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Horizontal Scaling and Shearing-Based Disparity-Compensated Prediction for Stereo Video Coding

机译:立体声视频编码的基于水平缩放和剪切的视差补偿预测

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In multiview video coding (MVC), disparity-compensated prediction (DCP) exploits the correlation among different views. A common approach is to use block-based motion-compensated prediction (MCP) tools to predict the disparity effect among different views. However, some regions in different views may have various deformations due to nonconstant depth. Thus, performance of DCP is not satisfactory with the simple translational model assumed in conventional block-based MCP tools. Previous attempts to achieve better disparity prediction were usually too complex for practical use. In this paper, horizontal scaling and shearing (HSS) effects are investigated to increase interview prediction accuracy for stereo video. HSS deformations are common among images of horizontally aligned views, due to horizontal and vertical flat surfaces that are not parallel with projection image planes. To achieve HSS-based DCP with minimal complexity, an efficient subsampled block-matching technique is adopted and integrated into MVC extension of H.264/AVC in stereo profile. Affine parameters estimation and additional frame buffers are not required and the overall increase of computational complexity and memory requirements are moderate. Experimental results show that the new technique can achieve up to 5.25% bitrate reduction in interview prediction using JM17.0 reference software implementation.
机译:在多视图视频编码(MVC)中,视差补偿预测(DCP)利用了不同视图之间的相关性。一种常见的方法是使用基于块的运动补偿预测(MCP)工具来预测不同视图之间的视差效果。但是,由于深度不恒定,不同视图中的某些区域可能具有各种变形。因此,DCP的性能对于常规基于块的MCP工具中假定的简单转换模型并不令人满意。先前为实现更好的视差预测所做的尝试通常太复杂而无法实际使用。在本文中,对水平缩放和剪切(HSS)效果进行了研究,以提高立体声视频的采访预测准确性。由于水平和垂直平面与投影图像平面不平行,HSS变形在水平对齐视图的图像中很常见。为了以最小的复杂度实现基于HSS的DCP,采用了有效的子采样块匹配技术并将其集成到立体声配置文件中的H.264 / AVC的MVC扩展中。不需要仿射参数估计和额外的帧缓冲区,并且计算复杂度和内存需求的总体增加是适度的。实验结果表明,使用JM17.0参考软件实现后,该新技术可以将采访预测的比特率降低多达5.25%。

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