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A novel water index for urban high-resolution eight-band WorldView-2 imagery

机译:用于城市高分辨率八波段WorldView-2影像的新型水指数

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摘要

Land surface water mapping is one of the most important remote-sensing applications. However, water areas are spectrally similar and overlapped with shadow, making accurate water extraction from remote-sensing images still a challenging problem. This paper develops a novel water index named as NDWI-MSI, combining a new normalized difference water index ( NDWI) and a recently developed morphological shadow index ( MSI), to delineate water bodies from eight-band WorldView-2 imagery. The newly available bands ( e. g. coastal, yellow, red-edge, and near-infrared 2) of WorldView-2 imagery provide more potential for constructing new NDWIs derived from various band combinations. Through our testing, a new NDWI is defined in this study. In addition, MSI, a recently developed automatic shadow extraction index from highresolution imagery can be used to indicate shadow areas. The NDWI-MSI is created by combining NDWI and MSI, which is able to highlight water bodies and simultaneously suppress shadow areas. In experiments, it is shown that the new water index can achieve better performance than traditional NDWI, and even supervised classifiers, for example, maximum likelihood classifier, and support vector machine.
机译:地表水测绘是最重要的遥感应用之一。但是,水域在光谱上相似并且与阴影重叠,使得从遥感图像中准确提取水仍然是一个难题。本文开发了一种新的水指数NDWI-MSI,结合了新的归一化差异水指数(NDWI)和最近开发的形态学阴影指数(MSI),以从八波段WorldView-2影像中描绘出水体。 WorldView-2影像的新可用波段(例如,沿海,黄色,红边和近红外2波段)为构建由各种波段组合衍生的新NDWI提供了更大的潜力。通过我们的测试,本研究中定义了新的NDWI。此外,MSI是一种最近开发的来自高分辨率图像的自动阴影提取索引,可用于指示阴影区域。 NDWI-MSI是通过结合NDWI和MSI创建的,能够突出水体并同时抑制阴影区域。实验表明,新的水指数比传统的NDWI甚至监督分类器(例如,最大似然分类器和支持向量机)都具有更好的性能。

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