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Correlation Noise-Based Unequal Error Protected Rate-Adaptive Codes for Distributed Video Coding

机译:分布式视频编码的基于相关噪声的不等差保护率自适应码

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Distributed video coding (DVC) is a paradigm that can shift most of the computational intensive tasks from the encoder to the decoder. This allows for the design of low complexity encoders that can be deployed in devices equipped with limited resources. However, the compression efficiency obtained using practical DVC codecs are still distant from those of traditional predictive video coding schemes such as H.264/AVC. One of the limitations of the existing DVC architectures is that they consider the correlation noise to be randomly distributed across the whole video frame. This paper shows that the Syner–Ziv (WZ) values that are closer to the endpoints of the quantization intervals have a higher probability of producing incorrect side information (SI) predictions. Thus, through this knowledge, rate-adaptive low-density parity-check accumulate codes that provide a higher level of protection to the unreliable SI bits can be exploited. Experimental results show that the proposed scheme can reduce the WZ bit-rate up to 13% relative to the state-of-the-art DISCOVER architecture when considering interpolation techniques and by up to 0.9 dB for extrapolation techniques.
机译:分布式视频编码(DVC)是一种范例,可以将大多数计算密集型任务从编码器转移到解码器。这允许设计低复杂度的编码器,可以将其部署在配备有限资源的设备中。但是,使用实际DVC编解码器获得的压缩效率仍然与传统的预测视频编码方案(例如H.264 / AVC)相差甚远。现有DVC架构的局限性之一是,它们将相关噪声视为在整个视频帧中随机分布。本文表明,更接近量化间隔端点的Syner-Ziv(WZ)值产生不正确的辅助信息(SI)预测的可能性更高。因此,通过该知识,可以利用对不可靠的SI比特提供更高级别的保护的速率自适应的低密度奇偶校验累积码。实验结果表明,相对于最新的DISCOVER体系结构,考虑插值技术时,该方案可以将WZ比特率降低多达13%,而对于外推技术,则可以将WZ比特率降低多达0.9 dB。

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