Propagation Characterization and Channel Modeling for UAV Communications [electronic resource] / by Lu Bai, Ziwei Huang, Xiang Cheng.

Por: Bai, Lu [author.]Colaborador(es): Huang, Ziwei [author.] | Cheng, Xiang [author.] | SpringerLink (Online service)Tipo de material: TextoTextoSeries Wireless NetworksEditor: Cham : Springer International Publishing : Imprint: Springer, 2024Edición: 1st ed. 2024Descripción: X, 226 p. 85 illus., 82 illus. in color. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9783031575037Tema(s): Computer networks  | Wireless communication systems | Mobile communication systems | Telecommunication | Computer Communication Networks | Wireless and Mobile Communication | Communications Engineering, NetworksFormatos físicos adicionales: Printed edition:: Sin título; Printed edition:: Sin título; Printed edition:: Sin títuloClasificación CDD: 004.6 Clasificación LoC:TK5105.5-5105.9Recursos en línea: Libro electrónicoTexto
Contenidos:
Chapter.1. UAV Communications and Channel Modeling -- Chapter.2.Time Stationary RS-GBSM for UAV Narrowband Channels -- Chapter.3.Time Non-Stationary RS-GBSM for UAV Narrowband Channels -- Chapter.4.Time Non-Stationary RS-GBSM for UAV Wideband Channels -- Chapter.5.Time-Space Non-Stationary IS-GBSM for UAV Wideband Channels -- Chapter.6.T-S-F Non-Stationary IS-GBSM with 3D Continuously Arbitrary Trajectory and Self-Rotation -- Chapter.7.Mixed-Bouncing Based IS-GBSM for UAV Wideband Channels.-Chapter.8.T-S-F Non-Stationary IS-GBSM with Time-Space Consistency for UAV Wideband Channels.-Chapter.9.Conclusions and Future Research Directions.
En: Springer Nature eBookResumen: This book focuses on the propagation characterization and channel modeling of Unmanned Aerial Vehicle (UAV) communications. Currently, there are no books that cover this specific topic. The authors fill in this void by elaborating accurate yet easy-to-use UAV channel models. The authors also present such topics as propagation characteristics of UAV communications, a time stationary regular-shaped geometry-based stochastic model (RS-GBSM) for UAV narrowband channels. It also introduces a time non-stationary RS-GBSM for UAV narrowband channels, a time non-stationary RS-GBSM for UAV wideband channels, a time-space non-stationary irregular-shaped geometry-based stochastic model (IS-GBSM) for UAV wideband channels and more. Finally, this book closes up with some promising directions, hoping to promote future research outcomes in the field of UAV channel modeling. As the UAV technology matures rapidly, UAV communications are shifting from military development to civilian and commercial sectors. The UAV communication is widely considered as a significant and indispensable component of wireless communications. It is well known that an accurate yet easy-to-use UAV channel model is the foundation of designing a proper UAV communication system and evaluating its performance. This book also provides valuable suggestions for the design of UAV communication systems by adequately presenting the UAV propagation characterization and channel modeling. This book is mainly written for researchers and professionals working in wireless communications. Advanced-level students majoring in computer science or electrical engineering may also find the content useful as a secondary textbook.
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Chapter.1. UAV Communications and Channel Modeling -- Chapter.2.Time Stationary RS-GBSM for UAV Narrowband Channels -- Chapter.3.Time Non-Stationary RS-GBSM for UAV Narrowband Channels -- Chapter.4.Time Non-Stationary RS-GBSM for UAV Wideband Channels -- Chapter.5.Time-Space Non-Stationary IS-GBSM for UAV Wideband Channels -- Chapter.6.T-S-F Non-Stationary IS-GBSM with 3D Continuously Arbitrary Trajectory and Self-Rotation -- Chapter.7.Mixed-Bouncing Based IS-GBSM for UAV Wideband Channels.-Chapter.8.T-S-F Non-Stationary IS-GBSM with Time-Space Consistency for UAV Wideband Channels.-Chapter.9.Conclusions and Future Research Directions.

This book focuses on the propagation characterization and channel modeling of Unmanned Aerial Vehicle (UAV) communications. Currently, there are no books that cover this specific topic. The authors fill in this void by elaborating accurate yet easy-to-use UAV channel models. The authors also present such topics as propagation characteristics of UAV communications, a time stationary regular-shaped geometry-based stochastic model (RS-GBSM) for UAV narrowband channels. It also introduces a time non-stationary RS-GBSM for UAV narrowband channels, a time non-stationary RS-GBSM for UAV wideband channels, a time-space non-stationary irregular-shaped geometry-based stochastic model (IS-GBSM) for UAV wideband channels and more. Finally, this book closes up with some promising directions, hoping to promote future research outcomes in the field of UAV channel modeling. As the UAV technology matures rapidly, UAV communications are shifting from military development to civilian and commercial sectors. The UAV communication is widely considered as a significant and indispensable component of wireless communications. It is well known that an accurate yet easy-to-use UAV channel model is the foundation of designing a proper UAV communication system and evaluating its performance. This book also provides valuable suggestions for the design of UAV communication systems by adequately presenting the UAV propagation characterization and channel modeling. This book is mainly written for researchers and professionals working in wireless communications. Advanced-level students majoring in computer science or electrical engineering may also find the content useful as a secondary textbook.

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