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Efficient Spatio-Temporal Hole Filling Strategy for Kinect Depth Maps

机译:Kinect深度图的高效时空时空填充策略

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摘要

In this paper we present an efficient hole filling strategy that improves the quality of the depth maps obtained with the Microsoft Kinect device. The proposed approach is based on a joint-bilateral filtering framework that includes spatial and temporal information. The missing depth values are obtained applying iteratively a joint-bilateral filter to their neighbor pixels. The filter weights are selected considering three different factors: visual data, depth information and a temporal-consistency map. Video and depth data are combined to improve depth map quality in presence of edges and homogeneous regions. Finally, the temporal-consistency map is generated in order to track the reliability of the depth measurements near the hole regions. The obtained depth values are included iteratively in the filtering process of the successive frames and the accuracy of the hole regions depth values increases while new samples are acquired and filtered.
机译:在本文中,我们提出了一种有效的孔填充策略,可以提高使用Microsoft Kinect设备获得的深度图的质量。所提出的方法基于包括空间和时间信息的联合双边过滤框架。缺失深度值是通过将一个联合双边滤波器迭代应用于其相邻像素而获得的。选择过滤器权重时要考虑三个不同的因素:视觉数据,深度信息和时间一致性图。视频和深度数据结合在一起,可以在存在边缘和同质区域的情况下提高深度图的质量。最后,生成时间一致性图,以便跟踪孔区域附近深度测量的可靠性。所获得的深度值被迭代地包括在连续帧的滤波过程中,并且在获取和滤波新样本的同时,孔区域深度值的精度增加。

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