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Designing Color Filters That Make Cameras More Colorimetric

机译:设计彩色过滤器,使相机更加比色滤光片

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When we place a colored filter in front of a camera the effective camera response functions are equal to the given camera spectral sensitivities multiplied by the filter spectral transmittance. In this article, we solve for the filter which returns the modified sensitivities as close to being a linear transformation from the color matching functions of the human visual system as possible. When this linearity condition - sometimes called the Luther condition- is approximately met, the `camera+filter' system can be used for accurate color measurement. Then, we reformulate our filter design optimisation for making the sensor responses as close to the CIEXYZ tristimulus values as possible given the knowledge of real measured surfaces and illuminants spectra data. This data-driven method in turn is extended to incorporate constraints on the filter (smoothness and bounded transmission). Also, because how the optimisation is initialised is shown to impact on the performance of the solved-for filters, a multi-initialisation optimisation is developed. Experiments demonstrate that, by taking pictures through our optimised color filters, we can make cameras significantly more colorimetric.
机译:当我们在相机前面放置彩色滤光片时,有效的相机响应函数等于给定的相机谱灵敏度乘以滤波频谱透射率。在本文中,我们解决了滤波器,该过滤器返回修改的敏感度,接近是从人类视觉系统的颜色匹配功能的线性变换。当这种线性条件 - 有时称为Luther条件 - 大约会满足,“摄像机+滤波器”系统可用于精确的颜色测量。然后,我们根据真实测量的表面和光源光谱数据的知识,我们将传感器设计优化重构,以使传感器响应尽可能接近Ciexyz Tristimulus值。该数据驱动方法又扩展以合并过滤器上的约束(平滑度和有界传输)。此外,由于如何初始化优化的影响,因此对求解过滤器的性能影响,开发了多初始化优化。实验表明,通过通过我们优化的滤色器拍摄照片,我们可以使相机变得明显比较。

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