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Speeding Up Future Video Distribution via Channel-Aware Caching-Aided Coded Multicast

机译:通过通道感知的缓存辅助编码多播加快未来的视频分发

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摘要

Future Internet usage will be dominated by the consumption of a rich variety of online multimedia services accessed from an exponentially growing number of multimedia capable mobile devices. As such, future Internet designs will be challenged to provide solutions that can deliver bandwidth-intensive delay-sensitive on-demand video-based services over increasingly crowded and bandwidth-limited wireless access networks. One of the main reasons for the bandwidth stress facing wireless network operators is the difficulty to exploit the multicast nature of the wireless medium when wireless users or access points rarely experience the same channel conditions or access the same content at the same time. In this paper, we present and analyze a novel wireless video delivery paradigm based on the combined use of channel-aware caching and coded multicasting that allows simultaneously serving multiple cache-enabled receivers that may be requesting different content and experiencing different channel conditions. To this end, we reformulate the caching-aided coded multicast problem as a joint source-channel coding problem and design an achievable scheme that preserves the cache-enabled multiplicative throughput gains of the error-free scenario, by guaranteeing per-receiver rates unaffected by the presence of receivers with worse channel conditions.
机译:未来的互联网使用将由从能够使用多媒体的移动设备呈指数增长的多种在线多媒体服务的消费中占主导地位。因此,未来的互联网设计将面临提供可在日益拥挤且带宽受限的无线接入网络上交付带宽密集型,延迟敏感型按需视频服务的解决方案的挑战。无线网络运营商面临的带宽压力的主要原因之一是,当无线用户或接入点很少经历相同的信道条件或同时访问相同的内容时,难以利用无线介质的多播性质。在本文中,我们基于信道感知缓存和编码多播的组合使用,提出并分析了一种新颖的无线视频传输范例,该范例允许同时服务于多个启用缓存的接收器,这些接收器可能请求不同的内容并经历不同的信道条件。为此,我们将缓存辅助的编码多播问题重新表述为联合的源通道编码问题,并设计了一种可实现的方案,该方案通过保证不受每个接收者影响的速率来保留无错误情况下启用缓存的乘法吞吐量。信道条件较差的接收器的存在。

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