立体声图像校正使用焦距调整

M. S. Kumar, N. Avinash
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引用次数: 4

摘要

立体图像校正由于其鲁棒性和对立体对应问题的大量搜索空间缩减而受到越来越多的关注。它在三维医学成像、机器人导航、虚拟现实、娱乐等领域有着广泛的应用。校正后的图像包含更多的失真,这将影响3d成像质量。本文从异构摄像机的立体视频流中选择带有时间戳的立体帧。使用误差对消除法验证了这些立体图像对的校准适用性。非均匀相机从选定的立体图像对进行标定,然后通过补偿相机的焦距对立体图像对进行校正。与传统算法相比,所得到的校正图像具有较少的空心像素数。与传统算法相比,较少的空心像素使三维坐标估计更加准确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stereo Image Rectification Using Focal Length Adjustment
Stereo Image rectification is more popular due to its robustness and vast amount of search space reduction in stereo correspondence problem. It has wide range of applications in 3d medical imaging, robot navigation, virtual reality, and entertainment etc. Rectified Images includes more distortion which will affect 3d imaging quality. In this paper, we choose time stamped stereo frames from stereo video streams from heterogeneous cameras. These stereo image pairs are verified for suitability for calibration using error pair elimination method. Heterogeneous cameras are calibrated from the selected stereo image pairs and followed by rectification of stereo image pairs by compensating the focal lengths of the cameras. The resultant rectified image has lesser number of hollow pixels as compared to conventional algorithm. Lesser number of hollow pixels results in accurate 3D co-ordinate estimation compared with conventional algorithm.
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