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Vibration-based Energy Harvester for Wireless Condition Monitoring System

무선 상태감시 시스템용 진동 기반 에너지 획득 장치

  • 조성원 (경상대학교 정밀기계공학과 해양산업연구소) ;
  • 손종덕 (부경대학교 음향진동연구소) ;
  • 양보석 (부경대학교 기계공학부) ;
  • 최병근 (경상대학교 정밀기계공학과 해양산업연구소)
  • Published : 2009.04.20

Abstract

Historically, industrial condition monitoring has been performed by costly hard-wired sensors or infrequent checks by maintenance personnel equipped with hand held monitoring equipment. Self- powered wireless condition monitoring systems provides on-line monitoring of critical plant and machinery providing major operating cost benefits. A vibration energy harvester(VEH) is a device that converts kinetic energy occurred by machine vibration into useable electrical energy. Using VEHs to power wireless monitoring systems can yield significant benefits: increased reliability, lower life time costs and no battery disposal issues, etc. This paper proposes the novel prototype design and manufacturing of a VEH that can eliminate the effect by failed batteries.

Keywords

References

  1. Jeremy, F., 2007, 'Low-cost Vibration Power Harvesting for Industrial Wireless Sensors,' DoE STTR Project
  2. Shamim, N. P., Sukun, K., Gregory, L. F., Steven, D. G., David, E. C. and James, W. D., 2005, 'Multi-purpose Wireless Accelerometers for Civil Infrastructure Monitoring,' International Workshop on Structural Health Monitoring, pp. 254-263
  3. Anwar, S., Hongwei, Q., Chuanzhao, Y., Jiann, S. Y., Huikai, X., 2005, 'Low-power CMOS Wireless MEMS Motion Sensor for Physiological Activity Monitoring,' IEEE Trans. Circuits and Systems, Vol. 52, No. 12. pp. 2539-2551 https://doi.org/10.1109/TCSI.2005.857772
  4. Beeby, S. P., Torah, R. N., Tudor, M. J., Glynne-Jones, P., O’'Donnell, T., Saha, C. R. and Roy, S., 2007, 'A Micro Electromagnetic Generator for Vibration Energy Harvesting,' Journal of Micromechanics and Microengineering, Vol. 17, No. 7, pp. 1257-1265 https://doi.org/10.1088/0960-1317/17/7/007
  5. http://www.Piezo.com
  6. Hua, B. F., Jing, Q. L., Zheng, Y. X., Lu, D., Li, W., Di, C., Bing, C. C. and Yue, L., 2006, 'Fabrication and Performance of MEMS-based Piezoelectric Power Generator for Vibration Energy Harvesting,' Microelectronics Journal, Vol. 37, No. 11, pp. 1280-1284 https://doi.org/10.1016/j.mejo.2006.07.023
  7. http://physica.gsnu.ac.kr/phtml/electromagnetic/induction/induction/induction.html
  8. Bernard, C. Y. and Jeffrey, H. L., 2006, 'A Variable-capacitance Vibration-to-electric Energy Harvester,' IEEE Trans. Circuits and Systems, Vol. 53, No. 2, pp. 288-295 https://doi.org/10.1109/TCSI.2005.856043
  9. Jiang, S. and Hu, Y., 2007, 'Analysis of a Piezoelectric Bimorph Plate with a Central-attached Mass as an Energy Harvester,' IEEE Trans. Ultrasonics, Ferroelectronics, and Frequency Control, Vol. 54, No. 7, pp. 1463-1469 https://doi.org/10.1109/TUFFC.2007.407
  10. Cardoso, A. J., Rodrigues, C. R., Pippi, R. S., Prior, C. A. and Vieira, F. C. B., 2006, 'CMOS Energy Harvester Based on a Low-cost Piezoelectric Acoustic Transducer,' IEEE Midwest Symposium on Circuits and Systems, pp. 70-74 https://doi.org/10.1109/MWSCAS.2006.381997
  11. Gracewski, S. M., Funkenbusch, P. D., Jia, Z., Ross, D. S. and Potter, M. D., 2006, 'Design and Modeling of a Micro-energy Harvester Using an Embedded Charge Layer,' Journal of Micromechanics and Microengineering, Vol. 16, No. 2, pp. 235-241 https://doi.org/10.1088/0960-1317/16/2/007
  12. Torres, E. O. and Rincón-Mora, G. A., 2006, 'Electrostatic Energy Harvester and Li-ion Charger Circuit for Micro-scale Applications,' IEEE Midwest Symposium on Circuits and Systems, pp. 65-69 https://doi.org/10.1109/MWSCAS.2006.381996
  13. Ching, N. N. H., Chan, G. M. H., Li. W. J., Wong, H. Y. and Leong, P. H. W., 2000, 'PCB Integrated Micro-generator for Wireless Systems,' International Symposium on Smart Structures and Microsystems, pp. 1-6

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  2. Design of a Vibration-Powered Piezoelectric Energy-Harvesting Module by Considering Variations in Excitation Frequency vol.34, pp.5, 2010, https://doi.org/10.3795/KSME-A.2010.34.5.637