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A Quality-Centric TCP-Friendly Congestion Control for Multimedia Transmission

机译:以质量为中心的TCP友好的多媒体传输拥塞控制

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In this paper, we propose a quality-centric congestion control for multimedia streaming over wired IP networks, which we refer to as media-TCP-friendly congestion control (MTCC). Our solution adapts the sending rate to both the network condition and the application characteristics by explicitly considering the distortion impacts, delay deadlines, and interdependencies of different video packet classes. The media-aware solution is able to provide differential services for transmitting various packet classes and thereby, further improves the multimedia streaming quality compared to the conventional network-aware congestion control. We use finite-horizon Markov decision process (FHMDP) to determine the optimal congestion control policy that maximizes the long-term multimedia quality, while adhering to the horizon- $K$ TCP-friendliness constraint, which ensures long-term fairness with existing TCP applications. Moreover, the proposed MTCC is able to achieve quality-based fairness among multimedia users. We derive sufficient conditions for multiple multimedia users to achieve quality-based fairness using MTCC congestion control. Note that the proposed solution only modifies the adaptation mechanism of the TCP congestion window size at the sender, without changing the design at the receiver side (i.e., each current TCP receiver can correctly receive and process MTCC streams). Our simulation results show that MTCC achieves more than 3 dB improvement in terms of PSNR over the conventional TCP congestion control approaches, with the largest improvements observed for real-time streaming applications requiring stringent playback delays.
机译:在本文中,我们为有线IP网络上的多媒体流提出了一种以质量为中心的拥塞控制,我们将其称为媒体TCP友好的拥塞控制(MTCC)。我们的解决方案通过明确考虑失真影响,延迟期限和不同视频数据包类别的相互依赖性,来使发送速率适应网络条件和应用程序特性。媒体感知解决方案能够提供用于传输各种分组类别的差分服务,从而与传统的网络感知拥塞控制相比,进一步提高了多媒体流传输质量。我们使用有限水平的马尔可夫决策过程(FHMDP)来确定最佳的拥塞控制策略,该策略可以最大化长期的多媒体质量,同时遵守地平线-$ K $ TCP友好性约束,从而确保与现有TCP的长期公平性应用程序。而且,提出的MTCC能够在多媒体用户之间实现基于质量的公平性。我们为MTCC拥塞控制为多个多媒体用户提供了实现基于质量的公平性的充分条件。注意,所提出的解决方案仅修改了发送方的TCP拥塞窗口大小的自适应机制,而没有改变接收方的设计(即,每个当前的TCP接收方都可以正确地接收和处理MTCC流)。我们的仿真结果表明,与传统的TCP拥塞控制方法相比,MTCC在PSNR方面实现了超过3 dB的改进,对于要求严格回放延迟的实时流应用而言,观察到的最大改进是。

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