Sensing-Assisted Adaptive Beam Probing With Calibrated Multimodal Priors and Uncertainty-Aware Schedulingopen access
- Authors
- Orimogunje, Abidemi; Ninkovic, Vukan; Kundacina, Ognjen; Park, Hyunwoo; Kim, Sunwoo; Vukobratovic, Dejan; Twahirwa, Evariste; Gashema, Gaspard
- Issue Date
- Mar-2026
- Publisher
- Institute of Electrical and Electronics Engineers Inc.
- Keywords
- Beam alignment; contextual bandits; millimeter wave and terahertz communication; multimodal sensing; uncertainty estimation
- Citation
- IEEE Wireless Communications Letters, v.15, pp 2438 - 2442
- Pages
- 5
- Indexed
- SCIE
SCOPUS
- Journal Title
- IEEE Wireless Communications Letters
- Volume
- 15
- Start Page
- 2438
- End Page
- 2442
- URI
- https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/219349
- DOI
- 10.1109/LWC.2026.3679539
- ISSN
- 2162-2337
2162-2345
- Abstract
- Highly directional mmWave/THz links require rapid beam alignment, but exhaustive codebook sweeps impose prohibitive training overhead. This letter proposes a sensing-assisted adaptive probing policy that maps multimodal sensing (radar/LiDAR/camera) to a calibrated prior over beams, predicts per-beam reward with a deep Q-ensemble whose disagreement serves as a practical epistemic-uncertainty proxy, and selects a small probe set using a Prior-Q upper-confidence score. The probing budget is adapted from prior entropy, explicitly coupling sensing confidence to beam-training overhead, where E[Kt] denotes the average number of probed beams per sweep. A margin-based safety rule prevents low-SNR locks: outages are defined by an SNR threshold θ, and the shield uses a robustness margin Δ dB above this boundary. Experiments on DeepSense- 6G (train: scenarios 42 and 44; test: 43) with a 21-beam DFT codebook achieve Top-1/Top-3 of 0.81/0.99 with E[Kt] ≈ 2 and zero observed outages at θ= 0 dB with Δ = 3 dB.
- Files in This Item
-
Go to Link
- Appears in
Collections - 서울 공과대학 > 서울 융합전자공학부 > 1. Journal Articles

Items in ScholarWorks are protected by copyright, with all rights reserved, unless otherwise indicated.