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Disparity map using suboptimal cost with dynamic programming

机译:动态规划中使用次优成本的视差图

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1D optimization methods based on dynamic programming (DP) stereo are of practical interest because it can reconstruct an observed 3D optical surface very quickly and thus has potential for real-time applications. While being efficient, its performance is far from the state of the art because the vertical consistency between the scanlines is not enforced. 1D optimization based on dynamic programming for stereo correspondence is re-examined by applying it to the vertical consistency between the scanlines as opposed to the individual scanlines. To do this, a pixel is allowed to have a disparity with possibly sub-optimal cost for it in two directions. Thus, the proposed algorithm is a truly global optimization method because disparity estimate at one pixel depends on the disparity estimates at all the other pixels, unlike the scanline based methods. Proposed algorithm is evaluated on the benchmark Middlebury database. The algorithm is very simple, so the proposed algorithm should be a good candidate for real time implementation. The results are considerably better than that of the scanline based methods. While the results are not the state of the art, the proposed algorithm offers a good trade off in terms of accuracy and computational efficiency.
机译:基于动态编程(DP)立体声的一维优化方法具有实际意义,因为它可以非常快速地重建观察到的3D光学表面,因此具有实时应用的潜力。尽管效率很高,但它的性能与现有技术相去甚远,因为没有强制执行扫描线之间的垂直一致性。通过将其应用于扫描线之间(而不是单个扫描线)的垂直一致性,可以重新检查基于动态编程的立体对应一维优化。为此,允许像素在两个方向上具有可能具有次优成本的视差。因此,所提出的算法是真正的全局优化方法,因为与基于扫描线的方法不同,一个像素的视差估计取决于所有其他像素的视差估计。建议的算法在基准Middlebury数据库上进行评估。该算法非常简单,因此所提出的算法应该是实时实施的良好候选者。结果比基于扫描线的方法要好得多。虽然结果不是最新技术,但提出的算法在准确性和计算效率方面提供了很好的权衡。

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