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首页> 外文期刊>EURASIP journal on image and video processing >Joint Source-Channel Coding for Wavelet-Based Scalable Video Transmission Using an Adaptive Turbo Code
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Joint Source-Channel Coding for Wavelet-Based Scalable Video Transmission Using an Adaptive Turbo Code

机译:使用自适应Turbo码的基于小波的可伸缩视频传输的联合源信道编码

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摘要

An efficient approach for joint source and channel coding is presented. The proposed approach exploits the joint optimization of a wavelet-based scalable video coding framework and a forward error correction method based on turbo codes. The scheme minimizes the reconstructed video distortion at the decoder subject to a constraint on the overall transmission bitrate budget. The minimization is achieved by exploiting the source rate distortion characteristics and the statistics of the available codes. Here, the critical problem of estimating the bit error rate probability in error-prone applications is discussed. Aiming at improving the overall performance of the underlying joint source-channel coding, the combination of the packet size, interleaver, and channel coding rate is optimized using Lagrangian optimization. Experimental results show that the proposed approach outperforms conventional forward error correction techniques at all bit error rates. It also significantly improves the performance of end-to-end scalable video transmission at all channel bit rates.
机译:提出了一种有效的联合源和信道编码方法。所提出的方法利用了基于小波的可伸缩视频编码框架和基于turbo码的前向纠错方法的联合优化。该方案在总传输比特率预算受到约束的情况下,使解码器处的重构视频失真最小。通过利用源速率失真特性和可用代码的统计信息来实现最小化。在此,讨论了在容易出错的应用中估计误码率概率的关键问题。为了提高底层联合源信道编码的整体性能,使用拉格朗日优化来优化数据包大小,交织器和信道编码率的组合。实验结果表明,该方法在所有误码率下均优于传统的前向纠错技术。它还显着提高了所有通道比特率下的端到端可伸缩视频传输性能。

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