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Receiver design for high spectral ef...
~
Yuan, Weijie.
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Receiver design for high spectral efficiency communication systems in beyond 5G
Record Type:
Electronic resources : Monograph/item
Title/Author:
Receiver design for high spectral efficiency communication systems in beyond 5G/ by Weijie Yuan, Nan Wu, Jingming Kuang.
Author:
Yuan, Weijie.
other author:
Wu, Nan.
Published:
Singapore :Springer Nature Singapore : : 2023.,
Description:
xv, 150 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
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.
Contained By:
Springer Nature eBook
Subject:
Mobile communication systems - Technological innovations. -
Online resource:
https://doi.org/10.1007/978-981-19-8090-9
ISBN:
9789811980909
Receiver design for high spectral efficiency communication systems in beyond 5G
Yuan, Weijie.
Receiver design for high spectral efficiency communication systems in beyond 5G
[electronic resource] /by Weijie Yuan, Nan Wu, Jingming Kuang. - Singapore :Springer Nature Singapore :2023. - xv, 150 p. :ill. (some col.), digital ;24 cm.
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.
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.
ISBN: 9789811980909
Standard No.: 10.1007/978-981-19-8090-9doiSubjects--Topical Terms:
595752
Mobile communication systems
--Technological innovations.
LC Class. No.: TK5103.2
Dewey Class. No.: 621.384
Receiver design for high spectral efficiency communication systems in beyond 5G
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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.
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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.
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Engineering (SpringerNature-11647)
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