Ultra-Dense Networks for 5G and Beyond (eBook)

Modelling, Analysis, and Applications
Artikelnummer: 978-1-119-47372-5
Einband: PDF
Verfügbarkeit: Download, sofort verfügbar (Link per E-Mail)
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Offers comprehensive insight into the theory, models, and techniques of ultra-dense networks and applications in 5G and other emerging wireless networks

The need for speed-and power-in wireless communications is growing exponentially. Data rates are projected to increase by a factor of ten every five years-and with the emerging Internet of Things (IoT) predicted to wirelessly connect trillions of devices across the globe, future mobile networks (5G) will grind to a halt unless more capacity is created. This book presents new research related to the theory and practice of all aspects of ultra-dense networks, covering recent advances in ultra-dense networks for 5G networks and beyond, including cognitive radio networks, massive multiple-input multiple-output (MIMO), device-to-device (D2D) communications, millimeter-wave communications, and energy harvesting communications.

Clear and concise throughout, Ultra-Dense Networks for 5G and Beyond - Modelling, Analysis, and Applications offers a comprehensive coverage on such topics as network optimization; mobility, handoff control, and interference management; and load balancing schemes and energy saving techniques. It delves into the backhaul traffic aspects in ultra-dense networks and studies transceiver hardware impairments and power consumption models in ultra-dense networks. The book also examines new IoT, smart-grid, and smart-city applications, as well as novel modulation, coding, and waveform designs.

  • One of the first books to focus solely on ultra-dense networks for 5G in a complete presentation
  • Covers advanced architectures, self-organizing protocols, resource allocation, user-base station association, synchronization, and signaling
  • Examines the current state of cell-free massive MIMO, distributed massive MIMO, and heterogeneous small cell architectures
  • Offers network measurements, implementations, and demos
  • Looks at wireless caching techniques, physical layer security, cognitive radio, energy harvesting, and D2D communications in ultra-dense networks

Ultra-Dense Networks for 5G and Beyond - Modelling, Analysis, and Applications is an ideal reference for those who want to design high-speed, high-capacity communications in advanced networks, and will appeal to postgraduate students, researchers, and engineers in the field.


Offers comprehensive insight into the theory, models, and techniques of ultra-dense networks and applications in 5G and other emerging wireless networks

The need for speed-and power-in wireless communications is growing exponentially. Data rates are projected to increase by a factor of ten every five years-and with the emerging Internet of Things (IoT) predicted to wirelessly connect trillions of devices across the globe, future mobile networks (5G) will grind to a halt unless more capacity is created. This book presents new research related to the theory and practice of all aspects of ultra-dense networks, covering recent advances in ultra-dense networks for 5G networks and beyond, including cognitive radio networks, massive multiple-input multiple-output (MIMO), device-to-device (D2D) communications, millimeter-wave communications, and energy harvesting communications.

Clear and concise throughout, Ultra-Dense Networks for 5G and Beyond - Modelling, Analysis, and Applications offers a comprehensive coverage on such topics as network optimization; mobility, handoff control, and interference management; and load balancing schemes and energy saving techniques. It delves into the backhaul traffic aspects in ultra-dense networks and studies transceiver hardware impairments and power consumption models in ultra-dense networks. The book also examines new IoT, smart-grid, and smart-city applications, as well as novel modulation, coding, and waveform designs.

  • One of the first books to focus solely on ultra-dense networks for 5G in a complete presentation
  • Covers advanced architectures, self-organizing protocols, resource allocation, user-base station association, synchronization, and signaling
  • Examines the current state of cell-free massive MIMO, distributed massive MIMO, and heterogeneous small cell architectures
  • Offers network measurements, implementations, and demos
  • Looks at wireless caching techniques, physical layer security, cognitive radio, energy harvesting, and D2D communications in ultra-dense networks

Ultra-Dense Networks for 5G and Beyond - Modelling, Analysis, and Applications is an ideal reference for those who want to design high-speed, high-capacity communications in advanced networks, and will appeal to postgraduate students, researchers, and engineers in the field.


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VerlagWiley-Blackwell
EinbandPDF
Erscheinungsjahr2019
Seitenangabe272 S.
AusgabekennzeichenEnglisch
Masse8'477 KB
Auflage19001 A. 1. Auflage
PlattformPDF
AutorDuong, Trung Q. (Hrsg.) / Chu, Xiaoli (Hrsg.) / Suraweera, Himal A. (Hrsg.)

Über den Autor Trung Q. (Hrsg.) Duong

Trung Q. Duong is a Chair Professor of Telecommunications, School of Electronics, Electrical Engineering and Computer Science at Queen's University Belfast, UK and a Research Chair of Royal Academy of Engineering. He is a Fellow of the IEEE. Saeed R. Khosravirad is a Member of Technical Staff at Nokia Bell Labs, Murray Hill, NJ, USA. He is currently leading research projects in Bell Labs investigating various aspects of radio access for industrial IoT. Changyang She is a Research Associate with The University of Sydney, Australia. He is serving as the Australian Research Council, Discovery Early Career Researcher Award (DECRA) Fellow at the University of Sydney. Petar Popovski is a Professor at Aalborg University, Denmark. He is Villum Investigator, previous holder of a Consolidator Grant (2015-2020) from the European Research Council (ERC) and a recipient of the Danish Elite Researcher Award (2016). He is a Fellow of the IEEE. Mehdi Bennis is a Full Professor at the Centre for Wireless Communications, University of Oulu, Finland. Dr Bennis is a Specialty Chief Editor for Data Science for Communications in the Frontiers in Communications and Networks journal. He is a Fellow of the IEEE. Tony Q.S. Quek is a Full Professor at Singapore University of Technology and Design (SUTD). He is also the Director of Future Communications R&D Programme, ISTD Pillar Head, Sector Lead of SUTD AI Program, and Deputy Director of the SUTD-ZJU IDEA. He is a Fellow of the IEEE.

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