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Reliable and Efficient Trajectory Design in UAV-Aided Wireless Networks

Reliable and Efficient Trajectory Design in UAV-Aided Wireless Networks

- Default Title
Description
Part I : UAV trajectory design.- 1 Optimal 1D UAV Trajectory Design for Multiuser Wireless Power Transfer.- 2 Efficent UAV Trajectory Design for Multiuser Wireless Power Transfer.- 3 Sustainable Wireless Sensor Networks with UAV-Enabled Wireless Power Transfer.- Part II : Joint User scheduling and UAV trajectory design.- 4 Joint User Scheduling and UAV Trajectory Design for UAV-Aided Data Collection.- 5 Space Pruning Based Time Minimization in Delay Constrained Multi-Task UAV-Based Sensing.- 6 DRL-Based Joint User Scheduling and UAV Trajectory Design in UAV-Assisted MEC System.- Part III : Joint Resource allocation and UAV trajectory design.- 7 Joint Trajectories and Resource Allocation for UAV-Enabled Integrated Periodic Sensing and Communication.- 8 Joint Analog Beamforming and UAV Trajectory Planning for Nonlinear Wireless Power Transfer.- 9. Joint Directional Antenna Orientation and UAV Trajectory Design in UAV-Enabled Networks.- 10 Joint Trajectories and Resource Allocation for Multi-UAVs Assisted Nonlinear Wireless Power Transfer.- Part IV : Privacy-Preserving for UAV Networks.- 11 Joint Transmit Power and UAV Trajectory Design for UAV-Enabled Covert Communication.- 12 Intrusion Detection System in UAV devices.- 13 Collective Intrusion Detection System for UAV Networks.- 14 Misbehavior for Air-Ground Emergency Networks.
Product details
Number of Pages:
348
Release Date:
2025-07-25
Publication Date:
2025-07-25
Publisher:
Springer
Languages:
Original: English
ISBN10:
9819659876
ISBN13:
9789819659876
GPSR Manufacturer Reference:
Weight:
749 g
Height:
160 cm
Width:
241 cm
Thickness:
24 cm
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