Receiver Design for High Spectral Efficiency Communication Systems in Beyond 5G

CHF 202.20
Auf Lager
SKU
E3OK2SCGIL3
Stock 1 Verfügbar
Geliefert zwischen Mi., 26.11.2025 und Do., 27.11.2025

Details

This book focuses on the receiver design issue in high spectral efficiency communication systems, which is one of the main research directions in beyond 5G and 6G era. In particular, this book studies two technologies to improve the spectral efficiency, i.e., FTN signaling which transmits more data information in the same time period and NOMA scheme which supports more users with the same resource elements. Different commonly used channel propagation conditions are considered, and advanced signal processing algorithms have been developed for designing receivers, which is suitable for low-complexity receiver design in engineering practice. Moreover, this book discusses possible solutions to further increase spectral efficiency and propose practical receivers in such scenarios. It benefits researchers, engineers, and students in the fields of wireless communications and signal processing.



Addresses the receiver design problem in high spectral efficiency communication systems Studies two commonly used systems, i.e., FTN signaling and NOMA system Considers different practical channel conditions for engineering practice

Autorentext

Dr. Weijie Yuan is currently an assistant professor with the Department of Electronic and Electrical Engineering, Southern University of Science and Technology. He obtained the Ph.D. degree from University of Technology Sydney in 2019. Then he was a research associate with the University of New South Wales, Australia, prior to joining the Department of Electronic and Electrical Engineering, Southern University of Science and Technology in 2021. He was a research scholar in the University of Technology Vienna, University of Sydney, University of Wollongong, and University of Southampton in 2016, 2018, and 2019, respectively. He was a recipient of the Best Ph.D. Thesis Award from the Chinese Institute of Electronics and an Exemplary Reviewer from IEEE TCOM/WCL. His research interests include statistical signal processing, orthogonal time frequency space (OTFS) and integrated sensing and communication (ISAC). He currently serves as an Associate Editor for the IEEE Communications Letters, an Associate Editor and an Award Committee Member for the EURASIP Journal on Advances in Signal Processing. He has led the guest editorial teams for three special issues in IEEE Communications Magazine, IEEE Transactions on Green Communications and Networking, and China Communications. He was an Organizer/the Chair of several workshops and special sessions on OTFS and ISAC in flagship IEEE and ACM conferences, including IEEE ICC, IEEE/CIC ICCC, IEEE SPAWC, IEEE VTC, IEEE WCNC, IEEE ICASSP, and ACM MobiCom. He has also lead the editorial team for the IEEE ComSoc Best Readings on OTFS and Delay Doppler Signal Processing. He is the Founding Chair of the IEEE ComSoc Special Interest Group on Orthogonal Time Frequency Space (OTFS-SIG).


Inhalt
Introduction of High Spectral Efficiency Communication Systems.- Receiver Design for FTN Signaling over Frequency Selective Channels.- Receiver Design for FTN Signaling over Doubly Selective Channels.- Uplink NOMA Multiuser Detector.- Downlink NOMA Multiuser Detector.- How to Achieve a Higher Spectral Efficiency.- Conlusions and the Road Ahead.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09789811980893
    • Lesemotiv Verstehen
    • Genre Electrical Engineering
    • Auflage 1st edition 2023
    • Sprache Englisch
    • Anzahl Seiten 168
    • Herausgeber Springer Nature Singapore
    • Größe H241mm x B160mm x T15mm
    • Jahr 2023
    • EAN 9789811980893
    • Format Fester Einband
    • ISBN 9811980896
    • Veröffentlichung 15.01.2023
    • Titel Receiver Design for High Spectral Efficiency Communication Systems in Beyond 5G
    • Autor Weijie Yuan , Jingming Kuang , Nan Wu
    • Gewicht 455g

Bewertungen

Schreiben Sie eine Bewertung
Nur registrierte Benutzer können Bewertungen schreiben. Bitte loggen Sie sich ein oder erstellen Sie ein Konto.
Made with ♥ in Switzerland | ©2025 Avento by Gametime AG
Gametime AG | Hohlstrasse 216 | 8004 Zürich | Schweiz | UID: CHE-112.967.470