English

The Interplay of Spectral Efficiency, User Density, and Energy in Grant-based Access Protocols

Information Theory 2024-01-30 v2 math.IT

Abstract

We employ grant-based access with retransmissions for multiple users with small payloads, particularly at low spectral efficiency (SE). The radio resources are allocated via NOMA in the time into TT slots and frequency dimensions, with a measure of non-orthogonality η\eta. Retransmissions are stored in a receiver buffer with a finite size CbufC_{\sf buf} and combined via HARQ, using Chase Combining (CC) and Incremental Redundancy (IR). We determine the best scaling for the SE (bits/rdof) and for the user density J/nJ/n, for a given number of users JJ and a blocklength nn, versus SNR (ρ\rho) per bit, i.e., the ratio Eb/N0E_b/N_0, for the sum-rate optimal regime and when the interference is treated as noise (TIN), using a finite blocklength analysis. Contrasting the classical scheme (no retransmissions) with CC-NOMA, CC-OMA, and IR-OMA strategies in TIN and sum-rate optimal cases, the numerical results on the SE demonstrate that CC-NOMA outperforms, almost in all regimes, the other approaches. In the sum-rate optimal regime, the scalings of J/nJ/n versus Eb/N0E_b/N_0 deteriorate with TT, yet from the most degraded to the least, the ordering of the schemes is as (i) classical, (ii) CC-OMA, (iii) IR-OMA, and (iv) CC-NOMA, demonstrating the robustness of CC-NOMA. Contrasting TIN models at low ρ\rho, the scalings of J/nJ/n for CC-based models improve the best, whereas, at high ρ\rho, the scaling of CC-NOMA is poor due to higher interference, and CC-OMA becomes prominent due to combining retransmissions and its reduced interference. The scaling results are applicable over a range of η\eta, TT, CbufC_{\sf buf}, and JJ, at low received SNR. The proposed analytical framework provides insights into resource allocation in grant-based access and specific 5G use cases for massive URLLC uplink access.

Keywords

Cite

@article{arxiv.2207.11756,
  title  = {The Interplay of Spectral Efficiency, User Density, and Energy in Grant-based Access Protocols},
  author = {Derya Malak},
  journal= {arXiv preprint arXiv:2207.11756},
  year   = {2024}
}

Comments

A short version in WiOpt'22, and this version in TCOM'24