English

Improved Approximation of Storage-Rate Tradeoff for Caching with Multiple Demands

Information Theory 2016-06-15 v1 Networking and Internet Architecture math.IT

Abstract

Caching at the network edge has emerged as a viable solution for alleviating the severe capacity crunch in modern content centric wireless networks by leveraging network load-balancing in the form of localized content storage and delivery. In this work, we consider a cache-aided network where the cache storage phase is assisted by a central server and users can demand multiple files at each transmission interval. To service these demands, we consider two delivery models - (1)(1) centralized content delivery where user demands at each transmission interval are serviced by the central server via multicast transmissions; and (2)(2) device-to-device (D2D) assisted distributed delivery where users multicast to each other in order to service file demands. For such cache-aided networks, we present new results on the fundamental cache storage vs. transmission rate tradeoff. Specifically, we develop a new technique for characterizing information theoretic lower bounds on the storage-rate tradeoff and show that the new lower bounds are strictly tighter than cut-set bounds from literature. Furthermore, using the new lower bounds, we establish the optimal storage-rate tradeoff to within a constant multiplicative gap. We show that, for multiple demands per user, achievable schemes based on repetition of schemes for single demands are order-optimal under both delivery models.

Keywords

Cite

@article{arxiv.1606.04202,
  title  = {Improved Approximation of Storage-Rate Tradeoff for Caching with Multiple Demands},
  author = {Avik Sengupta and Ravi Tandon},
  journal= {arXiv preprint arXiv:1606.04202},
  year   = {2016}
}

Comments

Extended version of a submission to IEEE Trans. on Communications

R2 v1 2026-06-22T14:24:35.552Z