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" SC-FDMA for Mobile Communications "
Fathi E Abd El-Samie
Document Type
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BL
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Record Number
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732344
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Doc. No
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b552132
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Main Entry
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Fathi E Abd El-Samie
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Title & Author
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SC-FDMA for Mobile Communications\ Fathi E Abd El-Samie
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Edition Statement
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1st ed
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Publication Statement
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London CRC Press, 2016
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Page. NO
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1(372 Seiten)
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ISBN
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1466510722
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: 9781466510722
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Contents
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Introduction. DFT-SC-FDMA System. DCT-SC-FDMA System. Transceiver Schemes for SC -FD MA Systems. Carrier Frequency Offsets in SC-FDMA Systems. Equalization and CFO s Compensation for MIMO SC-FDMA Systems. Fundamentals of Cooperative Communications. Cooperative Space-Time /Frequency Coding Schemes for SC-FDMA Systems. Relaying Techniques for Improving the Physical Layer Security.
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Abstract
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Introduction Motivations for Single-Carrier Frequency Division Multiple Access Evolution of Cellular Wireless Communications Mobile Radio Channel Slow and Fast Fading Frequency-Flat and Frequency-Selective Fading Channel Equalization Multicarrier Communication Systems OFDM System OFDMA System 1 Multicarrier CDMA System 1Single-Carrier Communication Systems SC-FDE System DFT-SC-FDMA System DFT-SC-FDMA System IntroductionSubcarrier Mapping Methods DFT-SC-FDMA System Model Time-Domain Symbols of the DFT-SC-FDMA System Time-Domain Symbols of the DFT-IFDMA System Time-Domain Symbols of the DFT-LFDMA System OFDMA vs. DFT-SC-FDMA Power AmplifierPeak Power Problem Sensitivity to Nonlinear Amplification Sensitivity to A/D and D/A Resolutions Peak-to-Average Power Ratio Pulse-Shaping Filters Simulation Examples Simulation Parameters CCDF Performance Impact of the Input Block Size Impact of the Output Block Size Impact of the Power Amplifier DCT-SC-FDMA System Introduction DCT Definition of the DCT Energy Compaction Property of the DCT DCT-SC-FDMA System ModelComplexity EvaluationTime-Domain Symbols of the DCT-SC-FDMA System Time-Domain Symbols of the DCT-IFDMA System Time-Domain Symbols of the DCT-LFDMA SystemSimulation Examples Simulation Parameters BER Performance CCDF Performance Impact of the Input Block Size Impact of the Output Block Size Impact of the Power Amplifier Transceiver Schemes for SC-FDMA Systems Introduction PAPR Reduction Methods Clipping Method Companding Method Hybrid Clipping and Companding Discrete Wavelet Transform Implementation of the DWT Haar Wavelet TransformWavelet-based Transceiver Scheme Mathematical Model Two-Level Decomposition Complexity ...Evaluation Simulation Examples Simulation Parameters Results of the DFT-SC-FDMA System Results of the DCT-SC-FDMA System Carrier Frequency Offsets in SC-FDMA Systems Introduction System Models in the Presence of CFOs DFT-SC-FDMA System Model DCT-SC-FDMA System Model Conventional CFOs Compensation Schemes Single-User Detector Circular-Convolution Detector MMSE Scheme Mathematical Model Banded-System Implementation Complexity Evaluation MMSE+PIC Scheme Mathematical Model Simulation Examples Simulation Parameters Impact of the CFOs Results of the MMSE Scheme DFT-SC-FDMA System DCT-SC-FDMA System Results of the MMSE+PIC Scheme DFT-SC-FDMA System DCT-SC-FDMA System Impact of Estimation Errors DFT-SC-FDMA System DCT-SC-FDMA System Equalization and CFOs Compensation for MIMO SC-FDMA Systems Introduction MIMO System Models in the Absence of CFOs SM DFT-SC-FDMA System Model SFBC DFT-SC-FDMA System Model SFBC DCT-SC-FDMA System Model SM DCT-SC-FDMA System ModelMIMO Equalization Schemes MIMO ZF Equalization Scheme MIMO MMSE Equalization Scheme LRZF Equalization Scheme Mathematical Model Complexity Evaluation DFT-SC-FDMA System DCT-SC-FDMA System MIMO System Models in the Presence of CFOs System Model Signal-to-Interference RatioJoint Equalization and CFOs Compensation Schemes JLRZF Equalization Scheme JMMSE Equalization Scheme Complexity Evaluation Simulation Examples Simulation Parameters Absence of CFOs Results of the LRZFEqualization Scheme Impact of Estimation Errors Presence of CFOs Results of the JLRZFEqualization Scheme Results of the JMMSEEqualization Scheme Impact ofEstimation Errors Fundamentals of Cooperative CommunicationsIntroduction Diversity Techniques and MIMO Systems Diversity Techniques Multiple-Antenna Systems Classical Relay Channel Cooperative Communication Cooperative Diversity Protocols Direct Transmission Amplify and Forward Fixed Decode and Forward Selection Decode and Forward Compress and Forward Cooperative Diversity Techniques Cooperative Diversity Based on Repetition Coding Cooperative Diversity Based on Space-Time Coding Cooperative Diversity Based on Relay Selection Cooperative Diversity Based on Channel Coding Cooperative Space-Time /Frequency Coding Schemes for SC-FDMA Systems SC-FDMA System Model SISO SC-FDMA System Model MIMO SC-FDMA System ModelCooperative Space-Frequency Coding for SC-FDMA System Motivation and Cooperation Strategy Cooperative Space-Frequency Code for SC-FDMA with the DF Protocol Peak-to-Average Power Ratio Cooperative Space-Time Code for SC-FDMASimulation ExamplesRelaying Techniques for Improving the Physical Layer Security System and Channel Models Relay and Jammers Selection Schemes Selection Schemes with Noncooperative Eavesdroppers Noncooperative Eavesdroppers without Jamming (NC) Noncooperative Eavesdroppers with Jamming (NCJ) Noncooperative Eavesdroppers with Controlled Jamming (NCCJ) Selection Schemes with Cooperative Eavesdroppers Cooperative Eavesdroppers without Jamming (Cw/oJ) Cooperative Eavesdroppers with Jamming (CJ) Cooperative Eavesdroppers with Controlled Jamming (CCJ) Simulation Examples Appendix A: Channel Models Appendix B: Derivation of the Interference Coefficients for the DFT-SC-FDMA System over an AWGN Channel Appendix C: Derivation of the Interference Coefficients for the DCT -SC -FDMASystem over an AWGN ChannelAppendix D: Derivation of the Optimum Solution of the JLRZF Scheme in Chapter 6 Appendix E: Derivations for Chapter 9 Appendix F: MATLAB® Simulation Codes for Chapters 2 through 6 Appendix G: MATLAB® Simulation Codes for Chapters 7 through 9.
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Added Entry
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Azzam Y Al-nahari
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Faisal S Al-kamali
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Fathi E Abd El-Samie
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Moawad I Dessouky
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