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Green Internet of Things (IoT): Energy Efficiency Perspective / by Zhenyu Zhou, Zheng Chang, Haijun Liao

By: Zhou, Zhenyu, autor
Contributor(s): Chang, Zheng, autor | Liao, Haijun, autor | SpringerLink
Material type: materialTypeLabelE-bookSeries: (Wireless Networks, 2366-1186).Publisher: Cham, Switzerland : Springer International Publising, 2021Edition: First edition 2021.Description: 1 recurso en línea (XII, 185 páginas) : 60 ilustraciones, 51 ilustraciones a color.ISBN: 9783030640545.Subject: Redes informáticas | Sistemas de comunicación inalámbricos | Sistemas de comunicación móvilesOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Preface- 1 -- Introduction -- 2 Energy-Efficient Resource Allocationin for D2D Enabled Cellular Networks -- 3 Energy Harvesting Enabled Energy Efficient Cognitive Machine-to-Machine Communications -- 4 Software Defined Machine-to-Machine Communication for Smart Energy Management in Power Grids -- 5 Energy-Efficient M2M Communicationsin for Industrial Automation -- 6 Energy-Efficient Context-Aware Resource Allocation for Edge-Computing-Empowered Industrial IoT -- 7 Licensed and Unlicensed Spectrum Management for EnergyEfficient Cognitive M2M -- 8 Energy-Efficient Task Assignment and Route Planning for UAV -- 9 Energy-Efficient and Secure Resource Allocation for MultipleAntenna NOMA with Wireless Power Transfer.
Abstract: Energy efficiency issues for green internet of things (IoT) are investigated in this book, from the perspectives of device-to-device (D2D) communications, machine-to-machine (M2M) communications, and air-ground networks. Specifically, critical green IoT techniques from D2D communications in the cellular network to M2M communications in industrial IoT (IIoT), (from single physical-layer optimization to cross-layer optimization, and from single-layer ground networks to stereoscopic air-ground networks) are discussed in both theoretical problem formulation and simulation result analysis in this book. Internet of Things (IoT) offers a platform that enables sensors and devices to connect seamlessly in an intelligent environment, thus providing intelligence services including monitoring systems, industrial automation, and ultimately smart cities. However, the huge potentials of IoT are constrained by high energy consumption, limited battery capacity, and the slow progress of battery technology. The high energy consumption of IoT device causes communication interruption, information loss, and short network lifetime. Moreover, once deployed, the batteries inside IoT devices cannot be replaced in time. Therefore, energy efficient resource allocation is urgent to be investigated to improve the energy efficiency of IoT, facilitate green IoT, and extend the network lifetime. This book provides readers with a comprehensive overview of the state-of-the-art key technologies, frameworks, related optimization algorithms, and corresponding integrated designs on green IoT. It also presents an easy-to-understand style in a professional manner, making the book suitable for a wider range of readers from students to professionals interested in the green IoT.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TK5105.7 2021 EB (Browse shelf(Opens below)) Acceso electrónico eBook.26042313
Total holds: 0

Preface- 1 -- Introduction -- 2 Energy-Efficient Resource Allocationin for D2D Enabled Cellular Networks -- 3 Energy Harvesting Enabled Energy Efficient Cognitive Machine-to-Machine Communications -- 4 Software Defined Machine-to-Machine Communication for Smart Energy Management in Power Grids -- 5 Energy-Efficient M2M Communicationsin for Industrial Automation -- 6 Energy-Efficient Context-Aware Resource Allocation for Edge-Computing-Empowered Industrial IoT -- 7 Licensed and Unlicensed Spectrum Management for EnergyEfficient Cognitive M2M -- 8 Energy-Efficient Task Assignment and Route Planning for UAV -- 9 Energy-Efficient and Secure Resource Allocation for MultipleAntenna NOMA with Wireless Power Transfer.

Energy efficiency issues for green internet of things (IoT) are investigated in this book, from the perspectives of device-to-device (D2D) communications, machine-to-machine (M2M) communications, and air-ground networks. Specifically, critical green IoT techniques from D2D communications in the cellular network to M2M communications in industrial IoT (IIoT), (from single physical-layer optimization to cross-layer optimization, and from single-layer ground networks to stereoscopic air-ground networks) are discussed in both theoretical problem formulation and simulation result analysis in this book. Internet of Things (IoT) offers a platform that enables sensors and devices to connect seamlessly in an intelligent environment, thus providing intelligence services including monitoring systems, industrial automation, and ultimately smart cities. However, the huge potentials of IoT are constrained by high energy consumption, limited battery capacity, and the slow progress of battery technology. The high energy consumption of IoT device causes communication interruption, information loss, and short network lifetime. Moreover, once deployed, the batteries inside IoT devices cannot be replaced in time. Therefore, energy efficient resource allocation is urgent to be investigated to improve the energy efficiency of IoT, facilitate green IoT, and extend the network lifetime. This book provides readers with a comprehensive overview of the state-of-the-art key technologies, frameworks, related optimization algorithms, and corresponding integrated designs on green IoT. It also presents an easy-to-understand style in a professional manner, making the book suitable for a wider range of readers from students to professionals interested in the green IoT.

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