DocumentCode
3104471
Title
Investigation of energy harvest and storage by using curve-shape piezoelectric unimorph
Author
Yung Ting ; Hariyanto, Yung Ting Gunawan ; Hou, Bing Kuna ; Ricky, Setiawan ; Amelia, Sugondo ; Wang, Chi-Kai
Author_Institution
Dept. of Mech. Eng., Chung Yuan Christian Univ., Chungli, Taiwan
fYear
2009
fDate
5-8 July 2009
Firstpage
2047
Lastpage
2052
Abstract
A curve-shape piezoelectric unimorph is used for energy harvest. Deformation of the unimorph will gain electricity via piezoelectric direct effect. In this study, a cantilever unimorph encountered with external force at various vibration frequencies to generate electricity and save into a storage circuitry is investigated. Modeling of the unimorph and storage circuitry is derived. The analytical computation and experimental result are in a good agreement. Both outcomes verify that vibration frequency nearer the resonant frequency will gain more energy and the load resistance of a RC storage circuitry matching the equivalent impedance of piezoelectric ceramics will gain maximum storage energy. Efficiency of electromechanical conversion and energy storage is examined. As compared to other previous works using piezoelectric ceramics, the curve shape unimorph performs better. In experiment, for instance, by using a load resistor of 3 kOmega ideally equal to the impedance of ceramics and an arbitrarily chosen capacitor of 470 muF at vibration frequency of 135.59 Hz for 25 seconds, electric power of 48 mW is obtained and electromechanical efficiency of about 18.49% is achieved.
Keywords
energy harvesting; energy storage; piezoceramics; RC storage circuitry matching; cantilever unimorph; curve-shape piezoelectric unimorph; energy harvest; energy storage; external force; frequency 135.59 Hz; piezoelectric ceramics; piezoelectric direct effect; power 48 mW; resistance 3 kohm; time 25 s; vibration frequencies; Capacitors; Ceramics; Electric resistance; Energy storage; Impedance; Power generation; RLC circuits; Resistors; Resonant frequency; Shape; energy harvest; piezoelectric ceramics unimorph;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics, 2009. ISIE 2009. IEEE International Symposium on
Conference_Location
Seoul
Print_ISBN
978-1-4244-4347-5
Electronic_ISBN
978-1-4244-4349-9
Type
conf
DOI
10.1109/ISIE.2009.5213121
Filename
5213121
Link To Document