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首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Spectral Calibration of Hyperspectral Data Observed From a Hyperspectrometer Loaded on an Unmanned Aerial Vehicle Platform
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Spectral Calibration of Hyperspectral Data Observed From a Hyperspectrometer Loaded on an Unmanned Aerial Vehicle Platform

机译:从装载在无人机平台上的高光谱仪观察的高光谱数据的光谱校准

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摘要

Hyperspectral imaging has been widely applied in remote sensing scientific fields. For this study, hyperspectral imaging data covering the spectral region from 400 to 1000 nm were collected from an unmanned aerial vehicle visibleear-infrared imaging hyperspectrometer (UAV-VNIRIS). Theoretically, the spectral calibration parameters of the UAV-VNIRIS measured in the laboratory should be refined when applied to the hyperspectral data obtained from the UAV platform due to variations between the laboratory and actual flight environments. Therefore, accurate spectral calibration of the UAV-VNIRIS is essential to further applications of the hyperspectral data. Shifts in both the spectral center wavelength position and the full-width at half-maximum (FWHM) were retrieved using two different methods (Methods I and II) based on spectrum matching of atmospheric absorption features at oxygen bands near 760 nm and water vapor bands near 820 and 940 nm. Comparison of the spectral calibration results of these two methods over the calibration targets showed that the derived center wavelength and FWHM shifts are similar. For the UAV-VNIRIS observed data used here, the shifts in center wavelength derived from both Methods I and II over the three absorption bands are less than 0.13 nm, and less than 0.22 nm in terms of FWHM. The findings of this paper revealed: 1) the UAV-VNIRIS payload on the UAV platform performed well in terms of spectral calibration; and 2) the applied methods are effective for on-orbit spectral calibration of the hyper spectrometer.
机译:高光谱成像已广泛应用于遥感科学领域。对于这项研究,从无人飞行器可见/近红外成像高光谱仪(UAV-VNIRIS)收集了覆盖400至1000nm光谱区域的高光谱成像数据。从理论上讲,由于实验室环境和实际飞行环境之间的差异,当将其应用于从UAV平台获得的高光谱数据时,应该完善实验室中测量的UAV-VNIRIS的光谱校准参数。因此,UAV-VNIRIS的准确光谱校准对于高光谱数据的进一步应用至关重要。使用两种不同的方法(方法I和II)检索光谱中心波长位置和半峰全宽(FWHM)的位移,方法是基于在760 nm附近的氧带和水蒸气带处的大气吸收特征进行光谱匹配在820和940 nm附近。比较这两种方法在校准目标上的光谱校准结果,结果表明,得出的中心波长和FWHM位移相似。对于此处使用的UAV-VNIRIS观测数据,方法I和方法II在三个吸收带上得出的中心波长偏移小于0.13 nm,就FWHM而言小于0.22 nm。本文的发现表明:1)无人机平台上的无人机-VNIRIS有效载荷在光谱校准方面表现良好;和2)所应用的方法对于高光谱仪的在轨光谱校准是有效的。

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