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Calculating model for equivalent thermal defocus amount in infrared imaging system

机译:红外成像系统等效热散焦量计算模型

摘要

The main effect of temperature change on infrared imaging system is the focus shift of infrared lenses. This paper analyzes the equivalent influence on imaging between the temperature change and the defocus at room temperature. In order to quantify the equivalence, we define an equivalent thermal defocus amount (ETDA). The ETDA describes the distance of the photosensitive surface shifting at room temperature, which has the same effect on imaging as the temperature changes. To model the ETDA, the expression of the focal shift as a function of temperature is obtained by solving partial differential equations for the thermal effect on light path firstly with some approximations. Then point spread functions of the thermal effect and defocus at room temperature are modeled based on wave aberration. The calculating model of ETDA is finally established by making their PSFs equal under the condition that the cutoff frequency of infrared imaging systems is much smaller than that of infrared lens. The experimental results indicate that defocus of ETDA at room temperature has the same influence on imaging as the thermal effect. Prospectively, experiments at high/low temperature can be replaced by experiments at room temperature with ETDA.
机译:温度变化对红外成像系统的主要影响是红外透镜的焦点偏移。本文分析了室温下温度变化和散焦对成像的等效影响。为了量化等效性,我们定义了等效热散焦量(ETDA)。 ETDA描述了室温下感光表面移动的距离,这与温度变化对成像的影响相同。为了对ETDA进行建模,首先通过近似求解光程热效应的偏微分方程,得到焦点偏移随温度变化的表达式。然后基于波像差对室温下的热效应和散焦的点扩散函数进行建模。在红外成像系统的截止频率远小于红外透镜的截止频率的条件下,通过使它们的PSF相等,最终建立ETDA的计算模型。实验结果表明,ETDA在室温下散焦对成像的影响与热效应相同。可以用ETDA在室温下进行的实验来代替高温/低温下的实验。

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