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Combined source-channel coding schemes for video transmission over an additive white Gaussian noise channel

机译:组合源信道编码方案,用于在加性高斯白噪声信道上进行视频传输

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摘要

There has been an increased interest in the transmission of digital video over real-world transmission media, such as the direct broadcast satellite (DBS) channel. Video transmitted over such a channel is subject to degradation due, in part, to additive white Gaussian noise (AWGN). Some form of forward error-control (FEC) coding may be applied in order to reduce the effect of the noise on the transmitted bitstream; however, determination of the appropriate level of FEC coding is generally an unwieldy and computationally intensive problem, as it may depend upon a variety of parameters such as the type of video, the available bandwidth, and the channel SNR. More specifically, a combined source-channel coding approach is necessary in optimally allocating rate between source and channel coding subject to a fixed constraint on overall transmission bandwidth. In this paper we develop a method of optimal bit allocation under the assumption that the distortion is additive and independent on a frame-by-frame basis. A set of universal operational distortion-rate characteristics is developed which balances the tradeoff between source coding accuracy and channel error protection for a fixed overall transmission rate and provides the basis for the optimal bit allocation approach. The results for specific source and channel coding schemes show marked improvement over suboptimum choices of channel error protection. In addition, we show that our results approach information-theoretic performance bounds which are developed in this work.
机译:人们对在诸如直接广播卫星(DBS)频道之类的实际传输媒体上传输数字视频的兴趣日益浓厚。在这种信道上传输的视频会由于部分加性高斯白噪声(AWGN)而降级。可以采用某种形式的前向错误控制(FEC)编码,以减少噪声对传输的比特流的影响。但是,确定合适水平的FEC编码通常是一个麻烦且计算量大的问题,因为它可能取决于各种参数,例如视频的类型,可用带宽和信道SNR。更具体地说,在对整个传输带宽有固定约束的情况下,需要一种组合的源-信道编码方法来在源和信道编码之间最佳地分配速率。在本文中,我们假设失真是加性的并且在逐帧的基础上独立,因此我们开发了一种最佳位分配方法。开发了一套通用的操作失真率特性,可在源编码精度和信道错误保护之间权衡平衡,以获得固定的总传输速率,并为最佳比特分配方法提供基础。特定源和信道编码方案的结果显示,与信道错误保护的次优选择相比,有了明显的改进。此外,我们证明了我们的结果接近了这项工作中开发的信息理论性能范围。

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