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Enhanced facial recognition for thermal imagery using polarimetric imaging

机译:使用偏振成像增强了用于热成像的面部识别

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We present a series of long-wave-infrared (LWIR) polarimetric-based thermal images of facial profiles in which polarization-state information of the image-forming radiance is retained and displayed. The resultant polarimetric images show enhanced facial features, additional texture, and details that are not present in corresponding conventional thermal imagery. It has been generally thought that conventional thermal imagery (MidIR or LWIR) could not produce the detailed spatial information required for reliable human identification due to the so-called "ghosting" effect often seen in thermal imagery of human subjects. By using polarimetric information, we are able to extract subtle surface features of the human face, thus improving subject identification. Polarimetric image sets considered include the conventional thermal intensity image, S0, the two Stokes images, S1 and S2, and a Stokes image product called the degree-of-linear-polarization image.
机译:我们提出了一系列基于长波红外(LWIR)偏振的热像图,其中保留并显示了成像辐射的偏振态信息。所得的偏振图像显示出增强的面部特征,额外的纹理以及相应的常规热成像中不存在的细节。通常认为,由于通常在人类对象的热成像中看到的所谓的“重影”效应,常规的热成像(MidIR或LWIR)无法产生可靠的人类识别所需的详细空间信息。通过使用极化信息,我们能够提取人脸的细微表面特征,从而改善主题识别。所考虑的偏振图像集包括常规的热强度图像S0,两个斯托克斯图像S1和S2,以及称为线性偏振度图像的斯托克斯图像乘积。

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