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Key technologies of high frequency w...
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Li, Jianguo.
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Key technologies of high frequency wireless communications
Record Type:
Electronic resources : Monograph/item
Title/Author:
Key technologies of high frequency wireless communications/ by Jianguo Li ... [et al.].
other author:
Li, Jianguo.
Published:
Singapore :Springer Nature Singapore : : 2025.,
Description:
xv, 182 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction to high-frequency wireless communication -- Efficient System: Beamspace MIMO-NOMA via D2D Communications -- Efficient Detection: Asynchronous Multi-User Detection for Code Domain NOMA -- Efficient Coding: Quasi-Cyclic LDPC Transceiving System -- Secure Directional Modulation for LOS Communications -- Secure Directional Modulation in RIS-Aided Networks -- OFDM Radar Range Accuracy Enhancement -- FTN-enhanced DFT-s-OFDM System -- FDSS-enhanced DFT-s-OFDM System -- Summary and Outlook.
Contained By:
Springer Nature eBook
Subject:
Wireless communication systems. -
Online resource:
https://doi.org/10.1007/978-981-96-5894-7
ISBN:
9789819658947
Key technologies of high frequency wireless communications
Key technologies of high frequency wireless communications
[electronic resource] /by Jianguo Li ... [et al.]. - Singapore :Springer Nature Singapore :2025. - xv, 182 p. :ill., digital ;24 cm.
Introduction to high-frequency wireless communication -- Efficient System: Beamspace MIMO-NOMA via D2D Communications -- Efficient Detection: Asynchronous Multi-User Detection for Code Domain NOMA -- Efficient Coding: Quasi-Cyclic LDPC Transceiving System -- Secure Directional Modulation for LOS Communications -- Secure Directional Modulation in RIS-Aided Networks -- OFDM Radar Range Accuracy Enhancement -- FTN-enhanced DFT-s-OFDM System -- FDSS-enhanced DFT-s-OFDM System -- Summary and Outlook.
This book provides solutions to some of the issues present in the physical layer of current high-frequency wireless communication systems. It reviews the development history of high-frequency wireless communication systems, pinpoints certain existing problems in contemporary high-frequency communication systems, and proposes solutions. The 6th Generation Mobile Networks (6G) is based on terrestrial cellular networks and integrates satellite communication, drone communication, and marine communication to form an integrated air-ground-sea network, providing comprehensive coverage, high speed, high security, and multifunctional communication solutions. High-frequency wireless communication, represented by millimeter-wave and terahertz communications, offers a wide available spectrum and high transmission rates, making it a highly promising broadband wireless access technology in 6G. To achieve higher transmission rates (Tbps level), lower transmission latency (millisecond level), higher security performance (physical layer security), and stronger hardware integration (communication-sensing integration), high-frequency wireless transmission faces many challenges due to characteristics such as short wavelengths, high path loss, and weak components. These challenges include: Large link attenuation and poor coverage in high-frequency wireless communication systems, resulting in low spectrum efficiency for edge users.Low output power, poor linearity, and low efficiency of high-frequency power amplifiers, making it difficult to achieve long-distance transmission of wideband signals.High sidelobe energy in high-frequency multi-user secure transmission, leading to unfocused spatial regions and low transmission efficiency.Independent design functions and high information processing delay in high-frequency communication and sensing, causing wastage of spectrum resources and hardware resources.To address these challenges, the author has conducted innovative work aimed at improving the spectrum efficiency, power amplifier efficiency, transmission efficiency, and processing efficiency of high-frequency wireless transmission. The research findings have been published in high-impact journals such as IEEE Transactions on Vehicular Technology, Microwave Theory and Techniques, Broadcasting, IEEE Sensors Journal, and IEEE Wireless Communications Letters. Based on these foundations, this book is dedicated to discussing efficient transmission technology for high-frequency wireless communications with a focus on 6G. The book addresses fields such as signal processing, spectrum management, and high-efficiency sustainable communications. It is highly recommended for academic researchers, students, and engineers in wireless communication, terahertz communication, and electronic information fields.
ISBN: 9789819658947
Standard No.: 10.1007/978-981-96-5894-7doiSubjects--Topical Terms:
567106
Wireless communication systems.
LC Class. No.: TK5103.2
Dewey Class. No.: 621.382
Key technologies of high frequency wireless communications
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Introduction to high-frequency wireless communication -- Efficient System: Beamspace MIMO-NOMA via D2D Communications -- Efficient Detection: Asynchronous Multi-User Detection for Code Domain NOMA -- Efficient Coding: Quasi-Cyclic LDPC Transceiving System -- Secure Directional Modulation for LOS Communications -- Secure Directional Modulation in RIS-Aided Networks -- OFDM Radar Range Accuracy Enhancement -- FTN-enhanced DFT-s-OFDM System -- FDSS-enhanced DFT-s-OFDM System -- Summary and Outlook.
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This book provides solutions to some of the issues present in the physical layer of current high-frequency wireless communication systems. It reviews the development history of high-frequency wireless communication systems, pinpoints certain existing problems in contemporary high-frequency communication systems, and proposes solutions. The 6th Generation Mobile Networks (6G) is based on terrestrial cellular networks and integrates satellite communication, drone communication, and marine communication to form an integrated air-ground-sea network, providing comprehensive coverage, high speed, high security, and multifunctional communication solutions. High-frequency wireless communication, represented by millimeter-wave and terahertz communications, offers a wide available spectrum and high transmission rates, making it a highly promising broadband wireless access technology in 6G. To achieve higher transmission rates (Tbps level), lower transmission latency (millisecond level), higher security performance (physical layer security), and stronger hardware integration (communication-sensing integration), high-frequency wireless transmission faces many challenges due to characteristics such as short wavelengths, high path loss, and weak components. These challenges include: Large link attenuation and poor coverage in high-frequency wireless communication systems, resulting in low spectrum efficiency for edge users.Low output power, poor linearity, and low efficiency of high-frequency power amplifiers, making it difficult to achieve long-distance transmission of wideband signals.High sidelobe energy in high-frequency multi-user secure transmission, leading to unfocused spatial regions and low transmission efficiency.Independent design functions and high information processing delay in high-frequency communication and sensing, causing wastage of spectrum resources and hardware resources.To address these challenges, the author has conducted innovative work aimed at improving the spectrum efficiency, power amplifier efficiency, transmission efficiency, and processing efficiency of high-frequency wireless transmission. The research findings have been published in high-impact journals such as IEEE Transactions on Vehicular Technology, Microwave Theory and Techniques, Broadcasting, IEEE Sensors Journal, and IEEE Wireless Communications Letters. Based on these foundations, this book is dedicated to discussing efficient transmission technology for high-frequency wireless communications with a focus on 6G. The book addresses fields such as signal processing, spectrum management, and high-efficiency sustainable communications. It is highly recommended for academic researchers, students, and engineers in wireless communication, terahertz communication, and electronic information fields.
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based on 0 review(s)
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