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Digital-Twin Empowered Site-Specific Radio Resource Management in 5G Aerial Corridor

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arxiv 2507.04566 v1 pith:A64HWHSZ submitted 2025-07-06 cs.IT math.IT

Digital-Twin Empowered Site-Specific Radio Resource Management in 5G Aerial Corridor

classification cs.IT math.IT
keywords corridordigital-twinbeamchallengesframeworkmaximizeoptimizationresource
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Base station (BS) association and beam selection in multi-cell drone corridor networks present unique challenges due to the high altitude, mobility and three-dimensional movement of drones. These factors lead to frequent handovers and complex beam alignment issues, especially in environments with dense BS deployments and varying signal conditions. To address these challenges, this paper proposes a channel-twin (CT) enabled resource-allocation framework for drone-corridor communications, where the CT constitutes the radio-channel component of a broader digital-twin (DT) environment. The CT supplies high-fidelity channel-state information (CSI), which drives a two-stage optimization procedure. In Stage 1, array-level beamforming weights at each BS are selected to maximize antenna gain. In Stage 2, the framework jointly optimizes drone-BS-beam associations at discrete corridor way-points to maximize end-to-end throughput. Simulation results confirm that the CT-driven strategy delivers significant throughput gains over baseline methods across diverse operating scenarios, validating the effectiveness of integrating precise digital-twin channel models with cross-layer resource optimization.

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