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Neural Channel Knowledge Map Assisted Scheduling Optimization of Active IRSs in Multi-User Systems

Information Theory 2025-08-12 v1 Artificial Intelligence Machine Learning math.IT

Abstract

Intelligent Reflecting Surfaces (IRSs) have potential for significant performance gains in next-generation wireless networks but face key challenges, notably severe double-pathloss and complex multi-user scheduling due to hardware constraints. Active IRSs partially address pathloss but still require efficient scheduling in cell-level multi-IRS multi-user systems, whereby the overhead/delay of channel state acquisition and the scheduling complexity both rise dramatically as the user density and channel dimensions increase. Motivated by these challenges, this paper proposes a novel scheduling framework based on neural Channel Knowledge Map (CKM), designing Transformer-based deep neural networks (DNNs) to predict ergodic spectral efficiency (SE) from historical channel/throughput measurements tagged with user positions. Specifically, two cascaded networks, LPS-Net and SE-Net, are designed to predict link power statistics (LPS) and ergodic SE accurately. We further propose a low-complexity Stable Matching-Iterative Balancing (SM-IB) scheduling algorithm. Numerical evaluations verify that the proposed neural CKM significantly enhances prediction accuracy and computational efficiency, while the SM-IB algorithm effectively achieves near-optimal max-min throughput with greatly reduced complexity.

Keywords

Cite

@article{arxiv.2508.07009,
  title  = {Neural Channel Knowledge Map Assisted Scheduling Optimization of Active IRSs in Multi-User Systems},
  author = {Xintong Chen and Zhenyu Jiang and Jiangbin Lyu and Liqun Fu},
  journal= {arXiv preprint arXiv:2508.07009},
  year   = {2025}
}

Comments

Propose Neural Channel Knowledge Map for multi-user scheduling

R2 v1 2026-07-01T04:42:32.652Z