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Simulation and evaluation of stray radiation from optical window effects on infrared detection system

机译:红外检测系统光窗效应谱辐射仿真与评价

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摘要

Stray radiation analysis is a special radiation transport problem characterizing the directional propagation and small probability simulation. The computational cost increases significantly when lens or optical windows exist in the optical system, due to the simulation requirement for ray transmission in the semi-transparent medium. For the high-temperature optical window outside of the hypersonic vehicle etc., the infrared radiation from window becomes the main stray radiation and reduces the detection or image quality adversely. To fulfil the infrared stray radiation analysis for such optical system and improve the efficiency, an equivalent model of infrared emission for the optical window is presented. According to the simulation of ray generation and propagation in the optical window, the equivalent model is built combining the distributions of launch point and direction for the infrared stray radiation. Then, a simplified infrared optical detection system is taken to verify the presented equivalent model. The infrared stray radiation flux and direction distribution are recorded on the entrance pupil plane of the optical system using Monte Carlo method. The results show that the infrared stray radiation analysis method, employing the equivalent model of infrared emission, is reliable and more effective.
机译:杂散辐射分析是一种特殊的辐射运输问题,其特征在于方向传播和小概率模拟。当光学系统中存在镜头或光窗时,计算成本显着增加,由于半透明介质中的光线传输的仿真要求。对于超声波载体等外的高温光学窗口,来自窗口的红外辐射成为主流散射辐射,并对检测或图像质量降低不利。为了满足这种光学系统的红外线流辐射分析并提高效率,提出了光学窗口的相同模型。根据光学窗口中的射线生成和传播的模拟,基于红外线辐射的发射点和方向的分布构建了等效模型。然后,采用简化的红外光学检测系统来验证所呈现的等效模型。使用Monte Carlo方法记录在光学系统的入口瞳孔平面上的红外线辐射助线通量和方向分布。结果表明,采用相同模型的红外发射模型的红外线流浪辐射分析方法可靠,更有效。

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