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Setup for characterising the spectral responsivity of Fabry-Perot-interferometer-based hyperspectral cameras

机译:用于表征法布里 - 珀罗干涉仪的高光谱相机的光谱响应度的设置

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摘要

Hyperspectral cameras capture the spectral power distribution of the objects in the imaged view via dozens of narrow-band spectral channels of the camera. Knowledge of the spectral responsivity of the channels is essential when interpreting the acquired hyperspectral data and assessing its reliability. The spectral responsivity of the camera channels may vary within the image area. This paper presents a measurement setup and data analysis routine for characterising the spectral responsivity of a hyperspectral camera. This method was used to characterise the spectral responsivity of a Fabry-Perot-interferometer-based hyperspectral camera. The characterisation method implemented in this study was able to reveal several channel leaks in the measured wavelength range. In the image area there is an approximately 1.5 nm shift in the channel wavelengths, and up to 10% variation in the channel bandwidths. The expanded uncertainties (k = 2) for the measured channel bandwidths, sensitivities and wavelengths were 7.9%, 9.5% and 0.64 nm, respectively.
机译:高光谱相机通过相机的数十个窄带谱通道捕获成像视图中对象的光谱功率分布。当解释所获取的超光谱数据并评估其可靠性时,通道的光谱响应度的知识是必不可少的。相机通道的光谱响应度可以在图像区域内变化。本文介绍了测量设置和数据分析程序,用于表征高光谱相机的光谱响应度。该方法用于表征法布里 - 珀罗干涉仪的高光谱相机的光谱响应度。本研究中实现的表征方法能够揭示测量波长范围内的若干信道泄漏。在图像区域中,信道波长的频率大约1.5nm偏移,通道带宽的变化高达10%。测量通道带宽,敏感度和波长的扩展不确定性(K = 2)分别为7.9%,9.5%和0.64nm。

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