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Radiometric calibration method for large aperture infrared system with broad dynamic range

机译:大孔径动态范围大口径红外系统的辐射定标方法

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Infrared radiometric measurements can acquire important data for missile defense systems. When observation is carried out by ground-based infrared systems, a missile is characterized by long distance, small size, and large variation of radiance. Therefore, the infrared systems should be manufactured with a larger aperture to enhance detection ability and calibrated at a broader dynamic range to extend measurable radiance. Nevertheless, the frequently used calibration methods demand an extended-area blackbody with broad dynamic range or a huge collimator for filling the system's field stop, which would greatly increase manufacturing costs and difficulties. To overcome this restriction, a calibration method based on amendment of inner and outer calibration is proposed. First, the principles and procedures of this method are introduced. Then, a shifting strategy of infrared systems for measuring targets with large fluctuations of infrared radiance is put forward. Finally, several experiments are performed on a shortwave infrared system with Phi 400 mm aperture. The results indicate that the proposed method cannot only ensure accuracy of calibration but have the advantage of low cost, low power, and high motility. Hence, it is an effective radiometric calibration method in the outfield. (C) 2015 Optical Society of America
机译:红外辐射测量可以获取导弹防御系统的重要数据。用地面红外系统进行观察时,导弹的特点是距离长,尺寸小,辐射率变化大。因此,红外系统的制造应具有更大的孔径以增强检测能力,并应在更宽的动态范围内进行校准以扩展可测量的辐射率。然而,经常使用的校准方法需要具有宽动态范围的大面积黑体或用于填充系统现场光阑的大型准直仪,这将大大增加制造成本和难度。为了克服这一限制,提出了一种基于内外校正修正的校正方法。首先,介绍此方法的原理和过程。然后,提出了一种用于测量红外辐射波动较大的目标的红外系统转移策略。最后,在具有400毫米Phi孔径的短波红外系统上进行了一些实验。结果表明,该方法不仅可以保证校正的准确性,而且具有成本低,功耗低,机动性强的优点。因此,它是外场中有效的辐射校准方法。 (C)2015年美国眼镜学会

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