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首页> 外文期刊>Journal of spectroscopy >Background Radiance Estimation for Gas Plume Quantification for Airborne Hyperspectral Thermal Imaging
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Background Radiance Estimation for Gas Plume Quantification for Airborne Hyperspectral Thermal Imaging

机译:机载高光谱热成像气体羽流量化的背景辐射估计

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Hyperspectral imaging in the long-wave infrared (LWIR) is a mean that is proving its worth in the characterization of gaseous effluent. Indeed the spectral and spatial resolution of acquisition instruments is steadily decreasing, making the gases characterization increasingly easy in the LWIR domain. The majority of literature algorithms exploit the plume contribution to the radiance corresponding to the difference of radiance between the plume-present and plume-absent pixels. Nevertheless, the off-plume radiance is unobservable using a single image. In this paper, we propose a new method to retrieve trace gas concentration from airborne infrared hyperspectral data. More particularly the outlined method improves the existing background radiance estimation approach to deal with heterogeneous scenes corresponding to industrial scenes. It consists in performing a classification of the scene and then applying a principal components analysis based method to estimate the background radiance on each cluster stemming from the classification. In order to determine the contribution of the classification to the background radiance estimation, we compared the two approaches on synthetic data and Telops Fourier Transform Spectrometer (FTS) Imaging Hyper-Cam LW airborne acquisition above ethylene release. We finally show ethylene retrieved concentration map and estimate flow rate of the ethylene release.
机译:长波红外(LWIR)中的高光谱成像是证明其在气态流出物表征中的价值的手段。实际上,采集仪器的光谱和空间分辨率正在稳步下降,这使得在LWIR域中进行气体表征变得越来越容易。大多数文献算法利用羽流对辐射的贡献,该羽流与羽流存在像素和无羽流像素之间的辐射率差异相对应。但是,使用单个图像无法观察到异物辐射。在本文中,我们提出了一种从机载红外高光谱数据中检索痕量气体浓度的新方法。更具体地,概述的方法改进了现有的背景辐射率估计方法,以处理与工业场景相对应的异构场景。它包括对场景进行分类,然后应用基于主成分分析的方法来估计基于分类的每个聚类上的背景辐射。为了确定分类对本底辐射估计的贡献,我们比较了合成数据和Telos傅里叶变换光谱仪(FTS)成像高于乙烯释放的Hyper-Cam LW机载采集的两种方法。我们最终显示了乙烯回收的浓度图,并估算了乙烯释放的流速。

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