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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Multimedia Relay Resource Allocation for Energy Efficient Wireless Networks: High-Layer Content Prioritization With Low-Layer Diversity Cooperation
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Multimedia Relay Resource Allocation for Energy Efficient Wireless Networks: High-Layer Content Prioritization With Low-Layer Diversity Cooperation

机译:节能无线网络的多媒体中继资源分配:具有低层多样性合作的高层内容优先级

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摘要

With the popularity of versatile mobile multimedia applications and the pressing need to reduce energy consumption in future wireless networks, new challenges have been posed to maintain adequate coverage, quality of service, and reliability for big-scale multimedia traffic. Specifically, in this paper we introduce a cooperative multimedia relay framework and investigate premium-regular-diversity-based multimedia resource allocation treatment approaches. We also comparatively study five generic wireless multimedia relay scenarios including direct transmission, single relay, multiple pure relays, relay cooperation with space-time coding, and relay coordination with distributed beamforming. The key contribution of the new relay resource allocation framework is that packet importance priority diversity at the application layer is jointly considered with spatial diversity and relay coordination protocols at lower layers. Premium packets and regular packets of multimedia streams are adaptively allocated to relay nodes, and transmission resources are optimally allocated with regards to energy budget. Extensive simulation results demonstrate that the proposed resource allocation paradigm using multirelay coordination has significant video quality enhancement and energy saving potentials to support future big-data wireless multimedia traffic.
机译:随着通用移动多媒体应用的普及以及减少未来无线网络能耗的紧迫需求,为保持足够的覆盖范围,服务质量和大规模多媒体业务的可靠性提出了新的挑战。具体而言,在本文中,我们介绍了一种协作式多媒体中继框架,并研究了基于溢价-常规-多样性的多媒体资源分配处理方法。我们还比较研究了五个通用无线多媒体中继方案,包括直接传输,单个中继,多个纯中继,具有时空编码的中继协作以及具有分布式波束成形的中继协调。新的中继资源分配框架的关键贡献在于,在应用层与低层的空间分集和中继协调协议共同考虑了分组重要性优先级分集。多媒体流的优质分组和常规分组被自适应地分配给中继节点,并且就能量预算而言,最优地分配了传输资源。大量的仿真结果表明,所提出的使用多中继协调的资源分配范例具有显着的视频质量增强和节能潜力,可以支持未来的大数据无线多媒体流量。

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