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Segmentation of high-resolution multispectral image based on extended morphological profiles

机译:基于延长形态谱的高分辨率多光谱图像分割

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High-resolution multispectral remote sensing image provides both spectral and structural information about land cover/land use types. In segmentation of such complex image scenes with obvious texture, the efficient image segmentation is required. In this study, a method for high resolution image segmentation based on the extended morphological profiles is proposed. First, fundamental morphological vector operations (erosion and dilation) are defined by the extension, taking into account the spatial and spectral information in simultaneous fashion. Theoretical definitions of extended morphological operations are used in the formal definition of the concept of extended morphological profiles, which is constructed based on the repeated use of openings and closings by reconstruction with a structuring element (SE) of increasing size. Then, the morphological multiscale characteristic (MMC) of each pixel is gained through the derivative of the extended morphological profiles (DEMP). A modified method was proposed to obtain the right morphological characteristics of the pixel, which will be used for the final segmentation results. Finally, a simple region merging method based on the distance between two centroids of the neighboring regions was adopted to further improve the segmentation result. The proposed approach is applied to highresolution QuickBird multispectral images from urban, agricultural and forest areas for evaluation and comparison with existing methods, in terms of qualitative visual inspection and quantitative criteria. The proposed method demonstrated better performance than the classical morphological segmentation approaches.
机译:高分辨率多光谱遥感图像提供有关陆地覆盖/土地使用类型的光谱和结构信息。在具有明显纹理的这种复杂图像场景的分割中,需要有效的图像分割。在该研究中,提出了一种基于延长形态轮廓的高分辨率图像分割方法。首先,通过同时时尚的空间和光谱信息来定义基本形态矢量操作(侵蚀和扩张)。延长形态操作的理论定义用于延长形态剖面概念的正式定义,这是基于重复使用开口和闭合的构造,通过增加尺寸的结构元素(SE)。然后,通过延长形态轮廓(DEMP)的衍生物来获得每个像素的形态多尺度特征(MMC)。提出了一种改进的方法以获得像素的正确形态特征,其将用于最终的分段结果。最后,采用了一种基于相邻区域的两个质心之间的距离的简单区域合并方法来进一步改善分段结果。该拟议方法适用于来自城市,农业和森林地区的高度整容Quickbird MultiSpectral图像,以便在定性视觉检查和定量标准方面与现有方法进行评估和比较。所提出的方法比经典的形态分割方法表现出更好的性能。

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