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Wireless Information and Power Transfer

Wireless Information and Power Transfer

Autorzy
Wydawnictwo Blackwell Science
Data wydania 01/01/2019
Wydanie Pierwsze
Liczba stron 320
Forma publikacji książka w twardej oprawie
Poziom zaawansowania Dla profesjonalistów, specjalistów i badaczy naukowych
Język angielski
ISBN 9781119476795
Kategorie Inżynieria elektroniczna, Inżynieria komunikacyjna i telekomunikacyjna
544.00 PLN (z VAT)
$136.78 / €126.46 / £106.06 /
Produkt dostępny
Dostawa 2 dni
Ilość
Do schowka

Opis książki

Wireless Information and Power Transfer offers an authoritative and comprehensive guide to the theory, models, techniques, implementation and application of wireless information and power transfer (WIPT) in energy-constrained wireless communication networks. With contributions from an international panel of experts, this important resource covers the various aspects of WIPT systems such as, system modeling, physical layer techniques, resource allocation and performance analysis. The contributors also explore targeted research problems typically encountered when designing WIPT systems.

Wireless Information and Power Transfer

Spis treści

List of Contributors xiii


Preface xvii


1 The Era of Wireless Information and Power Transfer 1
DerrickWing Kwan Ng, Trung Q. Duong, Caijun Zhong, and Robert Schober


1.1 Introduction 1


1.2 Background 3


1.2.1 RF-BasedWireless Power Transfer 3


1.2.2 Receiver Structure forWIPT 4


1.3 Energy Harvesting Model andWaveform Design 6


1.4 Efficiency and Interference Management inWIPT Systems 9


1.5 Security in SWIPT Systems 10


1.6 CooperativeWIPT Systems 11


1.7 WIPT for 5G Applications 11


1.8 Conclusion 12


Acknowledgement 13


Bibliography 13


2 Fundamentals of Signal Design for WPT and SWIPT 17
Bruno Clerckx andMorteza Varasteh


2.1 Introduction 17


2.2 WPT Architecture 19


2.3 WPT Signal and System Design 21


2.4 SWIPT Signal and System Design 29


2.5 Conclusions and Observations 33


Bibliography 33


3 Unified Design ofWireless Information and Power Transmission 39
Dong In Kim, Jong Jin Park, Jong HoMoon, and Kang Yoon Lee


3.1 Introduction 39


3.2 Nonlinear EH Models 40


3.3 Waveform and Transceiver Design 43


3.3.1 Multi-tone (PAPR) based SWIPT 43


3.3.2 Dual Mode SWIPT 48


3.4 Energy Harvesting Circuit Design 53


3.5 Discussion and Conclusion 58


Bibliography 58


4 Industrial SWIPT: Backscatter Radio and RFIDs 61
Panos N. Alevizos and Aggelos Bletsas


4.1 Introduction 61


4.2 Wireless Signal Model 62


4.3 RFID Tag Operation 64


4.3.1 RF Harvesting and Powering for RFID Tag 64


4.3.2 RFID Tag Backscatter (Uplink) Radio 65


4.4 Reader BER for Operational RFID 68


4.5 RFID Reader SWIPT Reception 69


4.5.1 Harvesting Sensitivity Outage 69


4.5.2 Power Consumption Outage 70


4.5.3 Information Outage 71


4.5.4 Successful SWIPT Reception 71


4.6 Numerical Results 72


4.7 Conclusion 76


Bibliography 76


5 Multi-antenna Energy Beamforming for SWIPT 81
Jie Xu and Rui Zhang


5.1 Introduction 81


5.2 System Model 84


5.3 Rate-Energy Region Characterization 87


5.3.1 Problem Formulation 87


5.3.2 Optimal Solution 90


5.4 Extensions 93


5.5 Conclusion 94


Bibliography 95


6 On the Application of SWIPT in NOMA Networks 99
Yuanwei Liu andMaged Elkashlan


6.1 Introduction 99


6.1.1 Motivation 100


6.2 Network Model 101


6.2.1 Phase 1: Direct Transmission 101


6.2.2 Phase 2: Cooperative Transmission 104


6.3 Non-Orthogonal Multiple Access with User Selection 105


6.3.1 RNRF Selection Scheme 105


6.3.2 NNNF Selection Scheme 108


6.3.3 NNFF Selection Scheme 111


6.4 Numerical Results 112


6.4.1 Outage Probability of the Near Users 112


6.4.2 Outage Probability of t

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