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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Shadow Detection of Man-Made Buildings in High-Resolution Panchromatic Satellite Images
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Shadow Detection of Man-Made Buildings in High-Resolution Panchromatic Satellite Images

机译:高分辨率全色卫星图像中人造建筑物的阴影检测

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High-resolution satellite imagery is considered an excellent candidate for extracting information about the human activities on Earth. The information about residential development and suburban area mapping is of interest that can be obtained from these images. Shadow of structures such as man-made buildings is one of the main cues for structure detection in panchromatic high-resolution satellite imagery. However, to correctly exploit the information of the shadow in an image, the shadow needs to be detected and isolated first. In this paper, we propose a new algorithm for shadow detection and isolation of buildings in high-resolution panchromatic satellite imagery. The proposed algorithm is based on tailoring the traditional model of the geometric active contours such that the new model of the contours is systematically biased toward segmenting the shadow and the dark regions in the image. The systematic biasing in the proposed contour model is accomplished by novel encoding of the radiometric characteristics of the shadows regions. After detecting and segmenting the shadow and the dark regions in the image, further processing steps are introduced. The proposed postprocessing is based on selection of optimal threshold and a boundary complexity metric to distinguish the true shadows from the clutter. Experimental results are presented to validate the performance of the proposed algorithm on real high-resolution panchromatic satellite images.
机译:高分辨率卫星图像被认为是提取有关地球上人类活动信息的极佳候选者。可以从这些图像中获取有关住宅开发和郊区地图的信息。人造建筑物等结构的阴影是全色高分辨率卫星图像中结构检测的主要线索之一。但是,为了正确利用图像中阴影的信息,需要首先检测和隔离阴影。在本文中,我们提出了一种用于高分辨率全色卫星图像中建筑物的阴影检测和隔离的新算法。提出的算法基于剪裁几何主动轮廓的传统模型,从而使轮廓的新模型系统地偏向于分割图像中的阴影和暗区。提出的轮廓模型中的系统性偏差是通过对阴影区域的辐射特征进行新颖编码来实现的。在检测和分割图像中的阴影和暗区之后,引入进一步的处理步骤。所提出的后处理基于最佳阈值的选择和边界复杂度度量,以区分杂波中的真实阴影。提出了实验结果,以验证该算法在真实高分辨率全色卫星图像上的性能。

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