Frequency Analysis of Vibration Energy Harvesting Systems

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Éditeur :

Academic Press


Paru le : 2016-07-26

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Description
Frequency Analysis of Vibration Energy Harvesting Systems aims to present unique frequency response methods for analyzing and improving vibration energy harvesting systems. Vibration energy is usually converted into heat energy, which is transferred to and wasted in the environment. If this vibration energy can be converted into useful electric energy, both the performance and energy efficiency of machines, vehicles, and structures will be improved, and new opportunities will open up for powering electronic devices. To make use of ambient vibration energy, an effective analysis and design method is established and developed in this book. The book covers a wide range of frequency response analysis methods and includes details of a variety of real-life applications. MATLAB programming is introduced in the first two chapters and used in selected methods throughout the book. Using the methods studied, readers will learn how to analyze and optimize the efficiency of vibration energy systems. This book will be ideal for postgraduate students and researchers in mechanical and energy engineering. - Covers a variety of frequency response analysis methods, including Fourier and Laplace transform, transfer function, integration and state space for piezoelectric and electromagnetic vibration energy harvesting analysis - Provides coverage of new and traditional methods of analyzing and optimizing the power and efficiency of vibration energy harvesting systems, with MATLAB exercises provided throughout - Demonstrates a wide range of real-life applications, such as ocean wave energy conversion, vehicle suspension vibration energy harvesting, and more
Pages
326 pages
Collection
n.c
Parution
2016-07-26
Marque
Academic Press
EAN papier
9780128023211
EAN PDF
9780128025581

Informations sur l'ebook
Nombre pages copiables
32
Nombre pages imprimables
32
Taille du fichier
8059 Ko
Prix
94,90 €
EAN EPUB SANS DRM
9780128025581

Informations sur l'ebook
Prix
94,90 €

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