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Optimal H.264 Scalable Video Scheduling Policies for 3G/4G Wireless Cellular and Video Sensor Networks

机译:最佳H.264 3G / 4G无线蜂窝和视频传感器网络可扩展的视频调度策略

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摘要

We consider the problem of optimal H.264 scalable video scheduling, with an objective of maximizing the end-user video quality while ensuring fairness in 3G/4G broadband wireless networks and video sensor networks. We propose a novel framework to characterize the video quality-based utility of the H.264 temporal and quality scalable video layers. Subsequently, we formulate the scalable video scheduling framework as a Markov decision process (MDP) for long-term average video utility maximization and derive the optimal index based-scalable video scheduling policies ISVP and ISVPF towards video quality maximization. Further, we extend this framework to multiuser and multisubchannel scenario of 4G wireless networks. In this context, we propose two novel schemes for long-term streaming video quality performance optimization based on maximum weight bipartite and greedy matching paradigms. Simulation results demonstrate that the proposed algorithms achieve superior end-user video experience compared to competing scheduling policies such as Proportional Fairness (PF), Linear Index Policy (LIP), Rate Starvation Age policy (RSA), and Quality Proportional Fair Policy (QPF).
机译:我们考虑最佳H.264可扩展视频调度的问题,其目的是最终用户视频质量,同时确保3G / 4G宽带无线网络和视频传感器网络的公平性。我们提出了一种新颖的框架,以表征H.264时间和质量可伸缩视频层的视频质量的实用程序。随后,我们将可扩展的视频调度框架作为马尔可夫决策过程(MDP),用于长期平均视频实用程序最大化,并导出基于最佳索引可伸缩的视频调度策略ISVP和ISVPF朝向视频质量最大化。此外,我们将此框架扩展到4G无线网络的多用户和多路上场景。在这种情况下,我们提出了两种基于最大重量二分和贪婪匹配范例的长期流视频质量性能优化的新方案。仿真结果表明,与比例公平(PF),线性指数政策(LIP),速率饥饿年龄政策(RSA),以及质量比例公平政策(QPF)相比,所提出的算法实现了卓越的最终用户视频体验。 。

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