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Stray light analysis of catadioptric long-wavelength infrared optical system

机译:折反射长波长红外光学系统的杂散光分析

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A hood for the system is designed for the characteristics of the catadioptric long-wave infrared optical system. The optical mechanical structure model of the system was established in the stray light analysis software Tracepro. The external stray light is analyzed and calculated by ray tracing, and the PST curve of the system is given. According to the thermal noise of the detector and the influence of solar stray light, the requirements of the system PST are proposed. Calculated the stray light of the sky background, the relationship between the thermal noise of the radiation surface of the system reaching the detector target surface and the temperature is given when the temperature range is 260K~320K. The analysis results show that when the off-axis angle is greater than the critical angle of incidence of the sun, the PST value is less than 10-8, which meets the requirements. The heat radiation inside the system also gradually increases with the increase of temperature. To realize the background limit detection of weak targets, the system needs to be cooled.
机译:该系统的遮光罩是根据反射折射长波红外光学系统的特性设计的。在杂散光分析软件Tracepro中建立了系统的光学机械结构模型。通过光线跟踪分析和计算外部杂散光,并给出系统的PST曲线。根据探测器的热噪声和太阳杂散光的影响,提出了系统PST的要求。计算出天空背景的杂散光,在温度范围为260K〜320K时,给出了到达探测器目标表面的系统辐射面的热噪声与温度的关系。分析结果表明,当偏轴角大于太阳的入射临界角时,PST值小于10-8,符合要求。系统内部的散热也随着温度的升高而逐渐增加。为了实现弱目标的背景极限检测,需要对系统进行冷却。

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