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Spatial correlation-based side information refinement for distributed video coding

机译:分布式视频编码的基于空间相关性的辅助信息优化

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Distributed video coding (DVC) architecture designs, based on distributed source coding principles, have benefitted from significant progresses lately, notably in terms of achievable rate-distortion performances. However, a significant performance gap still remains when compared to prediction-based video coding schemes such as H.264/AVC. This is mainly due to the non-ideal exploitation of the video sequence temporal correlation properties during the generation of side information (SI). In fact, the decoder side motion estimation provides only an approximation of the true motion. In this paper, a progressive DVC architecture is proposed, which exploits the spatial correlation of the video frames to improve the motion-compensated temporal interpolation (MCTI). Specifically, Wyner-Ziv (WZ) frames are divided into several spatially correlated groups that are then sent progressively to the receiver. SI refinement (SIR) is performed as long as these groups are being decoded, thus providing more accurate SI for the next groups. It is shown that the proposed progressive SIR method leads to significant improvements over the Discover DVC codec as well as other SIR schemes recently introduced in the literature.
机译:最近,基于分布式源编码原理的分布式视频编码(DVC)体系结构设计已从重大进展中受益,特别是在可实现的速率失真性能方面。但是,与基于预测的视频编码方案(例如H.264 / AVC)相比,仍然存在明显的性能差距。这主要是由于在生成辅助信息(SI)期间非理想地利用了视频序列的时间相关特性。实际上,解码器侧运动估计仅提供真实运动的近似值。本文提出了一种渐进式DVC架构,该架构利用视频帧的空间相关性来改进运动补偿时间插值(MCTI)。具体来说,将Wyner-Ziv(WZ)帧分为几个空间相关的组,然后将其逐步发送到接收器。只要对这些组进行解码,就会执行SI改进(SIR),从而为下一组提供更准确的SI。结果表明,所提出的渐进式SIR方法导致了Discover DVC编解码器以及文献中最近引入的其他SIR方案的重大改进。

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