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Parity Bit Replenishment for JPEG 2000-Based Video Streaming

机译:基于JPEG 2000的视频流的奇偶校验位补充

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This paper envisions coding with side information to design a highly scalable video codec. To achieve fine-grained scalability in terms of resolution, quality, and spatial access as well as temporal access to individual frames, the JPEG 2000 coding algorithm has been considered as the reference algorithm to encode INTRA information, and coding with side information has been envisioned to refresh the blocks that change between two consecutive images of a video sequence. One advantage of coding with side information compared to conventional closed-loop hybrid video coding schemes lies in the fact that parity bits are designed to correct stochastic errors and not to encode deterministic prediction errors. This enables the codec to support some desynchronization between the encoder and the decoder, which is particularly helpful to adapt on the fly pre-encoded content to fluctuating network resources and/or user preferences in terms of regions of interest. Regarding the coding scheme itself, to preserve both quality scalability and compliance to the JPEG 2000 wavelet representation, a particular attention has been devoted to the definition of a practical coding framework able to exploit not only the temporal but also spatial correlation among wavelet subbands coefficients, while computing the parity bits on subsets of wavelet bit-planes. Simulations have shown that compared to pure INTRA-based conditional replenishment solutions, the addition of the parity bits option decreases the transmission cost in terms of bandwidth, while preserving access flexibility.
机译:本文设想使用辅助信息进行编码,以设计高度可扩展的视频编解码器。为了在分辨率,质量和空间访问以及对单个帧的时间访问方面实现细粒度的可伸缩性,已经考虑将JPEG 2000编码算法作为对INTRA信息进行编码的参考算法,并且已经设想了使用边信息进行编码刷新在视频序列的两个连续图像之间变化的块。与传统的闭环混合视频编码方案相比,利用边信息编码的优点之一在于,奇偶校验位被设计为校正随机错误,而不是对确定性预测错误进行编码。这使编解码器能够支持编码器和解码器之间的某些不同步,这尤其有助于使即时预编码的内容适应于感兴趣区域方面的网络资源和/或用户偏好的波动。关于编码方案本身,为了保持质量可伸缩性和对JPEG 2000小波表示的合规性,已经特别关注了一种实用编码框架的定义,该框架不仅可以利用小波子带系数之间的时间相关性,而且还可以利用空间相关性,计算小波位平面子集上的奇偶校验位。仿真表明,与纯基于INTRA的条件补充解决方案相比,奇偶校验位选项的添加降低了带宽方面的传输成本,同时保留了访问灵活性。

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