考虑成像系统辐射特性的微辐射热计FPA响应性测定

S. Gogler, G. Bieszczad, M. Krupiński
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引用次数: 1

摘要

在制造过程中,热成像仪及其红外阵列传感器需要经过校准程序和对入射辐射电压灵敏度的评估。校准程序在所谓的辐射照相机中尤其重要,在这种情况下,以物理单位给出的精确辐射量是一个问题。尽管非辐射照相机不可能达到如此高的标准,但它仍然很重要,图像忠实地代表了整个场景的温度变化。用于热像仪的探测器由红外发射光学系统发射的红外辐射照射。通常一个光学系统,当暴露于均匀朗伯源时,在其像面上形成不均匀的辐照分布。为了能够进行精确的非均匀性校正,必须正确预测来自均匀源的辐照分布。本文提出了一种考虑光学系统辐射特性的非均匀性校正方法。辐照分布的预测与实测辐照度值相矛盾。提出的辐射测量模型可以快速准确地进行非均匀性校正。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of the microbolometric FPA's responsivity with imaging system's radiometric considerations
Thermal imagers and used therein infrared array sensors are subject to calibration procedure and evaluation of their voltage sensitivity on incident radiation during manufacturing process. The calibration procedure is especially important in so-called radiometric cameras, where accurate radiometric quantities, given in physical units, are of concern. Even though non-radiometric cameras are not expected to stand up to such elevated standards, it is still important, that the image faithfully represents temperature variations across the scene. Detectors used in thermal camera are illuminated by infrared radiation transmitted through an infrared transmitting optical system. Often an optical system, when exposed to uniform Lambertian source forms a non-uniform irradiation distribution in its image plane. In order to be able to carry out an accurate non-uniformity correction it is essential to correctly predict irradiation distribution from a uniform source. In the article a non-uniformity correction method has been presented, that takes into account optical system’s radiometry. Predictions of the irradiation distribution have been confronted with measured irradiance values. Presented radiometric model allows fast and accurate non-uniformity correction to be carried out.
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