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Face recognition in the thermal infrared domain

机译:在热红外域中的人脸识别

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Biometrics refers to unique human characteristics. Each unique characteristic may be used to label and describe individuals and for automatic recognition of a person based on physiological or behavioural properties. One of the most natural and the most popular biometric trait is a face. The most common research methods on face recognition are based on visible light. State-of-the-art face recognition systems operating in the visible light spectrum achieve very high level of recognition accuracy under controlled environmental conditions. Thermal infrared imagery seems to be a promising alternative or complement to visible range imaging due to its relatively high resistance to illumination changes. A thermal infrared image of the human face presents its unique heat-signature and can be used for recognition. The characteristics of thermal images maintain advantages over visible light images, and can be used to improve algorithms of human face recognition in several aspects. Mid-wavelength or far-wavelength infrared also referred to as thermal infrared seems to be promising alternatives. We present the study on 1:1 recognition in thermal infrared domain. The two approaches we are considering are stand-off face verification of non-moving person as well as stop-less face verification on-the-move. The paper presents methodology of our studies and challenges for face recognition systems in the thermal infrared domain.
机译:生物识别学是指独特的人类特征。每个独特的特征可用于标记和描述个体并根据生理或行为特性自动识别人。最自然和最受欢迎的生物特征之一是一张脸。人脸识别最常见的研究方法基于可见光。在可见光谱中运行的最先进的面部识别系统在受控环境条件下实现了非常高的识别精度。由于其对照明变化的相对高的耐受性,热红外图像似乎是可见的替代或对可见范围成像的替代方案。人脸的热红外图像呈现其独特的热签名,可用于识别。热图像的特征对可见光图像的优点保持优势,并且可用于改善几个方面的人类面部识别算法。中波长或远波长红外线也称为热红外似乎是有前途的替代方案。我们在热红外域1:1识别上展示了研究。我们正在考虑的两种方法是对非运动人员的脱离面验证,以及移动的不间断的面部验证。本文介绍了我们在热红外域中的人脸识别系统的研究和挑战的方法。

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