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A simple indicator for estimating the noise level of a hyperspectral data cube for earth observation missions

机译:一个简单的指示器,用于估计用于地球观测任务的高光谱数据立方体的噪声水平

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摘要

A method for estimating the level of noise of a hyperspectral data cube is proposed. The method includes noise reduction using the Minimum Noise Fraction (MNF) transform and mapping the spectral dissimilarity between the pixels in the resulting noise-reduced radiance image, as well as in the original noisy radiance image, using the Spectral Angle Mapper (SAM) algorithm. Comparing the two maps, on a pixel by pixel basis, gives a value indicating the addition of noise to the spectrum of each pixel. An average value for the entire image is calculated, defined as the Image Noise Indicator (INI). In practice, this value indicates the quality of the data. Combining the INI value with the level of radiance enables estimating the Image Noise Level (INL). The method was applied and examined on a noisy synthetic image and then implemented for over 20 acquired images from different hyperspectral sensors and their noise level was estimated. Further examination showed that the INI value is independent of the heterogeneity of the hyperspectral data cube. The INI value, indicating the noise level, might increase as a geo-reference procedure is applied to hyperspectral data cube. The INI-INL can also be used as a quality indicator (QI) in the ongoing effort to objectively certify hyperspectral remote sensing images for practical usages. (C) 2016 IAA. Published by Elsevier Ltd. All rights reserved.
机译:提出了一种估计高光谱数据立方体噪声水平的方法。该方法包括使用最小噪声分数(MNF)变换进行降噪,并使用光谱角度映射器(SAM)算法在所得的降低噪声的辐射度图像以及原始噪声辐射度图像中映射像素之间的光谱差异。 。在逐个像素的基础上比较两个映射,得出一个值,该值指示将噪声添加到每个像素的光谱中。计算整个图像的平均值,定义为图像噪声指示符(INI)。实际上,该值指示数据的质量。将INI值与辐射水平结合起来可以估算图像噪声水平(INL)。该方法在嘈杂的合成图像上进行了应用和检查,然后针对来自不同高光谱传感器的20多个采集图像实施了该方法,并估计了它们的噪声水平。进一步的检查表明,INI值与高光谱数据立方体的异质性无关。指示噪声水平的INI值可能会随着对高光谱数据立方体应用地理参考过程而增加。 INI-INL还可以用作质量指标(QI),以不断进行客观认证以用于实际用途的高光谱遥感图像。 (C)2016 IAA。由Elsevier Ltd.出版。保留所有权利。

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