English

Movable-Antenna Enabled Robust Vehicular Consumer Networks Under Imperfect CSI

Signal Processing 2026-04-21 v1

Abstract

The accelerating advancement of intelligent transportation systems has established consumer-oriented vehicular networks (CVNs) as a critical infrastructure for next-generation connected mobility. However, the high mobility of vehicular users (VUs) introduces significant channel state information (CSI) uncertainty, which severely undermines the performance of conventional fixed-position antenna systems. To address this, this paper explores the deployment of movable-antennas (MAs) to enhance communication robustness in CVNs under imperfect CSI conditions. We develop a joint optimization framework that dynamically coordinates the spatial positioning of MAs and transmit beamforming at the base station, with the objective of maximizing the worst-case sum rate across all VUs. The problem is formulated as a non-convex max-min optimization problem, subject to bounded CSI estimation errors, transmit power limits, and physical constraints on antenna displacement. By adopting an alternating optimization strategy, the original problem is decomposed into tractable subproblems, solved via techniques including the S-Procedure, Schur complement, and successive convex approximation. Numerical evaluations confirm that the proposed approach achieves substantial gains over existing benchmarks in terms of worst-case throughput.

Keywords

Cite

@article{arxiv.2604.17791,
  title  = {Movable-Antenna Enabled Robust Vehicular Consumer Networks Under Imperfect CSI},
  author = {Xuhui Zhang and Chunjie Wang and Wenchao Liu and Huijun Xing and Jinke Ren and Zheng Xing and Yanyan Shen},
  journal= {arXiv preprint arXiv:2604.17791},
  year   = {2026}
}

Comments

This manuscript is accepted by IEEE

R2 v1 2026-07-01T12:17:35.399Z