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Geometric Calibration of Lens and Filter Distortions for Multispectral Filter-Wheel Cameras

机译:多光谱滤光轮相机的镜头几何校正和滤镜失真

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High-fidelity color image acquisition with a multispectral camera utilizes optical filters to separate the visible electromagnetic spectrum into several passbands. This is often realized with a computer-controlled filter wheel, where each position is equipped with an optical bandpass filter. For each filter wheel position, a grayscale image is acquired and the passbands are finally combined to a multispectral image. However, the different optical properties and non-coplanar alignment of the filters cause image aberrations since the optical path is slightly different for each filter wheel position. As in a normal camera system, the lens causes additional wavelength-dependent image distortions called chromatic aberrations. When transforming the multispectral image with these aberrations into an RGB image, color fringes appear, and the image exhibits a pincushion or barrel distortion. In this paper, we address both the distortions caused by the lens and by the filters. Based on a physical model of the bandpass filters, we show that the aberrations caused by the filters can be modeled by displaced image planes. The lens distortions are modeled by an extended pinhole camera model, which results in a remaining mean calibration error of only 0.07 pixels. Using an absolute calibration target, we then geometrically calibrate each passband and compensate for both lens and filter distortions simultaneously. We show that both types of aberrations can be compensated and present detailed results on the remaining calibration errors.
机译:使用多光谱相机进行高保真彩色图像采集,利用滤光器将可见电磁光谱分成几个通带。这通常是通过计算机控制的滤光轮实现的,其中每个位置都配备了光学带通滤光器。对于每个滤光轮位置,都会获取灰度图像,并且通带最终会组合为多光谱图像。但是,滤光片的不同光学特性和非共面排列会导致图像像差,因为每个滤光片轮位置的光路都略有不同。像在普通相机系统中一样,镜头会引起与波长有关的其他图像畸变,称为色差。当将具有这些像差的多光谱图像转换为RGB图像时,会出现彩色条纹,并且图像会出现枕形或桶形失真。在本文中,我们同时解决了由镜头和滤镜引起的失真。基于带通滤波器的物理模型,我们证明了由滤波器引起的像差可以通过位移的图像平面来建模。镜头变形是通过扩展的针孔相机模型建模的,这导致剩余的平均校准误差仅为0.07像素。然后使用绝对校准目标,对每个通带进行几何校准,并同时补偿透镜和滤镜的畸变。我们展示了两种像差均可得到补偿,并给出了剩余校准误差的详细结果。

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