Přístupnostní navigace
E-application
Search Search Close
Publication detail
HADAŠ, Z. ONDRŮŠEK, Č.
Original Title
Nonlinear spring-less electromagnetic vibration energy harvesting system
Type
journal article in Web of Science
Language
English
Original Abstract
This paper deals with a description and modelling of a spring-less electromagnetic vibration energy harvesting system. The presented unique electromagnetic vibration energy harvester consists of a nonlinear resonance mechanism, magnetic circuit with a coil and an electronic load. The mechanical vibrations excite the nonlinear resonance mechanism and the relative movement of the magnetic circuit against fixed coil induces voltage due to Faraday’s Law. When the electronics is connected the current flows through the load and output power is harvested. There are several nonlinearities which affects operations of the presented electromagnetic energy harvesting system. The significant nonlinearity of the system is stiffness of the resonance mechanism and it causes extending of an operation bandwidth. The harvesting of electrical energy from mechanical vibrations provides electromagnetic damping feedbacks of the coil to moving magnetic circuit. The feedback depends on the current flow through the electronic load and coil. The using of modern power management circuit with optimal power point provides other nonlinear operation.
Keywords
Energy harvesting, Vibration, Non-linear System, Resonance, Electromagnetic, Power Management
Authors
HADAŠ, Z.; ONDRŮŠEK, Č.
RIV year
2015
Released
20. 11. 2015
Publisher
Springer-Verlag
Location
HEIDELBERG, GERMANY
ISBN
1951-6355
Periodical
European Physical Journal-Special Topics
Year of study
224
Number
14-15
State
French Republic
Pages from
2881
Pages to
2896
Pages count
16
BibTex
@article{BUT117110, author="Zdeněk {Hadaš} and Čestmír {Ondrůšek}", title="Nonlinear spring-less electromagnetic vibration energy harvesting system", journal="European Physical Journal-Special Topics", year="2015", volume="224", number="14-15", pages="2881--2896", doi="10.1140/epjst/e2015-02595-3", issn="1951-6355" }