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首页> 外文期刊>Mobile Information Systems >Joint redundant and random network coding for robust video transmission over lossy networks
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Joint redundant and random network coding for robust video transmission over lossy networks

机译:联合冗余和随机网络编码,可通过有损网络进行可靠的视频传输

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摘要

In this paper a novel unequal packet loss protection scheme R2NC based on low-triangular global coding matrix with ladder-shaped partition is presented, which combines redundant and random network coding for robust H.264/SVC video transmission. Firstly, the error-correcting capabilities of redundant network coding make our scheme resilient to loss. Secondly, the implementation of random network coding at the intermediate nodes with multiple input links can reduce the cost of network bandwidth, thus reducing the end-to-end delay for video transmission. Thirdly, the low-triangular global coding matrix with ladder-shaped partition is maintained throughout the R2NC processes to reduce the impact of global coding matrix's rank deficiency on video transmission and provide unequal erasure protection for H.264/S VC priority layers. The redundant network coding avoids the retransmission of lost packets and improves error-correcting capabilities of lost packets. Based only on the knowledge of the packet loss rates on the output links, the source node and intermediate nodes can make decisions for redundant network coding and random network coding (i.e., how much redundancy to add at this node). However, the redundancy caused by redundant network coding makes the network load increases. In order to improve network throughput, we performed random network coding at the intermediate nodes. Our approach is grounded on the overall distortion of reconstructed video minimization by optimizing the amount of redundancy assigned to each layer. The convex optimization model is constructed under the constraint of network coding and scalable video coding. Experimental results are shown to demonstrate the significant improvement of H.264/S VC video reconstruction quality with R2NC over packet lossy networks.
机译:提出了一种新的基于梯形分区的低三角形全局编码矩阵的不等丢包保护方案R2NC,该方案结合了冗余和随机网络编码,实现了稳定的H.264 / SVC视频传输。首先,冗余网络编码的纠错功能使我们的方案可以抗丢失。其次,在具有多个输入链路的中间节点处实施随机网络编码可以降低网络带宽的成本,从而减少视频传输的端到端延迟。第三,在R2NC的整个过程中都保留了具有梯形分区的低三角形全局编码矩阵,以减少全局编码矩阵的秩不足对视频传输的影响,并为H.264 / S VC优先级提供不平等的擦除保护。冗余网络编码避免了丢失数据包的重传,并提高了丢失数据包的纠错能力。仅基于对输出链路上的分组丢失率的了解,源节点和中间节点可以做出冗余网络编码和随机网络编码的决策(即,在该节点处添加多少冗余)。然而,由冗余网络编码引起的冗余使得网络负载增加。为了提高网络吞吐量,我们在中间节点执行了随机网络编码。我们的方法基于通过优化分配给每一层的冗余量而使重构视频最小化的总体失真。凸优化模型是在网络编码和可伸缩视频编码的约束下构建的。实验结果表明,通过R2NC,H.264 / S VC视频重建质量在丢包网络上得到了显着改善。

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