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Streaming High-Quality Mobile Video with Multipath TCP in Heterogeneous Wireless Networks

机译:在异构无线网络中通过多路径TCP流传输高质量的移动视频

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The proliferating wireless infrastructures with complementary characteristics prompt the bandwidth aggregation for concurrent video transmission in heterogeneous access networks. Multipath TCP (MPTCP) is an important transport-layer protocol recommended by IETF to integrate different access medium (e.g., Cellular and Wi-Fi). This paper investigates the problem of mobile video delivery using MPTCP in heterogeneous wireless networks with multihomed terminals. To achieve the optimal quality of real-time video streaming, we have to seriously consider the path asymmetry in different access networks and the disadvantages of the data retransmission mechanism in MPTCP. Motivated by addressing these critical issues, this study presents a novel quAlity-Driven MultIpath TCP (ADMIT) scheme that integrates the utility maximization based Forward Error Correction (FEC) coding and rate allocation. We develop an analytical framework to model the MPTCP-based video delivery quality over multiple communication paths. ADMIT is able to effectively integrate the most reliable access networks with FEC coding to minimize the end-to-end video distortion. The performance of ADMIT is evaluated through extensive semi-physical emulations in Exata involving H.264 video streaming. Experimental results show that ADMIT outperforms the reference transport protocols in terms of video PSNR (Peak Signal-to-Noise Ratio), end-to-end delay, and goodput. Thus, we recommend ADMIT for streaming high-quality mobile video in heterogeneous wireless networks with multihomed terminals.
机译:具有互补特性的激增的无线基础设施促使带宽聚合,以实现异构接入网络中的并发视频传输。多路径TCP(MPTCP)是IETF推荐的一种重要的传输层协议,用于集成不同的访问介质(例如,蜂窝和Wi-Fi)。本文研究了在具有多宿主终端的异构无线网络中使用MPTCP进行移动视频传递的问题。为了获得最佳质量的实时视频流,我们必须认真考虑不同接入网络中的路径不对称以及MPTCP中数据重传机制的缺点。通过解决这些关键问题,本研究提出了一种新颖的质量驱动多径TCP(ADMIT)方案,该方案集成了基于效用最大化的前向纠错(FEC)编码和速率分配。我们开发了一个分析框架,以对多个通信路径上基于MPTCP的视频传递质量进行建模。 ADMIT能够有效地将最可靠的接入网络与FEC编码集成在一起,以最小化端到端视频失真。通过Exata中涉及H.264视频流的大量半物理仿真,可以评估ADMIT的性能。实验结果表明,ADMIT在视频PSNR(峰值信噪比),端到端延迟和吞吐量方面优于参考传输协议。因此,我们建议使用ADMIT在具有多宿主终端的异构无线网络中流式传输高质量的移动视频。

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