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Amplify-and-Forward Relaying in Wireless Communications / by Leonardo Jiménez Rodríguez, Nghi Tran, Tho Le-Ngoc.

By: Contributor(s): Material type: TextTextLanguage: İngilizce Series: SpringerBriefs in Computer SciencePublisher: Cham : Springer International Publishing : Imprint: Springer, 2015Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783319179810
Subject(s): LOC classification:
  • TK5105.5-5105.9
Online resources:
Contents:
Relaying: An Overview -- Relay Protocols -- Half-Duplex AF Relaying: Capacity and Power Allocation over Static Channels -- Half-Duplex AF Relaying: Achievable Rate and Power Allocation over Fading Channels -- Half-Duplex AF Relaying: Adaptation Policies -- Half-Duplex AF Relaying: Error Performance and Precoding -- Full-Duplex AF Relaying: Capacity under Residual Self-Interference -- Full-Duplex AF Relaying: Error Performance under Residual Self-Interference.
Summary: This SpringerBrief explores the advantage of relaying techniques in addressing the increasing demand for high data rates and reliable services over the air. It demonstrates how to design cost-effective relay systems that provide high spectral efficiency and fully exploit the diversity of the relay channel. The brief covers advances in achievable rates, power allocation schemes, and error performance for half-duplex (HD) and full-duplex (FD) amplify-and-forward (AF) single-relay systems. The authors discuss the capacity and respective optimal power allocation for a wide range of HD protocols over static and fading channels. Then, optimal amplification coefficients in terms of achievable rate are presented. Chapters also examine performance with finite constellations, including the error and diversity performance. The brief concludes with a capacity and error performance analysis of the FD relay mode of operation, where the residual self-interference due to FD transmission is explicitly taken into account. Amplify-and-Forward Relaying in Wireless Communications reveals the benefits and challenges of relaying techniques. It is designed for researchers and professionals in wireless communication. This material is also appropriate for advanced-level students in electrical engineering and computer science.
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Item type Current library Home library Collection Call number Status Notes Date due Barcode
E-Book E-Book Merkez Kütüphane Merkez Kütüphane E-Kitap Koleksiyonu TK5105.5-5105.9EBK (Browse shelf(Opens below)) Geçerli değil-e-Kitap / Not applicable-e-Book EBK00101

Relaying: An Overview -- Relay Protocols -- Half-Duplex AF Relaying: Capacity and Power Allocation over Static Channels -- Half-Duplex AF Relaying: Achievable Rate and Power Allocation over Fading Channels -- Half-Duplex AF Relaying: Adaptation Policies -- Half-Duplex AF Relaying: Error Performance and Precoding -- Full-Duplex AF Relaying: Capacity under Residual Self-Interference -- Full-Duplex AF Relaying: Error Performance under Residual Self-Interference.

This SpringerBrief explores the advantage of relaying techniques in addressing the increasing demand for high data rates and reliable services over the air. It demonstrates how to design cost-effective relay systems that provide high spectral efficiency and fully exploit the diversity of the relay channel. The brief covers advances in achievable rates, power allocation schemes, and error performance for half-duplex (HD) and full-duplex (FD) amplify-and-forward (AF) single-relay systems. The authors discuss the capacity and respective optimal power allocation for a wide range of HD protocols over static and fading channels. Then, optimal amplification coefficients in terms of achievable rate are presented. Chapters also examine performance with finite constellations, including the error and diversity performance. The brief concludes with a capacity and error performance analysis of the FD relay mode of operation, where the residual self-interference due to FD transmission is explicitly taken into account. Amplify-and-Forward Relaying in Wireless Communications reveals the benefits and challenges of relaying techniques. It is designed for researchers and professionals in wireless communication. This material is also appropriate for advanced-level students in electrical engineering and computer science.

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