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Studies of the Spectral 'Crosstalk' in Two-Color IR Projection Systems

机译:双色红外投影系统中光谱“串扰”的研究

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In some of its infrared projection systems, the Kinetic Kill Vehicle Hardware-In-the-Loop Simulator (KHILS) facility uses two 512x512 Wideband Infrared Scene Projector (WISP) resistor arrays to stimulate two different camera wavebands at the same time. The images from the two arrays are combined with a dichroic beam combiner, allowing the two camera bands to be independently stimulated. In early tests it was observed that the projector bands were not completely independent. When one array was projecting, the projected pattern could be seen in the opposite camera band. This effect is caused by spectral "crosstalk" in the camera/projector system. The purpose of this study was to build a mathematical model of the crosstalk, validate the model with measurements of a 2-color projection system, and then use the model as a tool to determine the spectral characteristics of filters that would reduce the crosstalk. Measurements of the crosstalk were made in the KHILS 2-color projector with two different 2-color cameras. The KHILS Quantum Well Infrared Photodetector (QWIP) Mid-Wave (MW)/Long-Wave (LW) camera and the Army Research Laboratory HgCdTe (HCT) MW/LW camera were used in the tests. The model was used to analyze the measurements, thus validating the model at the same time. The model was then used to describe conceptual designs of new 2-color projection configurations, enabling a prediction of crosstalk in the system, and selection of filters that would eliminate the crosstalk.
机译:在其某些红外投影系统中,动能杀伤车辆硬件在环模拟器(KHILS)设施使用两个512x512宽带红外场景投影仪(WISP)电阻阵列同时刺激两个不同的摄像机波段。来自两个阵列的图像与一个二向色光束组合器组合在一起,从而可以独立地刺激两个相机波段。在早期测试中,观察到投影仪的波段不是完全独立的。当一个阵列投影时,可以在相反的摄像机波段看到投影的图案。这种影响是由摄像机/投影仪系统中的光谱“串扰”引起的。这项研究的目的是建立一个串扰的数学模型,通过对2色投影系统的测量来验证该模型,然后将该模型用作确定可减少串扰的滤波器光谱特性的工具。串扰的测量是在KHILS 2色投影仪中使用两个不同的2色相机进行的。测试中使用了KHILS量子阱红外光电探测器(QWIP)中波(MW)/长波(LW)相机和陆军研究实验室HgCdTe(HCT)MW / LW相机。该模型用于分析测量结果,从而同时验证模型。然后,该模型用于描述新的2色投影配置的概念设计,从而能够预测系统中的串扰,并选择可以消除串扰的滤波器。

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