具有多个随机请求的缓存辅助编码多播

Mingyue Ji, A. Tulino, J. Llorca, G. Caire
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引用次数: 56

摘要

在过去几年中,缓存网络的容量受到了相当大的关注。一个特别研究的设置是共享链路缓存网络,在这个网络中,访问文件库的单个源与多个用户通信,每个用户都有存储库文件段(数据包)的能力,通过共享的多播链路。每个用户根据共同的需求分布从库中请求一个文件,服务器发送一个编码的多播消息以一次满足所有用户。这个问题包括找到最小的平均码字长度来满足这些请求。本文考虑了每个用户根据相同的公共需求分布提出L≥1个独立请求的概化情况。我们提出了一种基于随机矢量(分组)缓存放置和多个组播索引编码的可实现方案,该方案在每个文件B的数据包数量趋于无穷大的渐近区域内是顺序最优的。然后我们证明,当每个用户请求的数量L足够大时,所提出方案的标量(B = 1)版本仍然可以保持顺序最优性。我们的研究结果提供了具有多个随机请求的共享链路缓存网络的一阶最优特性,揭示了L对缓存辅助编码多播方案性能的关键影响。
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Caching-aided coded multicasting with multiple random requests
The capacity of caching networks has received considerable attention in the past few years. A particularly studied setting is the shared link caching network, in which a single source with access to a file library communicates with multiple users, each having the capability to store segments (packets) of the library files, over a shared multicast link. Each user requests one file from the library according to a common demand distribution and the server sends a coded multicast message to satisfy all users at once. The problem consists of finding the smallest possible average codeword length to satisfy such requests. In this paper, we consider the generalization to the case where each user places L ≥ 1 independent requests according to the same common demand distribution. We propose an achievable scheme based on random vector (packetized) caching placement and multiple groupcast index coding, shown to be order-optimal in the asymptotic regime in which the number of packets per file B goes to infinity. We then show that the scalar (B = 1) version of the proposed scheme can still preserve order-optimality when the number of per-user requests L is large enough. Our results provide the first order-optimal characterization of the shared link caching network with multiple random requests, revealing the key effects of L on the performance of caching-aided coded multicast schemes.
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