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Video transport over ad hoc networks: multistream coding with multipath transport

机译:自组织网络上的视频传输:具有多路径传输的多流编码

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Enabling video transport over ad hoc networks is more challenging than over other wireless networks. The wireless links in an ad hoc network are highly error prone and can go down frequently because of node mobility, interference, channel fading, and the lack of infrastructure. However, the mesh topology of ad hoc networks implies that it is possible to establish multiple paths between a source and a destination. Indeed, multipath transport provides an extra degree of freedom in designing error resilient video coding and transport schemes. In this paper, we propose to combine multistream coding with multipath transport, to show that, in addition to traditional error control techniques, path diversity provides an effective means to combat transmission error in ad hoc networks. The schemes that we have examined are: 1) feedback based reference picture selection; 2) layered coding with selective automatic repeat request; and 3) multiple description motion compensation coding. All these techniques are based on the motion compensated prediction technique found in modern video coding standards. We studied the performance of these three schemes via extensive simulations using both Markov channel models and OPNET Modeler. To further validate the viability and performance advantages of these schemes, we implemented an ad hoc multiple path video streaming testbed using notebook computers and IEEE 802.11b cards. The results show that great improvement in video quality can be achieved over the standard schemes with limited additional cost. Each of these three video coding/transport techniques is best suited for a particular environment, depending on the availability of a feedback channel, the end-to-end delay constraint, and the error characteristics of the paths.
机译:与其他无线网络相比,在ad hoc网络上启用视频传输更具挑战性。自组织网络中的无线链路极易出错,并且由于节点移动性,干扰,信道衰落和缺乏基础结构而可能经常中断。但是,ad hoc网络的网状拓扑意味着有可能在源和目标之间建立多条路径。实际上,多径传输在设计容错视频编码和传输方案时提供了额外的自由度。在本文中,我们提出将多流编码与多路径传输相结合,以表明,除了传统的错误控制技术外,路径分集还提供了一种有效的方法来应对ad hoc网络中的传输错误。我们研究的方案是:1)基于反馈的参考图片选择; 2)具有选择性自动重复请求的分层编码; 3)多描述运动补偿编码。所有这些技术都是基于现代视频编码标准中的运动补偿预测技术。我们使用Markov通道模型和OPNET Modeler通过广泛的仿真研究了这三种方案的性能。为了进一步验证这些方案的可行性和性能优势,我们使用笔记本计算机和IEEE 802.11b卡实现了临时多路径视频流测试平台。结果表明,与标准方案相比,视频质量可以大大提高,而附加成本却很少。这三种视频编码/传输技术中的每一种都最适合特定的环境,具体取决于反馈通道的可用性,端到端延迟约束以及路径的错误特性。

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