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How Much Can D2D Communication Reduce Content Delivery Latency in Fog Networks With Edge Caching?

机译:D2D通信可以通过边沿缓存雾网络中的内容交付延迟减少多少钱?

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A Fog-Radio Access Network (F-RAN) is studied in which cache-enabled Edge Nodes (ENs) with dedicated fronthaul connections to the cloud aim at delivering contents to mobile users. Using an information-theoretic approach, this work tackles the problem of quantifying the potential latency reduction that can be obtained by enabling Device-to-Device (D2D) communication over out-of-band broadcast links. Following prior work, the Normalized Delivery Time (NDT) - a metric that captures the high signal-to-noise ratio worst-case latency - is adopted as the performance criterion of interest. Joint edge caching, downlink transmission, and D2D communication policies based on compress-and-forward are proposed that are shown to be information-theoretically optimal to within a constant multiplicative factor of two for all values of the problem parameters, and to achieve the minimum NDT for a number of special cases. The analysis provides insights on the role of D2D cooperation in improving the delivery latency.
机译:雾无线电接入网(F-RAN)进行了研究,其中启用缓存边缘节点(ENS),在提供内容给移动用户专用fronthaul连接到云的目的。使用信息理论方法,这项工作铲球定量,可以通过使以上外的频段广播链接设备到设备(D2D)通信来获得的电势延迟降低的问题。继先前的工作,标准化的交货时间(NDT) - 度量捕捉高信噪比最坏情况下的延迟 - 被用作感兴趣的性能标准。基于压缩和转发接合边缘缓存,下行链路传输,和D2D通信策略建议,被示出为理论上信息最佳的两个用于问题参数的所有值的常数乘法因子内,并达到最小NDT为一些特殊情况。分析为D2D合作在提高交付延迟方面的作用提供了见解。

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