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Optimized cross-layer forward error correction coding for H.264 AVC video transmission over wireless channels

机译:针对无线信道上的H.264 AVC视频传输的优化跨层前向纠错编码

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Forward error correction (FEC) codes that can provide unequal error protection (UEP) have been used recently for video transmission over wireless channels. These video transmission schemes may also benefit from the use of FEC codes both at the application layer (AL) and the physical layer (PL). However, the interaction and optimal setup of UEP FEC codes at the AL and the PL have not been previously investigated. In this paper, we study the cross-layer design of FEC codes at both layers for H.264 video transmission over wireless channels. In our scheme, UEP Luby transform codes are employed at the AL and rate-compatible punctured convolutional codes at the PL. In the proposed scheme, video slices are first prioritized based on their contribution to video quality. Next, we investigate the four combinations of cross-layer FEC schemes at both layers and concurrently optimize their parameters to minimize the video distortion and maximize the peak signal-to-noise ratio. We evaluate the performance of these schemes on four test H.264 video streams and show the superiority of optimized cross-layer FEC design.
机译:可以提供不平等错误保护(UEP)的前向纠错(FEC)码最近已用于通过无线信道进行视频传输。这些视频传输方案还可以受益于在应用层(AL)和物理层(PL)上使用FEC代码。但是,AL和PL处的UEP FEC代码的交互作用和最佳设置尚未进行过调查。在本文中,我们研究了两层FEC代码的跨层设计,以通过无线信道传输H.264视频。在我们的方案中,在AL处使用UEP Luby变换码,在PL处使用速率兼容的收缩卷积码。在提出的方案中,首先根据视频片段对视频质量的贡献来对视频片段进行优先级排序。接下来,我们研究了两层跨层FEC方案的四种组合,并同时优化了它们的参数以最小化视频失真并最大化峰值信噪比。我们在四个测试H.264视频流上评估了这些方案的性能,并显示了优化的跨层FEC设计的优越性。

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