TY - JOUR
T1 - Joint Trajectory and Power Optimization for Dynamic Spectrum Control-Assisted Secure UAV Communications
AU - Cao, Pu
AU - Li, Chenxi
AU - Li, Zan
AU - Guan, Lei
AU - Peng, Haixia
AU - Zhang, Chuan
N1 - Publisher Copyright:
© 1972-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - Uncrewed aerial vehicles (UAVs) play a crucial role in modern communication systems owing to their high mobility and broad coverage. However, due to the inherent open nature of the wireless channels, UAV-to-ground links are facing significant security threats from eavesdroppers and malicious jammers. To address these challenges, we propose a dynamic spectrum control (DSC) scheme integrating joint UAV trajectory and transmit power optimization to enhance UAV communication security in this paper. This scheme divides transmission channels from time and frequency dimensions and intelligently generates secure decision sequences using cryptographic principles based on real-time channel states, enabling transmissions for legitimate users without intra-cell interference. Based on a rapid-flooding time synchronization protocol, we analyze inter-cell collision probability (CP) and formulate an optimization problem for the secrecy rate. To further enhance security, we conduct a joint UAV trajectory and transmit power optimization. Through the successive convex approximation (SCA) method, we transform the non-convex optimization problem into a tractable convex form, obtaining a suboptimal solution. Simulations demonstrate that our proposed scheme significantly enhances security compared to conventional UAV communication methods.
AB - Uncrewed aerial vehicles (UAVs) play a crucial role in modern communication systems owing to their high mobility and broad coverage. However, due to the inherent open nature of the wireless channels, UAV-to-ground links are facing significant security threats from eavesdroppers and malicious jammers. To address these challenges, we propose a dynamic spectrum control (DSC) scheme integrating joint UAV trajectory and transmit power optimization to enhance UAV communication security in this paper. This scheme divides transmission channels from time and frequency dimensions and intelligently generates secure decision sequences using cryptographic principles based on real-time channel states, enabling transmissions for legitimate users without intra-cell interference. Based on a rapid-flooding time synchronization protocol, we analyze inter-cell collision probability (CP) and formulate an optimization problem for the secrecy rate. To further enhance security, we conduct a joint UAV trajectory and transmit power optimization. Through the successive convex approximation (SCA) method, we transform the non-convex optimization problem into a tractable convex form, obtaining a suboptimal solution. Simulations demonstrate that our proposed scheme significantly enhances security compared to conventional UAV communication methods.
KW - Uncrewed aerial vehicle communication
KW - dynamic spectrum control
KW - physical layer security
KW - secure transmission
UR - https://www.scopus.com/pages/publications/105041326061
U2 - 10.1109/TCOMM.2026.3698907
DO - 10.1109/TCOMM.2026.3698907
M3 - Article
AN - SCOPUS:105041326061
SN - 1558-0857
VL - 74
SP - 9408
EP - 9421
JO - IEEE Transactions on Communications
JF - IEEE Transactions on Communications
ER -