Convergence of Energy, Communication and Computation in B5G Cellular Internet of Things - Xiaoming Chen, Qiao Qi

Convergence of Energy, Communication and Computation in B5G Cellular Internet of Things (eBook)

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2020 | 1st ed. 2020
VIII, 129 Seiten
Springer Singapore (Verlag)
978-981-15-4140-7 (ISBN)
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This book focuses on the convergence of energy, communication and computation in the beyond 5G (B5G) cellular Internet of Things (IoT). It addresses both theory and techniques, with more weight placed on the latter. This is achieved by providing in-depth studies on a number of major topics such as wireless power transfer, non-orthogonal multiple access, massive multiple-input multiple-output, and over-air computation. In turn, four typical convergence scenarios are studied in detail: the convergence of energy and communication, convergence of energy and computation, convergence of communication and computation, and convergence of energy, communication and computation. The comprehensive and systematic coverage of key techniques in the convergence of energy, communication and computation in the B5G cellular IoT is one of the book's major features, making it particularly well suited for readers who are interested in learning about practical solutions in B5G wireless networks. 
Accordingly, the book offers a valuable resource for researchers, engineers, and graduate students in the fields of information engineering, telecommunications engineering, computer engineering, etc.


Xiaoming Chen is a professor with the College of Information Science and Electronic Engineering, Zhejiang University, China. His research interests are in the areas of wireless communication and signal processing, mainly including fifth-generation (5G) key techniques, IoT theory and technique, and machine learning in communications. Prof. Chen has published more than 100 referred papers in IEEE journals and conferences. He is serving as an Editor of IEEE Transactions on Communications and IEEE Communications Letters.

Qiao Qi is a master student with the College of Information Science and Electronic Engineering, Zhejiang University, China. Her research interests fall in Cellular IoT, over-air-computation, wireless power transfer. She has published multiple papers in IEEE journal and conferences.

This book focuses on the convergence of energy, communication and computation in the beyond 5G (B5G) cellular Internet of Things (IoT). It addresses both theory and techniques, with more weight placed on the latter. This is achieved by providing in-depth studies on a number of major topics such as wireless power transfer, non-orthogonal multiple access, massive multiple-input multiple-output, and over-air computation. In turn, four typical convergence scenarios are studied in detail: the convergence of energy and communication, convergence of energy and computation, convergence of communication and computation, and convergence of energy, communication and computation. The comprehensive and systematic coverage of key techniques in the convergence of energy, communication and computation in the B5G cellular IoT is one of the book's major features, making it particularly well suited for readers who are interested in learning about practical solutions in B5G wireless networks. Accordingly, the book offers a valuable resource for researchers, engineers, and graduate students in the fields of information engineering, telecommunications engineering, computer engineering, etc.

Preface 6
Contents 8
1 Introduction 10
1.1 Cellular IoT 10
1.1.1 What is Cellular IoT? 11
1.1.2 Development of Cellular IoT 13
1.1.3 Cellular IoT in Beyond 5G Networks 14
1.2 Energy, Communication and Computation in B5G Cellular IoT 16
1.2.1 Wireless Energy 17
1.2.2 Wireless Communication 18
1.2.3 Wireless Computation 18
1.3 Objective of this Book 19
References 22
2 Convergence of Energy and Communication in B5G Cellular Internet of Things 25
2.1 Introduction 25
2.2 Design with Full Channel State Information 27
2.2.1 System Model 27
2.2.2 Problem Formulation and Optimization Design 33
2.2.3 Numerical Results 38
2.3 Worst-Case Robust Design with Channel Quantization Error 43
2.3.1 System Model 43
2.3.2 Problem Formulation and Optimization Design 47
2.3.3 Numerical Results 58
2.4 Outage-Constrained Robust Design with Channel Estimation Error 64
2.4.1 System Model 64
2.4.2 Problem Formulation and Optimization Design 69
2.4.3 Numerical Results 74
2.5 Conclusion 79
References 84
3 Convergence of Energy and Computation in B5G Cellular Internet of Things 87
3.1 Introduction 87
3.2 System Model 89
3.3 Problem Formulation and Optimization Solution 91
3.4 Numerical Results 95
3.5 Conclusion 97
References 100
4 Convergence of Communication and Computation in B5G Cellular Internet of Things 102
4.1 Introduction 102
4.2 System Model 104
4.3 Problem Formulation and Optimization Solution 107
4.4 Numerical Results 111
4.5 Conclusion 114
References 115
5 Convergence of Energy, Communication and Computation in B5G Cellular Internet of Things 117
5.1 Introduction 117
5.2 System Model 119
5.3 Problem Formulation and Optimization Solution 122
5.4 Simulation Results 125
5.5 Conclusion 127
References 128
6 Summary 129
6.1 Concluding Remarks 129
6.2 Future Works 132
References 134

Erscheint lt. Verlag 13.4.2020
Reihe/Serie SpringerBriefs in Electrical and Computer Engineering
SpringerBriefs in Electrical and Computer Engineering
Zusatzinfo VIII, 129 p. 52 illus., 51 illus. in color.
Sprache englisch
Themenwelt Mathematik / Informatik Informatik Theorie / Studium
Naturwissenschaften
Technik Elektrotechnik / Energietechnik
Technik Nachrichtentechnik
Schlagworte B5G • Cellular internet of things • internet of things • LTE-M • Massive multiple-input multiple-output • NB-Iot • Non-orthogonal multiple access • over-air-computation • Wireless Power Transfer
ISBN-10 981-15-4140-X / 981154140X
ISBN-13 978-981-15-4140-7 / 9789811541407
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