<p>Wireless sensors and sensor networks (WSNs) are nowadays becoming increasingly important due to their decisive advantages. Different trends towards the Internet of Things (IoT), Industry 4.0 and 5G Networks address massive sensing and admit to have wireless sensors delivering measurement data dir
Energy harvesting for wireless sensor networks: technology, components and system design /
โ Scribed by edited by Olfa Kanoun.
- Publisher
- De Gruyter
- Year
- 2019
- Tongue
- English
- Leaves
- 404
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Table of Contents
Preface
Contents
Part I: Fundamentals and methods
Finite element modeling of energy harvesters: application to vibrational devices
Solar energy harvesting for wireless sensor systems
Efficiency of vibration energy harvesting systems
Energy management concepts for wireless sensor nodes
Part II: Vibration converters and hybridization
Magnetoelectric vibration energy harvesting
Nonlinear electromagnetic vibration converter with bistable RMSHI for power harvesting from ambient vibration
Energy harvesting from an oscillating vertical piezoelectric cantilever with clearance
On hybridization of electromagnetic vibration converters
Hybrid vibrational energy harvesting using piezoelectric and magnetostrictive transducers
Part III: Wireless energy transfer
Beamforming design for secure SWIPT systems under a non-linear energy harvesting model
Radio frequency power transfer for wireless sensors in indoor applications
Modeling and simulation of inductive-based wireless power transmission systems
Wireless power transmission via a multi-coil inductive system
Energy management for inductive power transmission
Part IV: Energy saving and management strategies
Towards energy-efficient power management for wireless sensors networks
Optimal energy allocation in energy harvesting and sharing wireless sensor networks
Energy-efficient techniques in wireless sensor networks
A wake-up receiver for online energy harvesting enabled wireless sensor networks
Part V: System design and applications
Wireless sensor networks in agricultural applications
Piezoelectric energy harvesting for monitoring of rail bridge infrastructure
Hybrid energy harvesting methodologies for energizing sensors towards power grid applications
Energy harvesting for a wireless monitoring system of overhead high-voltage power lines
Series: Advances in Signals, Systems and Devices
๐ SIMILAR VOLUMES
<p>Wireless sensors and sensor networks (WSNs) are nowadays becoming increasingly important due to their decisive advantages. Different trends towards the Internet of Things (IoT), Industry 4.0 and 5G Networks address massive sensing and admit to have wireless sensors delivering measurement data dir
<p><span>This second book by the author on WSNs focuses on the concepts of energy, and energy harvesting and management techniques. Definitions and terminologies are made clear without leaning on the relaxing assumption that they are already known or easily reachable, the reader is not to be diverte
<p>Wireless sensor networks consist of small, mostly battery powered computers. Despite their simplicity, each sensor node is equipped with its own memory, CPU and radio transceiver. A typical application is to scatter many of them over a large area. Some sensor nodes can take measurements like temp
The harvesting of energy from ambient energy sources to power electronic devices has been recognized as a promising solution to the issue of powering the ever-growing number of mobile devices around us. <p> Key technologies in the rapidly growing field of energy harvesting focus on developing soluti
<p><p>This book features various, ultra low energy, variability resilient SRAM circuit design techniques for wireless sensor network applications. Conventional SRAM design targets area efficiency and high performance at the increased cost of energy consumption, making it unsuitable for computation-i