Simultaneous Stereo Rectification and Distortion Correction with Application to DoF Synthesis

Chen-Ting Yeh, Tien-Yu Ho, Szu-Hao Huang, S. Lai
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引用次数: 0

Abstract

Stereo rectification based on epipolar geometry is an image transformation process which is used to align the rectified stereo images to be coplanar. For image pairs captured by low-cost stereo camera systems, image noises and optical distortions in images may lead to errors in depth estimation. In this paper, a novel algorithm is proposed to simultaneously solve the stereo rectification and distortion correction problems in an integrated optimization framework. The estimated disparity maps are then used to synthesize the depth of field (DoF), which is to increase the saliency of the foreground objects, with the proposed spatially-variant filtering method. Experimental results on various synthetic and real stereo images are shown to demonstrate that the proposed algorithm can effectively reduce the stereo rectification error by considering the optical distortion model. The DoF synthesis can also be improved by using more accurate disparity estimation results.
立体同步整流和畸变校正及其在DoF合成中的应用
基于极极几何的立体校正是一种将校正后的立体图像对准共面的图像变换过程。对于低成本立体相机系统捕获的图像对,图像噪声和图像中的光学畸变可能导致深度估计误差。本文提出了一种在集成优化框架下同时解决立体校正和畸变校正问题的新算法。然后利用估计的视差图,利用所提出的空间变滤波方法合成景深(depth of field, DoF),增加前景目标的显著性。在各种合成立体图像和真实立体图像上的实验结果表明,该算法在考虑光学畸变模型的情况下,能够有效降低立体校正误差。使用更精确的视差估计结果也可以改善DoF合成。
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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