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Directionally Adaptive Filter for Synthetic Aperture Radar Interferometric Phase Images

机译:合成孔径雷达干涉相位图像的方向自适应滤波器

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摘要

The obvious directionality inherent in interferometric synthetic aperture radar interferograms allows noise to be filtered very effectively along the fringe direction, leaving the fringe phase undamaged. This paper proposes a highly reliable method for the simultaneous estimation of the direction and density of interferograms, on the basis of which a directionally adaptive filter (DAF) is further proposed. Compared with existing filters, the DAF has a filter window whose direction is able to vary continuously with the fringe direction. The window length and width can be varied adaptively with the fringe density: a large window achieves better filtering results when the fringes are sparse, whereas a small window is better able to preserve the phase detail when they are dense. The processing results of both simulated and real data demonstrate that the DAF effectively eliminates noise and preserves detailed fringe information because its filter window performs adaptively in terms of both direction and size.
机译:干涉式合成孔径雷达干涉图中固有的明显方向性使噪声可以沿着条纹方向非常有效地被滤除,而条纹相位没有受到损害。本文提出了一种同时估计干涉图的方向和密度的高度可靠的方法,并在此基础上进一步提出了方向自适应滤波器(DAF)。与现有滤镜相比,DAF具有滤镜窗口,其方向能够随条纹方向连续变化。窗口的长度和宽度可以随条纹密度而自适应地变化:当条纹稀疏时,大窗口可获得更好的滤波效果,而小的窗口在密集时可以更好地保留相位细节。模拟数据和真实数据的处理结果表明,DAF有效地消除了噪声并保留了详细的条纹信息,因为它的滤波器窗口在方向和大小方面都具有自适应性。

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