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Evaluation and Display of Polarimetric Image Data Using Long-Wave Cooled Microgrid Focal Plane Arrays

机译:使用长波冷却微网格焦平面阵列评估和显示偏振图像数据

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Recent developments for Long Wave InfraRed (LWIR) imaging polarimeters include incorporating a micro-grid polarizer array onto the focal plane array (FPA). Inherent advantages over typical polarimeters include packaging and instantaneous acquisition of thermal and polarimetric information. This allows for real time video of thermal and polarimetric products. The microgrid approach has inherent polarization measurement error due to the spatial sampling of a non-uniform scene, residual pixel to pixel variations in the gain corrected responsivity and in the noise equivalent input (NEI), and variations in the pixel to pixel micro-polarizer performance. The Degree of Linear Polarization (DoLP) is highly sensitive to these parameters and is consequently used as a metric to explore instrument sensitivities. Image processing and fusion techniques are used to take advantage of the inherent thermal and polarimetric sensing capability of this FPA, providing additional scene information in real time. Optimal operating conditions are employed to improve FPA uniformity and sensitivity. Data from two DRS Infrared Technologies, L.P. (DRS) microgrid polarizer HgCdTe FPAs are presented. One FPA resides in a liquid nitrogen (LN2) pour filled dewar with a 80° K nominal operating temperature. The other FPA resides in a cryogenic (cryo) dewar with a 60° K nominal operating temperature.
机译:长波红外(LWIR)成像旋光仪的最新发展包括将微栅格偏振器阵列整合到焦平面阵列(FPA)上。与典型的旋光仪相比,固有的优势包括封装以及即时获取热和极化信息。这样就可以实时观看热和极化产品的视频。由于不均匀场景的空间采样,增益校正后的响应度和噪声等效输入(NEI)中残留的像素到像素变化以及像素到像素微偏振器的变化,微网格方法具有固有的偏振测量误差。性能。线性极化度(DoLP)对这些参数高度敏感,因此被用作衡量仪器灵敏度的指标。图像处理和融合技术用于利用此FPA固有的热感和极化感测功能,实时提供其他场景信息。采用最佳操作条件来改善FPA的均匀性和灵敏度。显示了来自两个DRS红外技术有限公司(DRS)微格栅偏振器HgCdTe FPA的数据。一种FPA驻留在标称工作温度为80°K的液态氮(LN2)倒杜瓦瓶中。另一个FPA驻留在标称工作温度为60°K的低温(低温)杜瓦瓶中。

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