An Empirical Model for Specularity Prediction with Application to Dynamic Retexturing

Alexandre Morgand, M. Tamaazousti, A. Bartoli
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引用次数: 8

Abstract

Specularities, which are often visible in images, may be problematic in computer vision since they depend on parameters which are difficult to estimate in practice. We present an empirical model called JOLIMAS: JOint LIght-MAterial Specularity, which allows specularity prediction. JOLIMAS is reconstructed from images of specular reflections observed on a planar surface and implicitly includes light and material properties which are intrinsic to specularities. This work was motivated by the observation that specularities have a conic shape on planar surfaces. A theoretical study on the well known illumination models of Phong and Blinn-Phong was conducted to support the accuracy of this hypothesis. A conic shape is obtained by projecting a quadric on a planar surface. We showed empirically the existence of a fixed quadric whose perspective projection fits the conic shaped specularity in the associated image. JOLIMAS predicts the complex phenomenon of specularity using a simple geometric approach with static parameters on the object material and on the light source shape. It is adapted to indoor light sources such as light bulbs or fluorescent lamps. The performance of the prediction was convincing on synthetic and real sequences. Additionally, we used the specularity prediction for dynamic retexturing and obtained convincing rendering results. Further results are presented as supplementary material.
镜面预测的经验模型及其在动态纹理中的应用
在图像中经常可见的镜面在计算机视觉中可能存在问题,因为它们依赖于在实践中难以估计的参数。我们提出了一个称为JOLIMAS的经验模型:联合光-材料镜面,它允许镜面预测。JOLIMAS是根据在平面上观察到的镜面反射图像重建的,它隐含地包括了反射性固有的光和材料属性。这项工作的动机是观察到镜面在平面上具有圆锥形状。对Phong和Blinn-Phong的著名照明模型进行了理论研究,以支持这一假设的准确性。通过在平面上投影二次曲面得到二次曲线。我们从经验上证明了一个固定的二次曲面的存在,它的透视投影符合相关图像中的圆锥形状的镜面。JOLIMAS利用物体材料和光源形状的静态参数,使用简单的几何方法来预测复杂的镜面现象。它适用于室内光源,如灯泡或荧光灯。对合成序列和真实序列的预测效果令人信服。此外,我们还利用镜面预测进行动态纹理重建,获得了令人信服的渲染结果。进一步的结果作为补充材料提出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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