
Intelligent Sensing and Communications for Internet of Everything
- 1st Edition - January 14, 2022
- Imprint: Academic Press
- Authors: Zhengyu Zhu, Zheng Chu, Xingwang Li
- Language: English
- Paperback ISBN:9 7 8 - 0 - 3 2 3 - 8 5 6 5 5 - 3
- eBook ISBN:9 7 8 - 0 - 3 2 3 - 9 0 3 7 1 - 4
Intelligent Sensing and Communications for Internet of Everything introduces three application scenarios of enhanced mobile broadband (eMBB), large-scale machine connectio… Read more

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Request a sales quoteIntelligent Sensing and Communications for Internet of Everything introduces three application scenarios of enhanced mobile broadband (eMBB), large-scale machine connection (mMTC) and ultra reliable low latency communication (URLLC). A new communication model, namely backscatter communication (BackCom), intelligent reflector surface (IRS) and unmanned aerial vehicle (UAV) technology in Internet of Everything (IoE), is described in detail. Also focusing on millimeter wave, the book discusses the potential application of terahertz 6G network spectrum in the Internet of Things (IoT). Finally, the applications of IoE network in big data, artificial intelligence (AI) technology and fog/edge computing technology are proposed.
- Systematically introduces the technical standards and market analysis of 5G's three application scenarios, as well as the problems and challenges faced
- Provides readers with the knowledge of spectrum energy efficiency and cost-effective IoE network solutions
- Introduces the application of physical layer related technologies to the IoT, such as BackCom, IRS and UAV relay in IoE, and millimeter wave technology
- Discusses the potential application of terahertz 6G network spectrum in the IoT
- Cover image
- Title page
- Table of Contents
- Copyright
- Chapter 1: Background and introduction
- Abstract
- 1.1. Background
- 1.2. Introduction
- 1.3. Suggestions to promote 6G research and development
- Chapter 2: Three major operating scenarios of 5G: eMBB, mMTC, URLLC
- Abstract
- 2.1. Introduction
- 2.2. Opportunistic spectrum sharing for D2D-based URLLC
- 2.3. Cooperative wireless-powered NOMA relaying for B5G IoT networks with hardware impairments and channel estimation errors
- 2.4. I/Q imbalance aware nonlinear wireless-powered relaying of B5G networks: security and reliability analysis
- References
- Chapter 3: Backscatter technology and intelligent reflecting technology surface technology in the Internet of Things
- Abstract
- 3.1. Introduction
- 3.2. Secrecy analysis of ambient backscatter NOMA systems under I/Q imbalance
- 3.3. Hardware impaired ambient backscatter NOMA systems: reliability and security
- 3.4. Physical layer security of cognitive ambient backscatter communications for green Internet-of-Things
- 3.5. Future research prospects
- References
- Chapter 4: Unmanned aerial vehicle technology in IoE
- Abstract
- 4.1. Introduction
- 4.2. Energy efficiency characterization in heterogeneous IoT system with UAV swarms based on wireless power transfer
- 4.3. UAV-aided multiway NOMA networks with residual hardware impairments
- 4.4. A unified framework for HS-UAV NOMA networks: performance analysis and location optimization
- 4.5. Future research prospects
- References
- Chapter 5: MmWave technology and Terahertz technology IoT communications
- Abstract
- 5.1. Introduction
- 5.2. Hybrid precoding design for wideband THz massive MIMO-OFDM systems with beam squint
- 5.3. Robust beamforming designs in secure MIMO SWIPT IoT networks with a non-linear channel model
- 5.4. Robust design for intelligent reflecting surface assisted MIMO-OFDMA Terahertz IoT networks
- References
- Chapter 6: Artificial intelligence technology in the Internet of things
- Abstract
- 6.1. Introduction
- 6.2. Exploiting deep learning for secure transmission in an underlay cognitive radio network
- 6.3. Q-learning based task offloading and resources optimization for a collaborative computing system
- References
- Chapter 7: Fog/edge computing technology and big data system with IoT
- Abstract
- 7.1. Introduction
- 7.2. Edge cache-assisted secure low-latency millimeter wave transmission
- 7.3. Delay minimization for massive MIMO assisted mobile edge computing
- 7.4. Future research directions
- References
- Index
- Edition: 1
- Published: January 14, 2022
- Imprint: Academic Press
- No. of pages: 356
- Language: English
- Paperback ISBN: 9780323856553
- eBook ISBN: 9780323903714
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Zhengyu Zhu
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Zheng Chu
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