Design of vibration exciter by using permanent magnets for application to piezoelectric energy harvesting

  • Yang, Chan Ho
  • Song, Daniel
  • Woo, Min Sik
  • Hong, Seong Kwang
  • Baek, Ki Hwan
  • 외 1명
Citations

SCOPUS

6

초록

We designed a piezoelectric energy harvesting system that can shift the resonant frequency to match the fixed external energy frequency. A permanent magnet (10 x 10 x 5 mm 3) was attached to the free end of a cantilever beam, and a permanent magnet was attached to each of the four faces of a rotor at 90°angles. The effect of the size of the permanent magnets (40 x 20 x 10 mm 3, 30 x 20 x 10 mm 3, and 20 x 20 x 10 mm 3) and the effect of the pole array distribution (NNNN, SSSS, NSNS, and NNSS) were experimentally investigated. The optimum conditions were determined by testing various distances between the magnets at different rpm's. The experiments showed that the maximum output power was generated for the minimum distance and largest magnet. The most effective approach to adjust the resonance frequency was to change the pole arrays of the magnets attached to the rotor. Furthermore, the optimum conditions were determined at each distance by changing the pole array and rpm. Software simulations support the experimental results.

키워드

permanent magnetspiezoelectric energy harvestingresonance frequencyArray distributionsExternal energyFree endMaximum output powerMinimum distanceOptimum conditionsPiezoelectric energy harvestingResonance frequenciesSoftware simulationVibration excitersEnergy harvestingNatural frequenciesPermanent magnets
제목
Design of vibration exciter by using permanent magnets for application to piezoelectric energy harvesting
저자
Yang, Chan HoSong, DanielWoo, Min SikHong, Seong KwangBaek, Ki HwanSung, Tae Hyun
DOI
10.1109/ISAF.2012.6297748
발행일
2012-09
유형
Conference Paper
저널명
Proceedings of 2012 21st IEEE Int. Symp. on Applications of Ferroelectrics held jointly with 11th IEEE European Conference on the Applications of Polar Dielectrics and IEEE PFM, ISAF/ECAPD/PFM 2012
페이지
1 ~ 4