English

Toward Safe and Energy-Efficient 5G NR V2X Communications in Rural Environments

Systems and Control 2026-03-03 v3 Systems and Control Signal Processing

Abstract

Connected braking can reduce fatal collisions in connected and autonomous vehicles (CAVs) by using reliable, low-latency 5G New Radio (NR) links, especially NR Sidelink Vehicle-to-Everything (V2X). In rural areas, road side units are sparse and power-constrained, so energy efficiency must be considered alongside safety. This paper studies how three communication control factors including subcarrier spacing (SCS\mathrm{SCS}), modulation and coding scheme (MCS\mathrm{MCS}), and transmit power (PtP_{\mathrm{t}}) should be configured to balance safety and energy consumption in rural scenarios in light and heavy traffic scenarios. Safety is quantified by the packet receive ratio (PRR\mathrm{PRR}) against the minimum communication distance DcommD_{\mathrm{comm}}, defined as the distance that the vehicle travels during the transmission of the safety message. Results show that, under heavy traffic, increasing PtP_{\mathrm{t}} and selecting a low-rate MCS\mathrm{MCS} at SCS=30\mathrm{SCS} = 30 kHz sustains high PRR\mathrm{PRR} at DcommD_{\mathrm{comm}}, albeit with higher energy cost. In light traffic, maintaining lower PtP_\mathrm{t} with low MCS\mathrm{MCS} levels achieves a favorable reliability-energy trade-off while preserving acceptable PRR\mathrm{PRR} at DcommD_{\mathrm{comm}}. These findings demonstrate the necessity of adaptive, energy-aware strategy to guarantee both safety and energy efficiency in rural V2X systems.

Keywords

Cite

@article{arxiv.2510.12539,
  title  = {Toward Safe and Energy-Efficient 5G NR V2X Communications in Rural Environments},
  author = {Zhanle Zhao and Son Dinh-Van and Yuen Kwan Mo and Siddartha Khastgir and Matthew D. Higgins},
  journal= {arXiv preprint arXiv:2510.12539},
  year   = {2026}
}

Comments

Accepted version