基于分布式多描述编码的鲁棒视频传输

Olivier Crave, C. Guillemot, B. Pesquet-Popescu, C. Tillier
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引用次数: 6

摘要

为了在易出错的信道上实现鲁棒视频传输,本文提出了系统的有损描述编码。这里通过首先将要编码为两个描述的数据结构化来解决错误传播的问题。在第一种方法中,通过将奇帧和偶帧分开来构造这两个描述。每个描述被分成两个子序列,一个是常规编码,另一个是用Wyner-Ziv编码器编码。这相当于每个描述的每一帧都有一个系统的有损Wyner-Ziv编码。这种错误控制系统可以作为自动重复请求(ARQ)或前向纠错(FEC)的替代方案,即额外的比特流可以系统地发送到解码器或可以请求,类似于ARQ请求。冗余的数量主要由Wyner-Ziv数据的量化控制。第一种方法导致了令人满意的横向率失真性能,但是由于高冗余而不利于中心描述。为了解决这个问题,该方法随后扩展到使用wner - ziv帧的运动补偿时间滤波(MCTF),在这种情况下,只有低频子带被wz编码并在描述中发送。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust video transmission based on distributed multiple description coding
This paper proposes systematic lossy description coding for robust video transmission over error-prone channels. The problem of error propagation is addressed here by first structuring the data to be encoded into two descriptions. In a first approach, the two descriptions are constructed by splitting odd from even frames. Each description is separated into two sub-sequences, one being conventionally-encoded, the other one being coded with a Wyner-Ziv encoder. This amounts to having a systematic lossy Wyner-Ziv coding of every other frame of each description. This error control system can be used as an alternative to Automatic Repeat reQuest (ARQ) or Forward Error Correction (FEC), i.e. the additional bitstream can be systematically sent to the decoder or can be requested, similarly to an ARQ request. The amount of redundancy is mostly controlled by the quantization of the Wyner-Ziv data. This first approach leads to satisfactory lateral rate-distortion performance, however suffers from high redundancy which penalizes the central description. To cope with this problem, the approach is then extended to the use of motion-compensated temporal filtering (MCTF) for the Wyner-Ziv frames, in which case only the low-frequency subbands are WZ-coded and sent in the descriptions.
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