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EV-CAST: Interference and Energy-Aware Video Multicast Exploiting Collaborative Relays

机译:EV-CAST:干扰和能量感知视频组播利用协作继电器

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Video multicast over wireless local area network (WLAN) has been gaining attraction for applications sharing a venue-specific common video with multiple users. However, wireless multicast is limited by a receiver that has the weakest communication link to the source. Collaborative relaying could overcome this challenge by enabling selected receiver nodes to relay the packets from the source to other receivers. We propose EV-CAST, an interference and energy-aware video multicast system using collaborative relays, which entails (i) online topology management based on interference-aware link characterization, (ii) joint selection of relay nodes and transmission parameters, and (iii) polling-based relay protocol. Our proposed algorithm, the core of EV-CAST, judiciously selects the relay nodes and transmission parameters in consideration of interference, battery status, and spatial reuse. Our prototype-based experiment results demonstrate that EV-CAST enhances video multicast delivery under various network scenarios. EV-CAST enables 2x more nodes to achieve a target video packet loss ratio with 0.59x shorter airtime than the state-of-the-art video multicast scheme.
机译:视频组播通过无线局域网(WLAN)获得了与多个用户共享场地特定的公共视频的应用程序的吸引力。然而,无线多播受到具有到源最弱的通信链路的接收器的限制。协作中继可以通过启用选定的接收器节点将数据包从源从源传递到其他接收器来克服这一挑战。我们提出了使用协作继电器的EV-CAST,干扰和能量感知视频多播系统,其需要(i)基于干扰感知链接表征的在线拓扑管理,(ii)联合选择中继节点和传输参数,以及(III )基于轮询的继电器协议。我们所提出的算法,EV-CAST的核心,明智地考虑干扰,电池状态和空间重用来选择继电器节点和传输参数。我们的原型基础实验结果表明,EV-Cast在各种网络场景下提高了视频多播交付。 EV-CAST使2X更多节点实现目标视频丢包比率,而不是最先进的视频多播方案的0.59倍。

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