Wireless Communications Systems Architecture: Transceiver Design and DSP Towards 6G
Book information
Description
This book discusses wireless communication systems from a transceiver and digital signal processing perspective. It is intended to be an advanced and thorough overview for key wireless communication technologies. A wide variety of wireless communication technologies, communication paradigms and architectures are addressed, along with state-of-the-art wireless communication standards. The author takes a practical, systems-level approach, breaking up the technical components of a wireless communication system, such as compression, encryption, channel coding, and modulation. This book combines hardware principles with practical communication system design. It provides a comprehensive perspective on emerging 5G mobile networks, explaining its architecture and key enabling technologies, such as M-MIMO, Beamforming, mmWaves, machine learning, and network slicing. Finally, the author explores the evolution of wireless mobile networks over the next ten years towards 5G and beyond (6G), including use-cases, system requirements, challenges and opportunities. Preface Contents Wireless Communication Systems: Foundation 1 Milestones in Communications 2 Frequency Spectrum: Frequencies for Communication 2.1 Radio Radiation 2.2 Microwave Radiation 2.3 Infrared Radiation 2.4 Visible Light Radiation 2.5 Ultra-Violet Radiation 2.6 X-Rays Radiations 2.7 Alpha Particles 2.8 Beta Particles 2.9 Gamma-Rays Radiation 2.10 Neutron Radiation 3 Wireless Communication Systems Classification 3.1 Efficiency-Based Classification 3.2 Coverage-Based Classification 4 Wireless Communication System Architecture 5 Information Theory 5.1 Bandwidth 5.2 Spectral Efficiency 5.3 Sampling 5.4 Nyquist Sampling Theorem 5.5 Shannon Theory 5.6 Edholm’s Law 5.7 Wireless Radio Channel: Transmission Impairments 6 Conclusions References 2 Wireless Communication Systems: Compression and Decompression Algorithms 1 Lossy and Lossless Compression 2 Compression Techniques 2.1 Text Compression 2.2 Image Compression 2.3 Video Compression 2.4 Audio Compression 3 Performance Metrics 3.1 Compression Ratio 3.2 Processing/Compression Time and Speed 4 Comparative Study for All Different Compression Techniques 5 Conclusions References 3 Wireless Communication Systems: Confidentiality 1 Symmetric Encryption 1.1 Stream Ciphers 1.2 Block Ciphers 2 Asymmetric Encryption 2.1 AES 3 Hybrid Encryption 4 Authentication 5 Crypto Analysis/Attacks 5.1 Exhaustive/Brute-Force Attack 5.2 Statistical/Histogram Attack 5.3 Differential Attack 5.4 Known/Chosen Plaintext/Ciphertext Attack 5.5 Man-in-the-Middle Attack 6 Secured Wireless Communication System 6.1 AES Security 6.2 5G Security 7 Conclusions References 4 Wireless Communication Systems: Reliability 1 Introduction 2 Error Detection Techniques 2.1 Checksum 2.2 Parity Check 2.3 CRC 3 Error Correction Techniques 3.1 Backward Error Correction Techniques 3.2 Forward Error Correction Techniques 4 Channel Equalization 4.1 Linear Equalization 4.2 Adaptive Equalization 5 Diversity 5.1 Space Diversity or Antenna Diversity 5.2 Time Diversity 5.3 Code Diversity 5.4 Polarization Diversity 5.5 Frequency Diversity 6 Conclusions References 5 Wireless Communication Systems: Line Coding, Modulation, Multiple Access, and Duplexing 1 Why Modulation? 2 Types of Modulation 2.1 Types of Pulse Modulation: Analog to Digital Up-Conversion 2.2 Types of Analog Modulation: Analog to Analog Up-Conversion 2.3 Types of Encoding Modulation/Line Coding: Digital to Digital Up-Conversion 2.4 Types of Digital Modulation: Digital to Analog Up-Conversion 2.5 Adaptive Modulation 2.6 Types of Digital Demodulation 2.7 Factors Affecting Choice of Modulation 2.8 Multiple Access and Spread Spectrum 2.9 Duplexing 2.10 Polarization Reuse 3 Conclusions References 6 Wireless Communication Systems: Standards 1 Wireless Body Area Network (WBAN) 2 PAN: Bluetooth Transceiver 3 LAN: WiFi Transceiver 4 WAN: 4G/LTE Transceiver 5 BN: DVB-S Transceiver 6 GN: GPS Transceiver 7 A Comparative Study References 7 5G Mobile Communications: Fundamentals, Key Enabling Technologies, Challenges, Opportunities, Future Trends 1 Cellular System Infrastructure 2 Evolution of Wireless Mobile Communications 3 5G KPIs 4 5G Opportunities/Applications 5 5G Challenges 6 5G Momentum: 5G Key Wireless Enabling Technologies References 8 Paving the Way Towards 6G 1 6G Opportunities/Applications 2 6G Potential Key Wireless Emerging Enabling Technologies 3 6G KPIs 4 6G Challenges 5 Conclusions References
Similar books
Next Generation EDA Flow: Motivations, Opportunities, Challenges and Future Directions
2025 · EPUB
Heterogeneous SoC Design and Verification: HW/SW Co-Exploration, Co-Design, Co-Verification and Co-Debugging
2024 · PDF
Heterogeneous SoC Design and Verification: HW/SW Co-Exploration, Co-Design, Co-Verification and Co-Debugging
2024 · EPUB
Neuromorphic Computing and Beyond: Parallel, Approximation, Near Memory, and Quantum
2020 · PDF
Bluetooth 5.0 Modem Design for IoT Devices
2021 · PDF
Deep Learning-Powered Technologies. Autonomous Driving, Artificial Intelligence of Things (AIoT), Augmented Reality, 5G Communications and Beyond
2023 · PDF
Deep Learning-Powered Technologies: Autonomous Driving, Artificial Intelligence of Things (AIoT), Augmented Reality, 5G Communications and Beyond ... on Engineering, Science, and Technology)
2023 · RAR
Deep Learning-Powered Technologies: Autonomous Driving, Artificial Intelligence of Things (AIoT), Augmented Reality, 5G Communications and Beyond ... on Engineering, Science, and Technology)
2023 · EPUB