基于多标签QPBO方法的立体通信

Sangsan Leelhapantu, T. Chalidabhongse
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引用次数: 2

摘要

立体对应一直是计算机视觉领域研究的热点之一。基于图的能量最小化已被证明是将全局约束与局部匹配成本结合起来的强大框架。本文将密集立体通信转换为多标签能量最小化问题,然后使用MQPBO方法求解[1]。我们相信MQPBO一次计算所有标签的近似解的能力有可能避免迭代方法中可能出现的局部最优。此外,通过使用基于qpbo的技术,可以最小化的能量函数类别不限于子模,因此我们的方法独立于匹配成本和平滑先验。我们已经用不同的成本函数组合测试了我们的假设,我们的实验在不同的设置中显示了令人鼓舞的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stereo correspondence using multi-label QPBO method
Stereo correspondence has been one of the most intense areas of research in computer vision. Graph-based energy minimization has proven to be a powerful framework for incorporating global constraints with local matching costs. In this work, dense stereo correspondence is cast as multilabel energy minimization problem, which is then solved using MQPBO method [1]. We believe the ability of MQPBO to compute the approximate solution with all labels at once has the potential to avoid local optima that may occur in iterative methods. Furthermore, by using QPBO-based technique, the class of energy functions that can be minimized is not limited to being submodular thus our approach is independent of matching costs and smoothness priors. We have tested our postulate with different combinations of cost functions and our experiment has shown encouraging results in various settings.
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