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Iterative Joint Video and Channel Decoding in a Trellis-Based Vector-Quantized Video Codec and Trellis-Coded Modulation Aided Wireless Videophone

机译:基于网格的矢量量化视频编解码器和网格编码调制辅助无线可视电话中的迭代联合视频和信道解码

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摘要

We propose a Vector-Quantized (VQ) video codec that induces deliberately-introduced code constraints. The complete set of these code constraints are unambiguously described by a novel block-based modification of a symbol-based variable length coding trellis structure. This trellis is employed during VQ encoding to represent video information with a Minimum Mean Squared Error (MMSE) reconstruction. Additionally, the proposed trellis structure is employed in the video decoder to obtain a posteriori probability based MMSE estimates of the transmitted VQ tiles. Since the trellis structure unambiguously describes the code constraints induced by the video codec, its employment guarantees the automatic recovery of valid sets of VQ tiles. The proposed video codec is serially concatenated with a trellis-coded modulation scheme for transmission over a fast-fading Rayleigh fading channel. In the receiver, iterative-decoding convergence that eliminates all perceivable channel-induced video distortion is shown to be supported within 1.29 dB of the system's 2 bit/s/Hz channel-capacity limit of 3.96 dB.
机译:我们提出了矢量量化(VQ)视频编解码器,该视频编解码器会引起故意引入的代码约束。通过基于符号的可变长度编码网格结构的新颖的基于块的修改,明确地描述了这些代码约束的完整集合。在VQ编码过程中使用此网格来表示具有最小均方误差(MMSE)重建的视频信息。另外,在视频解码器中采用所提出的网格结构来获得基于后验概率的传输的VQ瓦片的MMSE估计。由于网格结构清楚地描述了视频编解码器引起的代码约束,因此采用它可以保证自动恢复有效的VQ瓦片集。所提出的视频编解码器与网格编码调制方案串联在一起,以便在快速衰落的瑞利衰落信道上传输。在接收机中,可以证明消除了所有可察觉的由信道引起的视频失真的迭代解码收敛在系统的2 bit / s / Hz信道容量极限3.96 dB的1.29 dB范围内得到支持。

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