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On filters making an imaging sensor more colorimetric

机译:在过滤器上制作成像传感器更多色度

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It is well understood that the color values from a digital camera are functions of the camera's spectral sensitivities, the reflectances of the objects in the scene as well as illumination and any filter that is placed between the object and the sensor. It is vital to select the correct illumination to optimize a color reproduction pipeline. In practice, the choice of the illumination is limited to the spectra of available light sources. In this paper, we optimize a camera's colorimetric performance by theoretically mounting a filter to the lens. An ideal spectrum of the filter is obtained using the Luther optimization condition. By using variational calculus we reduce the optimization problem to a system of non linear equations on a Lie group. We solve the system of equations by applying Newton's method on a Lie group with a left invariant Riemannian structure. As expected from the literature, our experiments show quadratic convergence. A second approach is a redesign of the set-up. This redesign gives us a quadratic optimization problem that is easier to solve. Constraints to this optimization problem gives us control on the transparency of the filter.
机译:很好地理解,来自数码相机的颜色值是相机的光谱敏感度的功能,场景中对象的反射以及照明和放置在物体和传感器之间的任何过滤器的反射率。选择正确的照明至关重要以优化颜色再现管道。在实践中,照明的选择仅限于可用光源的光谱。在本文中,我们通过理论上将过滤器安装到镜头,优化摄像机的比色性能。使用路易师优化条件获得过滤器的理想光谱。通过使用变分微积分,我们将优化问题降低到LIE组上的非线性方程系统。我们通过在具有左不变性Riemannian结构的谎言组上应用牛顿的方法来解决方程系统。正如文献所预期的那样,我们的实验表现出二次收敛。第二种方法是重新设计的设置。此重新设计使我们提供了一种更易于解决的二次优化问题。对此优化问题的约束使我们控制过滤器的透明度。

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