首页> 外文会议>Sensor, Mesh and Ad Hoc Communications and Networks, 2009. SECON '09 >A Cross-layer Optimized Distributed Scheduling Algorithm for Peer-to-Peer Video Streaming over Multi-hop Wireless Mesh Networks
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A Cross-layer Optimized Distributed Scheduling Algorithm for Peer-to-Peer Video Streaming over Multi-hop Wireless Mesh Networks

机译:用于跨多跳无线网状网络的对等视频流的跨层优化分布式调度算法

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Peer-to-Peer (P2P) video streaming services on the Internet have gained increasing popularity during the past few years. However, many problems still need to be addressed before it can be widely deployed in the wireless environment. The existing P2P overlay network architecture hides the underlying network topology, assuming channel quality is always in perfect condition. This works well for the Internet-based services, but hardly meets the user-perceived video quality requirement in wireless environments due to the time-varying nature of wireless channels. Inspired by the tightly-coupled relationship between P2P overlay networks and the underlying networks, we propose a novel scheduling algorithm on the basis of a quality-driven cross-layer design framework to jointly optimize the parameters of different network layers to achieve highly- improved video quality for P2P video streaming applications in multi-hop wireless mesh networks. In this paper, the quality-driven P2P scheduling algorithm is formulated into a distributed distortion-delay optimization problem, where the expected video distortion is minimized under the constraint of a given packet playback deadline to select the optimal combination of system parameters residing in different network layers. Then we provide the algorithmic solution to the formulated problem based on dynamic programming. The distributed optimization running on each partner node adopted in the scheduling algorithm greatly reduces the computational intensity. Extensive experimental results demonstrate 5-15dB quality enhancement in terms of PSNR by using the proposed scheduling algorithm.
机译:在过去的几年中,Internet上的对等(P2P)视频流服务已经越来越流行。但是,在将其广泛部署在无线环境中之前,仍然需要解决许多问题。假设信道质量始终处于理想状态,则现有的P2P覆盖网络体系结构将隐藏基础网络拓扑。这对于基于Internet的服务效果很好,但是由于无线通道的时变特性,几乎不能满足无线环境中用户感知的视频质量要求。受P2P覆盖网络与基础网络之间紧密耦合关系的启发,我们在质量驱动跨层设计框架的基础上提出了一种新颖的调度算法,以共同优化不同网络层的参数,以实现高度改进的视频多跳无线网状网络中P2P视频流应用程序的质量。在本文中,将质量驱动的P2P调度算法公式化为分布式失真延迟优化问题,在给定的数据包播放截止时间的约束下将预期的视频失真最小化,以选择驻留在不同网络中的系统参数的最佳组合层。然后,我们基于动态规划为提出的问题提供了算法解决方案。在调度算法中采用的每个伙伴节点上运行的分布式优化极大地降低了计算强度。大量的实验结果表明,通过使用所提出的调度算法,PSNR可以提高5-15dB。

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