表现较好。
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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