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Collection and Corrections of Oblique Multiangle Hyperspectral Bidirectional Reflectance Imagery of the Water Surface

机译:水面倾斜多角度高光谱双向反射影像的采集与校正

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Hyperspectral images of coastal waters in urbanized regions were collected from fixed platform locations. Surf zone imagery, images of shallow bays, lagoons and coastal waters are processed to produce bidirectional reflectance factor (BRF) signatures corrected for changing viewing angles. Angular changes as a function of pixel location within a scene are used to estimate changes in pixel size and ground sampling areas. Diffuse calibration targets collected simultaneously from within the image scene provides the necessary information for calculating BRF signatures of the water surface and shorelines. Automated scanning using a pushbroom hyperspectral sensor allows imagery to be collected on the order of one minute or less for different regions of interest. Imagery is then rectified and georeferenced using ground control points within nadir viewing multispectral imagery via image to image registration techniques. This paper demonstrates the above as well as presenting how spectra can be extracted along different directions in the imagery. The extraction of BRF spectra along track lines allows the application of derivative reflectance spectroscopy for estimating chlorophyll-a, dissolved organic matter and suspended matter concentrations at or near the water surface. Imagery is presented demonstrating the techniques to identify subsurface features and targets within the littoral and surf zones.
机译:从固定平台地区收集城市化区域沿海水域的高光谱图像。冲浪区图像,浅滩,泻湖和沿海水域的图像被加工以产生用于改变观察角度的双向反射率因子(BRF)签名。作为场景内的像素位置的函数的角度变化用于估计像素大小和地面采样区域的变化。从图像场景中同时收集的漫反射校准目标提供了计算水面和海岸线的BRF签名的必要信息。自动扫描使用推频高光谱传感器允许图像为不同的感兴趣区域收集一分钟或更短的图像。然后使用Nadir在Nadir查看多光谱图像通过图像以图像配准技术进行整除和地理学使用地理参考。本文展示了上述情况,并且呈现如何沿图像中的不同方向提取光谱。沿轨道线的BRF光谱提取允许衍生物反射光谱施加用于在水表面或附近估计叶绿素-A,溶解的有机物质和悬浮物浓度的衍生物反射光谱。提出了图像,展示了识别沿着沿海和冲浪区域内的地下特征和目标的技术。

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