Piezoelectric Vibration Energy Harvesting: Modeling & Experiments
The electromechanical coupling effect introduced by piezoelectric vibration energy harvesting (PVEH) presents serious modeling challenges. This book provides close-form accurate mathematical modeling and experimental techniques to design and validate dual function PVEH vibration absorbing devices as a solution to mitigate vibration and maximize operational efficiency. It includes in-depth experimental validation of a PVEH beam model based on the analytical modal analysis method (AMAM), precisely identifying electrical loads that harvest maximum power and induce maximum electrical damping. The author's detailed analysis will be useful for researchers working in the rapidly emerging field of vibration based energy harvesting, as well as for students investigating electromechanical devices, piezoelectric sensors and actuators, and vibration control engineering.
1133680261
Piezoelectric Vibration Energy Harvesting: Modeling & Experiments
The electromechanical coupling effect introduced by piezoelectric vibration energy harvesting (PVEH) presents serious modeling challenges. This book provides close-form accurate mathematical modeling and experimental techniques to design and validate dual function PVEH vibration absorbing devices as a solution to mitigate vibration and maximize operational efficiency. It includes in-depth experimental validation of a PVEH beam model based on the analytical modal analysis method (AMAM), precisely identifying electrical loads that harvest maximum power and induce maximum electrical damping. The author's detailed analysis will be useful for researchers working in the rapidly emerging field of vibration based energy harvesting, as well as for students investigating electromechanical devices, piezoelectric sensors and actuators, and vibration control engineering.
169.99 In Stock
Piezoelectric Vibration Energy Harvesting: Modeling & Experiments

Piezoelectric Vibration Energy Harvesting: Modeling & Experiments

by Sajid Rafique
Piezoelectric Vibration Energy Harvesting: Modeling & Experiments

Piezoelectric Vibration Energy Harvesting: Modeling & Experiments

by Sajid Rafique

Hardcover(1st ed. 2018)

$169.99 
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Overview

The electromechanical coupling effect introduced by piezoelectric vibration energy harvesting (PVEH) presents serious modeling challenges. This book provides close-form accurate mathematical modeling and experimental techniques to design and validate dual function PVEH vibration absorbing devices as a solution to mitigate vibration and maximize operational efficiency. It includes in-depth experimental validation of a PVEH beam model based on the analytical modal analysis method (AMAM), precisely identifying electrical loads that harvest maximum power and induce maximum electrical damping. The author's detailed analysis will be useful for researchers working in the rapidly emerging field of vibration based energy harvesting, as well as for students investigating electromechanical devices, piezoelectric sensors and actuators, and vibration control engineering.

Product Details

ISBN-13: 9783319694405
Publisher: Springer International Publishing
Publication date: 11/04/2017
Edition description: 1st ed. 2018
Pages: 172
Product dimensions: 6.10(w) x 9.25(h) x (d)

About the Author

Dr. Sajid Rafique is currently working as a Researcher for European Union AAL Call 6 Project in the field of Robotics exoskeleton design for assistive living. He earned his MSc in Advanced Mechanical Engineering at Imperial College of London and his PhD. in Structural Dynamics from University of Manchester, UK. His current research interests center around vibrational analysis and modelling for energy applications.

Table of Contents

Introduction.- Overview of Vibration Energy Harvesting.- Distributed Parameter Modeling and Experimental Validation.- Modeling of Energy Harvesting Beams using Dynamic Stiffness Method.- A Theoretical Analysis of an “Electromechanical” Beam Tuned Mass Damper.- Experimental Analysis of an “Electromechanical” Beam Tuned Mass Damper.- Example of Vibration Suppression of Electronic Box Using Dual Function EH/TVA.- Summary and Future Research.
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