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Wavelet-FFT Filter Applied to Non Uniformity Correction in Infrared Imaging System

机译:小波-FFT滤波器在红外成像系统中应用于非均匀性校正

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In this paper, we use the recently presented wavelet-FFT filter [1] to reduce the nonuniformity noise that affect almost all infrared imaging systems. The wavelet-FFT filter was originally developed to compensate the one-dimensional noise known as stripping noise. We perform an extension of this methodology in order to compensate the two-dimensional noise that degrades infrared imagery. The principal hypothesis of this work is that the two-dimensional focal-plane array can be considered as the composition of vertical and horizontal one-dimensional array sensors. Under this assumption we use a specific design of the wavelet filter to synthesize a replica of the two-dimensional noise and then recover the real incident radiation. The method is evaluated using real mid- and long-wave infrared data from two cameras. The results show the promising performance of the wavelet-FFT filter when is applied in infrared imaging system such as self heating effect.
机译:在本文中,我们使用最近呈现的小波-FFT滤波器[1]降低影响几乎所有红外成像系统的不均匀噪声。最初开发了小波-FFT滤波器以补偿称为剥离噪声的一维噪声。我们执行该方法的扩展,以补偿降低红外图像的二维噪声。这项工作的主要假设是二维焦平面阵列可以被认为是垂直和水平一维阵列传感器的组成。在此假设下,我们使用小波滤波器的特定设计来合成二维噪声的复制品,然后恢复实际事件辐射。使用来自两个摄像机的实际中频和长波红外数据进行评估该方法。结果表明,当在自加热效果的红外成像系统中应用时,小波-FFT过滤器的有希望的性能。

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