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Achievable DoF Bounds for Cache-Aided Asymmetric MIMO Communications

Information Theory 2026-03-20 v1 Signal Processing math.IT

Abstract

This is an extended journal version of the conference paper published in ISIT 2025; submitted to IEEE Transactions on Communications (TCOM). Integrating coded caching (CC) into multiple-input multiple-output (MIMO) communications significantly enhances the achievable degrees of freedom (DoF). This paper investigates a practical cache-aided asymmetric MIMO configuration with cache ratio γ\gamma, where a server with LL transmit antennas communicates with KK users. The users are partitioned into JJ groups, and each user in group jj has GjG_j receive antennas. We propose four content-aware MIMO-CC strategies: \emph{min-GG} enforces symmetry using the smallest antenna count among users; \emph{Grouping} maximizes intra-subset spatial multiplexing gain at the expense of some global caching gain; \emph{Super-grouping} aggregates users into optimized \emph{min-GG}-based super-sets with identical effective receive multiplexing gains before applying \emph{Grouping} across them; and \emph{Phantom} redistributes spatial resources assuming ``phantom'' antennas at the users to bridge the performance gains of \emph{min-GG} and \emph{Grouping}. We develop these asymmetric strategies under three reference symmetric CC placement-delivery policies with guaranteed linear decodability: a DoF-optimal policy achieving the optimal single-shot DoF, and two closed-form policies, namely combinatorial and linear cyclic low-complexity constructions, with the cyclic policy attaining DoF performance close to the others in many operating regimes. Analytical and numerical results demonstrate significant DoF improvements across various system configurations, and that policy-strategy combinations offer flexible trade-offs between DoF and subpacketization complexity.

Keywords

Cite

@article{arxiv.2603.18240,
  title  = {Achievable DoF Bounds for Cache-Aided Asymmetric MIMO Communications},
  author = {Mohammad NaseriTehrani and MohammadJavad Salehi and Antti Tölli},
  journal= {arXiv preprint arXiv:2603.18240},
  year   = {2026}
}

Comments

Extended journal version; submitted to IEEE Transactions on Communications (TCOM). An earlier conference version was published in ISIT 2025 (DOI: 10.1109/ISIT63088.2025.11195683)

R2 v1 2026-07-01T11:27:03.323Z