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Platelet-based coding of depth maps for the transmission of multiview images

机译:基于血小板的深度映射编码,用于传输多视图图像

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Emerging 3-D displays show several views of the scene simultaneously. A direct transmission of a selection of these views is impractical, because various types of displays support a different number of views and the decoder has to interpolate the intermediate views. The transmission of multiview image information can be simplified by only transmitting the texture data for the central view and a corresponding depth map. Additional to the coding of the texture data, this technique requires the efficient coding of depth maps. Since the depth map represents the scene geometry and thereby covers the 3-D perception of the scene, sharp edges corresponding to object boundaries, should be preserved. We propose an algorithm that models depth maps using piecewise-linear functions (platelets). To adapt to varying scene detail, we employ a quadtree decomposition that divides the image into blocks of variable size, each block being approximated by one platelet. In order to preserve sharp object boundaries, the support area of each platelet is adapted to the object boundary. The subdivision of the quadtree and the selection of the platelet type are optimized such that a global rate-distortion trade-off is realized. Experimental results show that the described method can improve the resulting picture quality after compression of depth maps by 1-3 dB when compared to a JPEG-2000 encoder.
机译:新兴的3-D显示器同时显示了场景的几个视图。直接传输选择这些视图是不切实际的,因为各种类型的显示器支持不同数量的视图,并且解码器必须内容中间视图。通过仅向中心视图和相应的深度图发送纹理数据,可以简化多视图图像信息的传输。附加到纹理数据的编码,该技术需要有效地编码深度图。由于深度图表示场景几何形状,从而覆盖了场景的3-D感知,应该保留对应于对象边界的尖锐边缘。我们提出了一种使用分段线性函数(血小板)模拟深度图的算法。为了适应变化的场景细节,我们采用四叉树分解,将图像划分为可变大小的块,每个块被一个血小板近似。为了保持尖锐的物体边界,每个血小板的支撑区域适于对象边界。 Quadtree的细分和血小板类型的选择进行了优化,使得实现了全局速率失真折衷。实验结果表明,与JPEG-2000编码器相比,所描述的方法可以在压缩1-3 dB后改善所产生的图像质量。

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