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A Fast Superpixel Segmentation Algorithm for PolSAR Images Based on Edge Refinement and Revised Wishart Distance

机译:基于边缘细化和修正的Wishart距离的PolSAR图像超像素快速分割算法

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The superpixel segmentation algorithm, as a preprocessing technique, should show good performance in fast segmentation speed, accurate boundary adherence and homogeneous regularity. A fast superpixel segmentation algorithm by iterative edge refinement (IER) works well on optical images. However, it may generate poor superpixels for Polarimetric synthetic aperture radar (PolSAR) images due to the influence of strong speckle noise and many small-sized or slim regions. To solve these problems, we utilized a fast revised Wishart distance instead of Euclidean distance in the local relabeling of unstable pixels, and initialized unstable pixels as all the pixels substituted for the initial grid edge pixels in the initialization step. Then, postprocessing with the dissimilarity measure is employed to remove the generated small isolated regions as well as to preserve strong point targets. Finally, the superiority of the proposed algorithm is validated with extensive experiments on four simulated and two real-world PolSAR images from Experimental Synthetic Aperture Radar (ESAR) and Airborne Synthetic Aperture Radar (AirSAR) data sets, which demonstrate that the proposed method shows better performance with respect to several commonly used evaluation measures, even with about nine times higher computational efficiency, as well as fine boundary adherence and strong point targets preservation, compared with three state-of-the-art methods.
机译:作为一种预处理技术,超像素分割算法应在快速分割速度,准确的边界附着性和均匀规则性方面表现出良好的性能。通过迭代边缘细化(IER)的快速超像素分割算法在光学图像上效果很好。但是,由于强烈的斑点噪声和许多小尺寸或细长区域的影响,它可能会为极化合成孔径雷达(PolSAR)图像生成较差的超像素。为了解决这些问题,我们在不稳定像素的局部重新标记中使用了快速修正的Wishart距离而不是欧几里得距离,并在初始化步骤中将不稳定像素初始化为所有像素替换了初始网格边缘像素。然后,采用具有相似性度量的后处理来去除生成的小的孤立区域以及保留要点目标。最后,通过对来自实验合成孔径雷达(ESAR)和机载合成孔径雷达(AirSAR)数据集的四幅模拟和两幅真实世界PolSAR图像进行大量实验,验证了该算法的优越性,表明该方法具有较好的显示效果。与三种最先进的方法相比,几种常用评估方法的性能都更高,即使计算效率高出约九倍,边界依从性也很强,并且保留了重点目标。

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