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Gamut constrained illuminant estimation

机译:色域约束光源估计

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This paper presents a novel solution to the illuminant estimation problem: the problem of how, given an image of a scene taken under an unknown illuminant, we can recover an estimate of that light. The work is founded on previous gamut mapping solutions to the problem which solve for a scene illuminant by determining the set of diagonal mappings which take image data captured under an unknown light to a gamut of reference colours taken under a known light. Unfortunately a diagonal model is not always a valid model of illumination change and so previous approaches sometimes return a null solution. In addition, previous methods are difficult to implement. We address these problems by recasting the problem as one of illuminant classification: we define a priori a set of plausible lights thus ensuring that a scene illuminant estimate will always be found. A plausible light is represented by the gamut of colours observable under it and the illuminant in an image is classified by determining the plausible light whose gamut is most consistent with the image data. We show that this step (the main computational burden of the algorithm) can be performed simply, quickly, and efficiently by means of a non-negative least-squares optimisation. We report results on a large set of real images which show that it provides excellent illuminant estimation, outperforming previous algorithms.
机译:本文提出了一种新的解决方案,以光源估计问题:怎么样,给定一个未知的光源下拍摄场景的图像,我们可以恢复光的估计问题。的工作是建立在以前的色域映射的解决方案,其通过确定该组内搭未知光下拍摄到的公知的光下拍摄的基准色的色域的图像数据对角映射的解决场景光源的问题。不幸的是对角线模式并不总是光照变化的一个有效的模式,所以以前的方法有时会返回空的解决方案。此外,以前的方法很难实现。我们应对重铸问题作为光源分类的一个这些问题:我们定义了一个先验一套合理的路灯从而确保场景光源估计将总可以找到。一种可能的光由颜色下它和图像中的可观察到的光源的色域表示的是通过确定合理的光,其色域与图像数据最一致的分类。我们证明了这一步(算法的主要计算负担)可以简单,快速,高效地通过非负最小二乘法优化来进行。我们提出对大量真实图像的结果这表明它提供了出色的光源估计,跑赢以前的算法。

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