Coded caching in hybrid networks

Abhinav Sridhar, N. Karamchandani, V. Prabhakaran
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Abstract

Caching networks have been extensively studied from an information-theoretic perspective for various network topologies. In particular device-to-device (D2D) topologies have been considered and it has been shown that rates similar to a centralized server setup can be achieved. Hierarchical networks with an intermediate layer of cache called mirrors between the server and the users have been looked at previously and approximately optimal schemes have been developed. In this paper we consider a more general hybrid network, where the mirrors in hierarchical network are connected to form a D2D network in between the server and the end users. We study the trade-off between the sum-rate in the D2D network and the server transmission rate, to understand the extent to which the D2D network can act as a substitute for the server. To this end, we propose an achievable scheme to operate the network for any values of mirror and user cache memory, and prove that is optimal up to a constant additive and multiplicative gap.
混合网络中的编码缓存
缓存网络已经从信息论的角度对各种网络拓扑进行了广泛的研究。特别是考虑了设备到设备(D2D)拓扑,并表明可以实现与集中式服务器设置相似的速率。以前已经研究过在服务器和用户之间有一个称为镜像的中间缓存层的分层网络,并且已经开发出了近似最优的方案。在本文中,我们考虑了一种更一般的混合网络,其中分层网络中的镜像连接在服务器和最终用户之间形成D2D网络。我们研究了D2D网络和服务器传输速率之间的权衡,以了解D2D网络在多大程度上可以替代服务器。为此,我们提出了一种可实现的方案,可以在任意镜像和用户缓存的值下运行网络,并证明该方案在一个常数的加性和乘性间隙内是最优的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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