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Rate-Distortion Optimal Video Transport Over IP Allowing Packets With Bit Errors

机译:IP上的速率失真最优视频传输,允许带比特错误的数据包

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摘要

We propose new models and methods for rate-distortion (RD) optimal video delivery over IP, when packets with bit errors are also delivered. In particular, we propose RD optimal methods for slicing and unequal error protection (UEP) of packets over IP allowing transmission of packets with bit errors. The proposed framework can be employed in a classical independent-layer transport model for optimal slicing, as well as in a cross-layer transport model for optimal slicing and UEP, where the forward error correction (FEC) coding is performed at the link layer, but the application controls the FEC code rate with the constraint that a given IP packet is subject to constant channel protection. The proposed method uses a novel dynamic programming approach to determine the optimal slicing and UEP configuration for each video frame in a practical manner, that is compliant with the AVC/H.264 standard. We also propose new rate and distortion estimation techniques at the encoder side in order to efficiently evaluate the objective function for a slice configuration. The cross-layer formulation option effectively determines which regions of a frame should be protected better; hence, it can be considered as a spatial UEP scheme. We successfully demonstrate, by means of experimental results, that each component of the proposed system provides significant gains, up to 2.0 dB, compared to competitive methods.
机译:我们提出了新的模型和方法,用于在通过IP传输速率失真(RD)最佳视频时,还可以传输具有误码的数据包。特别是,我们提出了RD优化方法,用于对IP上的数据包进行切片和不等错误保护(UEP),从而允许传输具有误码的数据包。所提出的框架可用于经典独立层传输模型中以实现最佳切片,也可以用于跨层传输模型中以实现最佳切片和UEP,其中在链路层执行前向纠错(FEC)编码,但是应用程序以给定IP数据包受到恒定信道保护为约束来控制FEC码率。所提出的方法使用新颖的动态编程方法,以符合AVC / H.264标准的实用方式为每个视频帧确定最佳切片和UEP配置。我们还提出了在编码器端的新速率和失真估计技术,以便有效地评估切片配置的目标函数。跨层配方选项有效地确定了框架的哪些区域应得到更好的保护;因此,可以将其视为空间UEP方案。通过实验结果,我们成功地证明了与竞争性方法相比,所提出系统的每个组件都可提供高达2.0 dB的显着增益。

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