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Distortion-Aware Concurrent Multipath Transfer for Mobile Video Streaming in Heterogeneous Wireless Networks

机译:异构无线网络中用于移动视频流的失真感知并发多路径传输

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The massive proliferation of wireless infrastructures with complementary characteristics prompts the bandwidth aggregation for Concurrent Multipath Transfer (CMT) over heterogeneous access networks. Stream Control Transmission Protocol (SCTP) is the standard transport-layer solution to enable CMT in multihomed communication environments. However, delivering high-quality streaming video with the existing CMT solutions still remains problematic due to the stringent quality of service (QoS) requirements and path asymmetry in heterogeneous wireless networks. In this paper, we advance the state of the art by introducing into the decision process of multipath data transfer. The proposed distortion-aware concurrent multipath transfer (CMT-DA) solution includes three phases: 1) per-path status estimation and congestion control; 2) quality-optimal video flow rate allocation; 3) delay and loss controlled data retransmission. The term ‘flow rate allocation’ indicates dynamically picking appropriate access networks and assigning the transmission rates. We analytically formulate the data distribution over multiple communication paths to minimize the end-to-end video distortion and derive the solution based on the utility maximization theory. The performance of the proposed CMT-DA is evaluated through extensive semi-physical emulations in Exata involving H.264 video streaming. Experimental results show that CMT-DA outperforms the reference schemes in terms of video peak signal-to-noise ratio (PSNR), goodput, and inter-packet delay.
机译:具有互补特性的无线基础设施的大规模普及促使异构接入网络上的并行多路径传输(CMT)的带宽聚集。流控制传输协议(SCTP)是在多宿主通信环境中启用CMT的标准传输层解决方案。然而,由于异构无线网络中严格的服务质量(QoS)要求和路径不对称性,使用现有CMT解决方案交付高质量流视频仍然存在问题。在本文中,我们将多路径数据传输的决策过程引入了最新技术。提出的失真感知并发多路径传输(CMT-DA)解决方案包括三个阶段:1)每路径状态估计和拥塞控制; 2)质量最优的视频流分配; 3)延迟和丢失控制的数据重传。术语“流量分配”表示动态选择合适的接入网络并分配传输速率。我们分析性地公式化了多条通信路径上的数据分布,以最大程度地降低端到端视频失真,并基于效用最大化理论推导了解决方案。建议的CMT-DA的性能通过Exata中涉及H.264视频流的大量半物理仿真来评估。实验结果表明,CMT-DA在视频峰值信噪比(PSNR),吞吐量和数据包间延迟方面优于参考方案。

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