5G is a dramatic paradigm shift from 4G that requires a high flexibility and intelligence in spectrum sharing, millimeter wave communications, integrated IoT access, massive MIMO, smart antennas, Big Data, cloud computing, and many other disruptive technologies. 5G means a new transmission scheme, virtualized SDN-like control, extreme energy efficiency, new regulatory and standardization issues, and support 1000x higher data rate than 4G. The book focuses on the R&D of 5G networks, especially its core components such as millimeter wave communications, Massive MIMO, cloud-based networking, SDN support, Big Data, energy-efficient protocols, and cognitive spectrum management.
Hu
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Weitere Infos & Material
Big Picture. From 4G to 5G. 5G Architecture. 5G Design Challenges. 5G Applications. 5G: How to Achieve 1000x Rate Increase? 1000x Rate Increase Strategies. Spectrum Management for 1000x Rate. Medium Access Control Protocols for 1000x Rate. Physical Layer Technologies for 1000x Rate. 5G: What does mmWave Play Here? mmWave Communication Characteristics. mmWave MAC Layer Design. mmWave Physical Layer. 5G: Massive MIMO. MIMO Basics. Antennas and Beamforming. MIMO-Oriented Networking Protocols. 5G: Cloud Interconnection. Cloud and 5G. SDN Support. Big Data Access. Internet of Things Management. Miscellaneous R&D Topics. Energy-efficient Design. Spectrum Management. Standardization Issues. Economic Considerations. 5G Products: Today and Future.
Dr. Fei Hu is an associate professor in the Department of Electrical and Computer Engineering at the University of Alabama (main campus), Tuscaloosa, Alabama. He obtained his PhD at Tongji University (Shanghai, People’s Republic of China) in the field of signal processing (in 1999) and at Clarkson University (New York) in the field of electrical and computer engineering (in 2002). He has published more than 150 journal/conference articles and book chapters.
Dr. Hu’s research has been supported by the U.S. National Science Foundation (NSF), Department of Defense (DoD), Cisco, Sprint, and other sources. His research expertise can be summarized as 3S: Security, Signals, Sensors. (1) Security: This is about how to overcome different cyber attacks in a complex wireless or wired network. Recently, he focused on cyber-physical system security and medical security issues. (2) Signals: This mainly refers to intelligent signal processing, that is, using machine learning algorithms to process sensing signals in a smart way to extract patterns (i.e., achieve pattern recognition). (3) Sensors: This includes microsensor design and wireless sensor networking issues.