Joint 3D Trajectory Design and Resource Allocation for Secure Dual-UAV-aided Underlay Systems

2026-06-16T08:51:44Z05643fa15423dad2b76415242e7538d3bfbb4776d56525e7930db51612a4a798
Lean4UAVchannel-estimationcompressed-sensingcovering-codesdetectiondynamic-metasurface-antennaseavesdropperformal-verificationinsertion-deletion-codesjammingmassive-MIMOmetasurface-antennasmmWavephase-noisephysical-layer-securityproof-carrying-artifactsecret-key-generationsparse-recoverystatistical-computational-gaptrajectory-optimization

What happened

Collection of arXiv-sourced research (June 16, 2026) spanning wireless communications, coding theory, formal verification, and statistical-computational limits. Security-relevant papers include: a dual-UAV underlay data-collection system that jointly optimizes 3D UAV trajectories, jamming power, GD transmit power and scheduling to maximize average secrecy spectral efficiency against an aerial eavesdropper; a physical-layer secret-key generation scheme for UAV links based on codeword reconstruction and soft-decision decoding that reduces legitimate key disagreement while degrading eavesdropper’

Why it matters

A reviewed impact interpretation has not been published for this record.

Evidence and limitations

Source ID
arxiv_math_it
Record identifier
05643fa15423dad2b76415242e7538d3bfbb4776d56525e7930db51612a4a798
Enrichment time
2026-06-16T08:51:44Z
AI-assisted enrichment
Yes

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Record · Joint 3D Trajectory Design and Resource Allocation for Secure Dual-UAV-aided Underlay Systems · Baitaphish