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Discrete and continuous optimizations for depth image super-resolution

机译:深度图像超分辨率的离散和连续优化

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Recently a Time-of-Flight 2D/3D image sensor has been developed, which is able to capture a perfectly aligned pair of a color and a depth image. To increase the sensitivity to infrared light, the sensor electrically combines multiple adjacent pixels into a depth pixel at the expense of depth image resolution. To restore the resolution we propose a depth image super-resolution method that uses a high-resolution color image aligned with an input depth image. In the first part of our method, the input depth image is interpolated into the scale of the color image, and our discrete optimization converts the interpolated depth image into a high-resolution disparity image, whose discontinuities precisely coincide with object boundaries. Subsequently, a discontinuity-preserving filter is applied to the interpolated depth image, where the discontinuities are cloned from the high-resolution disparity image. Meanwhile, our unique way of enforcing the depth reconstruction constraint gives a high-resolution depth image that is perfectly consistent with its original input depth image. We show the effectiveness of the proposed method both quantitatively and qualitatively, comparing the proposed method with two existing methods. The experimental results demonstrate that the proposed method gives sharp high-resolution depth images with less error than the two methods for scale factors of 2, 4, and 8.
机译:最近,已经开发出一种飞行时间2D / 3D图像传感器,该传感器能够捕获色彩和深度图像的完美对齐对。为了增加对红外光的灵敏度,传感器以牺牲深度图像分辨率为代价将多个相邻像素电合并为一个深度像素。为了恢复分辨率,我们提出了深度图像超分辨率方法,该方法使用与输入深度图像对齐的高分辨率彩色图像。在我们方法的第一部分中,将输入深度图像插入到彩色图像的比例尺中,并且我们的离散优化将插入的深度图像转换为高分辨率的视差图像,其不连续性与对象边界精确重合。随后,将不连续性保留滤波器应用于内插深度图像,其中从高分辨率视差图像克隆不连续性。同时,我们执行深度重构约束的独特方式可提供高分辨率的深度图像,该图像与其原始输入深度图像完全一致。我们将提出的方法与两种现有方法进行了比较,从数量和质量上证明了该方法的有效性。实验结果表明,与比例尺分别为2、4和8的两种方法相比,该方法能够提供清晰的高分辨率深度图像,并且误差要小于两种方法。

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