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首页> 外文期刊>Boletim de Ciências Geodésicas >DESHADOWING OF HIGH SPATIAL RESOLUTION IMAGERY APPLIED TO URBAN AREA DETECTION
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DESHADOWING OF HIGH SPATIAL RESOLUTION IMAGERY APPLIED TO URBAN AREA DETECTION

机译:应用于城市区域检测的高空间分辨率影像的阴影消除

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Different built-up structures usually lead to large regions covered by shadows, causing partial or total loss of information present in urban environments. In order to mitigate the presence of shadows while improving the urban target discrimination in multispectral images, this paper proposes an automated methodology for both detection and recovery of shadows. First, the image bands are preprocessed in order to highlight their most relevant parts. Secondly, a shadow detection procedure is performed by using morphological filtering so that a shadow mask is obtained. Finally, the reconstruction of shadow-occluded areas is accomplished by an image inpainting strategy. The experimental evaluation of our methodology was carried out in four study areas acquired from a WorldView-2 (WV-2) satellite scene over the urban area of ??S?o Paulo city. The experiments have demonstrated a high performance of the proposed shadow detection scheme, with an average overall accuracy up to 92%. Considering the results obtained by our shadow removal strategy, the pre-selected shadows were substantially recovered, as verified by visual inspections. Comparisons involving both VrNIR-BI and VgNIR-BI spectral indices computed from original and shadow-free images also attest the substantial gain in recovering anthropic targets such as streets, roofs and buildings initially damaged by shadows.
机译:不同的建筑结构通常会导致大区域被阴影覆盖,从而导致城市环境中存在的信息部分或全部丢失。为了减轻阴影的存在,同时改善多光谱图像中的城市目标辨别力,本文提出了一种用于阴影的检测和恢复的自动化方法。首先,对图像带进行预处理,以突出显示它们最相关的部分。其次,通过使用形态学滤波执行阴影检测过程,从而获得阴影掩模。最后,通过图像修复策略完成阴影遮挡区域的重建。我们的方法的实验评估是在从圣保罗市市区的WorldView-2(WV-2)卫星场景获得的四个研究区域中进行的。实验证明了所提出的阴影检测方案具有很高的性能,平均总体准确度高达92%。考虑到我们的阴影去除策略所获得的结果,通过视觉检查验证,基本上可以恢复预先选择的阴影。从原始图像和无阴影图像计算得出的涉及VrNIR-BI和VgNIR-BI光谱指数的比较,也证明了在恢复最初受到阴影破坏的人类目标(例如街道,屋顶和建筑物)方面的巨大收益。

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