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Energy-Efficient Resource Allocation and Scheduling for Multicast of Scalable Video Over Wireless Networks

机译:无线网络中可伸缩视频组播的节能资源分配和调度

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In this paper, we investigate optimal resource allocation and scheduling for scalable video multicast over wireless networks. The wireless video multicasting is a best-effort service which has limited transmission energy and channel access time. To cater for multi-resolution videos to heterogeneous clients and for channel adaptation, we adopt scalable video coding (SVC) with spatial, temporal and quality scalabilities. Our scalable video multicast system consists of a channel probing stage to gather the channel state information and a transmission stage to multicast videos to clients. We formulate the optimal resource allocation problem by maximizing the video quality of the clients subject to transmission energy and channel access constraints. We show that the problem is a joint optimization of the selection of modulation and coding scheme (MCS), and the transmission power allocation. By imposing a quality-of-service (QoS) constraint on the packet loss rate, we simplify the original problem to a binary knapsack problem which can be solved by a dynamic programming approach. Specifically, we first propose a multicast scheduling scheme based on the quality impact of each SVC layer. Guided by the content-aware multicast scheduling, we optimize the resource allocation for each SVC layer sequentially. Solution at each step takes into account of the channel condition, remaining resources, and client requirements. The proposed scheme is of linear complexity and leads to the maximized video quality for the admitted clients, while satisfying the energy budget and channel access constraints. Experiment results demonstrate that our scheme achieves notable video quality improvements for multicast clients, when compared to the state-of-the-art video multicast method.
机译:在本文中,我们研究了无线网络上可伸缩视频多播的最佳资源分配和调度。无线视频多播是一种尽力而为的服务,其传输能量和信道访问时间有限。为了迎合异构客户的多分辨率视频和通道适应需求,我们采用具有空间,时间和质量可伸缩性的可伸缩视频编码(SVC)。我们的可伸缩视频多播系统包括一个用于收集通道状态信息的通道探测阶段,以及一个将视频多播到客户端的传输阶段。我们通过最大化受传输能量和信道访问约束的客户端的视频质量来制定最佳资源分配问题。我们表明问题在于调制和编码方案(MCS)的选择以及传输功率分配的联合优化。通过对丢包率施加服务质量(QoS)约束,我们可以将原始问题简化为二进制背包问题,可以通过动态编程方法解决该问题。具体来说,我们首先根据每个SVC层的质量影响提出一种组播调度方案。在内容感知多播调度的指导下,我们依次优化了每个SVC层的资源分配。每个步骤的解决方案都要考虑到通道状况,剩余资源和客户要求。所提出的方案具有线性复杂度,并且在满足能量预算和信道访问约束的同时,为接纳的客户带来了最大的视频质量。实验结果表明,与最新的视频多播方法相比,我们的方案为多播客户端实现了显着的视频质量改进。

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