Brauers Johannes, Schulte Nils, Aach Til
Institute of Imaging and Computer Vision, RWTH Aachen University, D-52056 Aachen, Germany.
IEEE Trans Image Process. 2008 Dec;17(12):2368-80. doi: 10.1109/TIP.2008.2006605.
Multispectral image acquisition considerably improves color accuracy in comparison to RGB technology. A common multispectral camera design concept features a filter-wheel consisting of six or more optical bandpass filters. By shifting the filters sequentially into the optical path, the electromagnetic spectrum is acquired through the channels, thus making an approximate reconstruction of the spectrum feasible. However, since the optical filters exhibit different thicknesses, refraction indices and may not be aligned in a perfectly coplanar manner, geometric distortions occur in each spectral channel: The reconstructed RGB images thus show rainbow-like color fringes. To compensate for these, we analyze the optical path and derive a mathematical model of the distortions. Based on this model we present two different algorithms for compensation and show that the color fringes vanish completely after application of our algorithms. We also evaluate our compensation algorithms in terms of accuracy and execution time.
与RGB技术相比,多光谱图像采集显著提高了色彩准确性。一种常见的多光谱相机设计理念是采用一个由六个或更多光学带通滤波器组成的滤光轮。通过将滤波器依次移入光路,电磁光谱通过各个通道被采集,从而使光谱的近似重建成为可能。然而,由于光学滤波器具有不同的厚度、折射率,并且可能无法以完美共面的方式对齐,因此在每个光谱通道中都会出现几何失真:由此重建的RGB图像会显示出彩虹般的彩色条纹。为了补偿这些失真,我们分析了光路并推导了失真的数学模型。基于此模型,我们提出了两种不同的补偿算法,并表明在应用我们的算法后彩色条纹完全消失。我们还从准确性和执行时间方面评估了我们的补偿算法。