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Quantized Transform-Domain Motion Estimation for SP-Frame Coding in Viewpoint Switching of Multiview Video

机译:多视点视频切换中SP帧编码的量化变换域运动估计

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The brand-new SP-frame in H.264 facilitates drift-free bitstream switching. Notwithstanding the guarantee of seamless switching, the cost is the bulky size of secondary SP-frames. This induces a significant amount of additional space or bandwidth for storage or transmission. In this paper, our investigation reveals that the size of secondary SP-frames is more severe when the correlation between the two bitstreams becomes smaller. Examples include viewpoint switching in multiview video and bitstream switching in single-view video with complex motion. For this reason, a new motion estimation and compensation technique, which is operated in the quantized-transform (QDCT) domain, is designed for coding secondary SP-frames. Our proposed work aims at keeping the secondary SP-frames as small as possible without affecting the size of primary SP-frames by incorporating QDCT-domain motion estimation and compensation in the secondary SP-frame coding. Simulation results show our proposed scheme overwhelmingly outperforms the conventional pixel-domain motion estimation technique. As a consequence, the size of secondary SP-frames can be reduced remarkably, especially in multiview video and single-view video with complex motion.
机译:H.264中的全新SP帧有助于实现无漂移的比特流切换。尽管保证了无缝切换,但代价是次级SP帧的体积庞大。这会导致大量额外的空间或带宽用于存储或传输。在本文中,我们的研究表明,当两个比特流之间的相关性变小时,次要SP帧的大小会更加严重。示例包括多视图视频中的视点切换和具有复杂运动的单视图视频中的位流切换。因此,设计了一种新的运动估计和补偿技术,该技术在量化变换(QDCT)域中运行,用于对辅助SP帧进行编码。我们提出的工作旨在通过将QDCT域运动估计和补偿合并到辅助SP帧编码中,使辅助SP帧保持尽可能小而不影响主SP帧的大小。仿真结果表明,我们提出的方案绝对优于传统的像素域运动估计技术。结果,特别是在具有复杂运动的多视点视频和单视点视频中,可以显着减小辅助SP帧的大小。

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