Risk-Aware UAV Trajectory Smoothing and Adaptive Beam Probing for mmWave Beam Tracking
编号:122 访问权限:仅限参会人 更新:2026-07-22 16:10:11 浏览:8次 Online

报告开始:2026年07月30日 17:20(Asia/Kolkata)

报告时间:15min

所在会场:[S1] 5G and beyond Wireless Networks [S1-3] 5G and beyond Wireless Networks

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摘要
Low-altitude unmanned aerial vehicles (UAVs) that transmit sensing data or video streams over millimeter-wave (mmWave) links incur a received-power loss when a narrow beam is misselected. Top-1 beam prediction reduces beam-training overhead but is unreliable near beam-transition regions. Fixed-top-$K$ beam probing improves link reliability at the cost of a constant probing overhead per frame. This paper studies a controlled synthetic UAV beam-link problem in which the receiver selects the candidate-beam probing set size and the UAV controller applies bounded trajectory smoothing. The proposed framework combines ranked beam prediction, future beam-loss risk estimation, risk-triggered adaptive top-$K$ beam probing, and finite-horizon model predictive control (MPC). The objective accounts for estimated beam loss, future beam-loss risk, probing overhead, trajectory smoothness, and mission-path deviation. For the pilot split with 765/153/306 training/validation/test samples, adaptive top-3 risk-aware MPC reduces the 95th-percentile (P95) beam loss from 2.3180 dB with top-1 prediction and 1.1735 dB with smoothing-only control to 0.5829 dB, while requiring 2.105 probed beams per frame on average. A larger five-seed synthetic diagnostic confirms top-$K$ beam containment and probing-overhead reduction, but shows weak risk-score discrimination across unseen trajectories. The simulation results support an overhead-aware reduction in P95 beam loss under controlled synthetic beam-link conditions.
关键词
UAV communications,millimeter-wave communications,beam prediction,adaptive beam probing,trajectory optimization
报告人
Trong-Minh Hoang
Lecturer Posts and Telecommunications Institute of Technology

Thi Thao Luu
Lecturer East Asia University of Technology, Hanoi, Vietnam

稿件作者
Thi Thao Luu East Asia University of Technology, Hanoi, Vietnam
Huy-Long Tran Posts and Telecommunications Institute of Technology
Sinh-Cong Lam VNU University of Engineering and Technology, Hanoi, Vietnam
Trong-Minh Hoang Posts and Telecommunications Institute of Technology
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重要日期
  • 会议日期

    07月30日

    2026

    08月01日

    2026

  • 07月26日 2026

    初稿截稿日期

  • 07月30日 2026

    注册截止日期

主办单位
The United Societies of Science
承办单位
Kongunadu College of Engineering and Technology
协办单位
IEEE Section
IEEE Madras Section
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