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General Performance Evaluation on Thermal Imaging Systems with the Square Integral Method Based on MRTD Channel Width

机译:基于MRTD通道宽度的方形积分法的热成像系统一般性评价

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The Square Integral (SQI) Method based on MRTD (Minimum Resolvable Temperature Difference) is introduced for the design and evaluation of thermal imaging systems. It is well known that there exists an optimal angle magnification which can make optoelectronic imaging systems and human eye matching optimally, and make optoelectronic imaging systems attaining the optimal performance. Based on MRTD and channel width, a new way called SQI method is presented for evaluating the universal performance on thermal imaging systems, and attaining the optimal angle magnification or optimal viewing distance. The method can give a rational description for the matching between thermal imaging systems and human eye. Results calculated with this method are in agreement with experiment measurements quite perfectly. From the coherence between measurement data and theoretical predictions with variable detector size, optics focus, luminance and human vision, it appears that the SQI method is an excellent synthesized measure for the optimal angle magnification and the performance of thermal imaging systems.
机译:引入了基于MRTD(最小可分辨温度差)的方块积分(SQI)方法,用于热成像系统的设计和评估。众所周知,存在最佳的角度倍率,其可以使光电成像系统和人眼匹配最佳地,并制作实现最佳性能的光电成像系统。基于MRTD和频道宽度,提出了一种称为SQI方法的新方式,用于评估热成像系统上的通用性能,并达到最佳角度放大或最佳观看距离。该方法可以给出用于热成像系统和人眼之间的匹配的理性描述。采用该方法计算的结果与实验测量非常完美一致。从测量数据与可变探测器尺寸的理论预测之间的相干性,光学聚焦,亮度和人体视觉,SQI方法似乎是最佳角度放大的优异合成度量和热成像系统的性能。

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