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Reliable and efficient trajectory de...
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Hu, Yulin.
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Reliable and efficient trajectory design in UAV-aided wireless networks
Record Type:
Electronic resources : Monograph/item
Title/Author:
Reliable and efficient trajectory design in UAV-aided wireless networks/ edited by Yulin Hu ... [et al.].
other author:
Hu, Yulin.
Published:
Singapore :Springer Nature Singapore : : 2025.,
Description:
vi, 339 p. :ill. (chiefly col.), digital ;24 cm.
[NT 15003449]:
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.
Contained By:
Springer Nature eBook
Subject:
Aerial networks (Computer networks) -
Online resource:
https://doi.org/10.1007/978-981-96-5988-3
ISBN:
9789819659883
Reliable and efficient trajectory design in UAV-aided wireless networks
Reliable and efficient trajectory design in UAV-aided wireless networks
[electronic resource] /edited by Yulin Hu ... [et al.]. - Singapore :Springer Nature Singapore :2025. - vi, 339 p. :ill. (chiefly col.), digital ;24 cm.
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.
This book focuses on the trajectory design technologies of unmanned aerial vehicles (UAVs) in wireless networks. Multiple pure trajectory design and joint design schemes have been proposed, from the trajectory characterization and optimization to simulation evaluations. Different UAV-Aided wireless communication networks have been considered, involving wireless power transfer (WPT), integrated sensing and communications (ISAC), data collection and covert communication. An in-depth study on privacy-preserving for UAV has also been presented. The book benefits researchers, engineers, and graduate students interested in the wireless communication system, UAV-assisted networks.
ISBN: 9789819659883
Standard No.: 10.1007/978-981-96-5988-3doiSubjects--Topical Terms:
3790252
Aerial networks (Computer networks)
LC Class. No.: TK5103.254
Dewey Class. No.: 621.384
Reliable and efficient trajectory design in UAV-aided wireless networks
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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.
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This book focuses on the trajectory design technologies of unmanned aerial vehicles (UAVs) in wireless networks. Multiple pure trajectory design and joint design schemes have been proposed, from the trajectory characterization and optimization to simulation evaluations. Different UAV-Aided wireless communication networks have been considered, involving wireless power transfer (WPT), integrated sensing and communications (ISAC), data collection and covert communication. An in-depth study on privacy-preserving for UAV has also been presented. The book benefits researchers, engineers, and graduate students interested in the wireless communication system, UAV-assisted networks.
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