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首页> 外文期刊>IEEE transactions on mobile computing >Feedback-Free Binning Design for Mobile Wyner-Ziv Video Coding: An Operational Duality between Source Distortion and Channel Capacity
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Feedback-Free Binning Design for Mobile Wyner-Ziv Video Coding: An Operational Duality between Source Distortion and Channel Capacity

机译:移动Wyner-Ziv视频编码的无反馈合并设计:源失真和信道容量之间的操作对偶

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摘要

Most mobile video applications require the encoder to have low complexity. Wyner-Ziv (WZ) video coding removes complex motion estimation from the encoder, and provides error resilience from the embedded channel coding module. WZ video coding is regarded as a promising encoder for wireless video systems. Most WZ video coding based on channel codes is a practical implementation of the binning schemes. In this work, we present a novel two-tier binning scheme that consists of the inner and outer structure, for improving rate-distortion performance. First, we develop a Raptor coding with side information to construct the inner binning structure, which provides a lower rate. Second, for the outer binning, we model the WZ video coding architecture as a multi-access channel, so that we can exploit the property of channel capacity. Third, we exploit the duality property of WZ video coding. Based on such a property, both the primal and dual solutions are subsequently provided in this study. For the primal problem of distortion minimization, we develop dynamic programming to find the optimal binning policy, whereas for the dual problem of capacity maximization, we devise a near sum-capacity binning algorithm. The objective is to lower the coding rate with lower complexity. Experimental results showed that when compared with the state-of-the-art coding, the decoding performance and the quality of our proposed method were respectively enhanced. Besides, we observed that the decoding distortion was reduced through the proposed outer binning, while the proposed inner binning based on Raptor coding by jointly considering side information (SI) lead to a low bitrate when a target decoding quality was specified. Such findings have substantiated the effectiveness of our method.
机译:大多数移动视频应用要求编码器具有低复杂度。 Wyner-Ziv(WZ)视频编码消除了编码器的复杂运动估计,并提供了嵌入式通道编码模块的容错能力。 WZ视频编码被认为是用于无线视频系统的有前途的编码器。大多数基于通道代码的WZ视频编码是合并方案的实际实现。在这项工作中,我们提出了一种新颖的两层装箱方案,该方案由内部和外部结构组成,用于提高速率失真性能。首先,我们开发带有辅助信息的Raptor编码以构造内部装箱结构,从而提供较低的速率。第二,对于外部装仓,我们将WZ视频编码架构建模为多路访问通道,以便我们可以利用通道容量的属性。第三,我们利用WZ视频编码的双重性。基于这样的性质,本研究随后提供了原始解和对偶解。针对失真最小化这一主要问题,我们开发了动态规划程序来找到最佳的分级策略,而针对容量最大化的双重问题,我们设计了一种近似和容量分级算法。目的是以较低的复杂度降低编码率。实验结果表明,与现有技术的编码相比,我们提出的方法的解码性能和质量都得到了提高。此外,我们观察到,通过提出的外部合并降低了解码失真,而在指定目标解码质量时,通过共同考虑辅助信息(SI)的基于Raptor编码的提议内部合并导致较低的比特率。这些发现证实了我们方法的有效性。

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