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Shortwave Infrared for Night Vision Applications - Illumination levels and sensor performance

机译:夜视应用的短波红外-照明水平和传感器性能

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Radiation created by stimulation and recombination/deactivation of atoms and molecules in the higher earth atmosphere is called nightglow. This nightglow can be found in the spectral range from the ultraviolet up to the thermal infrared, with a maximum in the shortwave infrared (SWIR). During moonless nights the illumination in the SWIR is by an order of magnitude higher than the visual one. Within the last years the SWIR sensor technology improved to a level of using the nightglow for night vision applications. This necessitates understanding of the highly variable illumination levels created by the nightglow and the performance assessment of the SWIR detectors in comparison to the image intensifiers respectively Si focal plane array detectors. Whereas the night illumination levels for the visual are standardized, corresponding ones for the SWIR are missing. IOSB started measuring and comparing night illumination levels and camera performance in both spectral ranges based on continuous illumination measurements as well as recording imagery of reflectance reference targets with cameras and analyzing the resulting signal-to-noise ratios. To date the number of illumination measurements are not yet statistically sufficient to standardize the levels, but at least allowed a first comparison of the two technologies for moonless night, clear sky conditions. With comparable F-number, integration time and frame rate, the SWIR sensors available in Europe were found to be inferior to the visual technology. An improvement of at least one magnitude would be necessary to ensure similarity between SWIR and visual technologies for all environmental conditions.
机译:由高地球大气中的原子和分子的刺激和重组/失活产生的辐射称为夜光。这种夜光可以在从紫外线到热红外的光谱范围内找到,而在短波红外(SWIR)中最大。在无月的夜晚,SWIR中的照明比视觉上的照明高一个数量级。在过去的几年中,SWIR传感器技术提高到了将夜光用于夜视应用的水平。与图像增强器(分别为Si焦平面阵列检测器)相比,这需要了解由夜光产生的高度可变的照明水平以及SWIR检测器的性能评估。视觉的夜间照明水平是标准化的,而SWIR则没有相应的夜间照明水平。 IOSB开始在连续光谱测量的基础上,在两个光谱范围内测量和比较夜间照明水平和照相机性能,并使用照相机记录反射率参考目标的图像并分析所得信噪比。迄今为止,照度测量的数量在统计上尚不足以对水平进行标准化,但至少可以对无月夜,晴朗天空条件下的两种技术进行首次比较。由于具有可比的F值,积分时间和帧速率,因此发现在欧洲可获得的SWIR传感器不如视觉技术。为了确保SWIR和视觉技术在所有环境条件下的相似性,至少需要提高一个幅度。

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