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Fundamental Limits of Cache-Aided Wireless BC: Interplay of Coded-Caching and CSIT Feedback

机译:缓存辅助无线BC的基本限制:编码缓存和CSIT反馈的相互作用

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Building on the recent coded-caching breakthrough by Maddah-Ali and Niesen, the work here considers the K -user cache-aided wireless multi-antenna symmetric broadcast channel with random fading and imperfect feedback, and analyzes the throughput performance as a function of feedback statistics and cache size. In this setting, this paper identifies the optimal cache-aided degrees-of-freedom (DoF) within a factor of 4, by identifying near-optimal schemes that exploit a new synergy between coded caching and delayed CSIT, as well as by exploiting the unexplored interplay between caching and feedback-quality. The DoF expressions reveal an initial gain due to current CSIT, and an additional gain due to coded caching, which is exponential in the sense that any linear decrease in the required DoF performance, allows for an exponential reduction in the required cache size. In the end, this paper reveals three new aspects of caching: a synergy between memory and delayed feedback, a tradeoff between memory and current CSIT, and a powerful ability to provide cache-aided feedback savings.
机译:基于Maddah-Ali和Niesen最近的编码缓存突破,此处的工作考虑了具有随机衰落和不完美反馈的K用户缓存辅助无线多天线对称广播信道,并分析了吞吐量性能与反馈的关系。统计信息和缓存大小。在这种情况下,本文通过确定利用编码缓存和延迟CSIT之间的新协同作用的近乎最佳方案,以及通过利用4倍内的最佳方案,确定了最佳的高速缓存辅助自由度(DoF)。缓存和反馈质量之间的未知相互作用。 DoF表达式显示由于当前CSIT导致的初始增益,以及由于编码缓存导致的附加增益,在所需DoF性能的任何线性下降都允许指数级减小所需的缓存大小的意义上,这是指数级的。最后,本文揭示了缓存的三个新方面:内存与延迟反馈之间的协同作用,内存与当前CSIT之间的权衡以及提供缓存辅助反馈节省的强大功能。

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