Volume 45 Issue 2
Apr.  2016
Article Contents

HE Xue-feng, LI Si-yu, ZHANG Chuang, QI Rui. Wireless Sensor Node Powered by Broadband Low-Frequency Vibration Energy Harvester[J]. Journal of University of Electronic Science and Technology of China, 2016, 45(2): 215-220.
Citation: HE Xue-feng, LI Si-yu, ZHANG Chuang, QI Rui. Wireless Sensor Node Powered by Broadband Low-Frequency Vibration Energy Harvester[J]. Journal of University of Electronic Science and Technology of China, 2016, 45(2): 215-220.

Wireless Sensor Node Powered by Broadband Low-Frequency Vibration Energy Harvester

  • Publish Date: 2016-04-15
  • [1] BEEBY S P, TUDOR M J, WHITE N M. Energy harvesting vibration sources for microsystems applications[J]. Measurement Science and Technology, 2006, 17(12): R175.
    [2] ROUNDY S, WRIGHT P K. A piezoelectric vibration based generator for wireless electronics[J]. Smart Materials and Structures, 2004, 13(5): 1131-1142.
    [3] MARZENCKI M, AMMAR Y, BASROUR S. Integrated power harvesting system including a MEMS generator and a power management circuit[J]. Sensors and Actuators A: Physical, 2008, 145: 363-370.
    [4] LIU J Q, FANG H B, XU Z Y, et al. A MEMS-based piezoelectric power generator array for vibration energy harvesting[J], Microelectronics Journal, 2008, 39(5): 802-806.
    [5] ROUNDY S, WRIGHT P K, RABAEY J. A study of low level vibrations as a power source for wireless sensor nodes[J]. Computer Communications, 2003, 26(11): 1131-1144.
    [6] WANG P, TANAKA K, SUGIYAMA S, et al. A micro electromagnetic low level vibration energy harvester based on MEMS technology[J]. Microsystem technologies, 2009, 15(6): 941-951.
    [7] HOFFMANN D, FOLKMER B, MANOLI Y. Fabrication, characterization and modelling of electrostatic micro-generators[J]. Journal of Micromechanics and Microengineering, 2009, 19(9): 094001.
    [8] YANG B, LEE C K, XIANG W F, et al. Electromagnetic energy harvesting from vibrations of multiple frequencies[J]. Journal of Micromechanics and Microengineering, 2009, 19(3): 035001.
    [9] AMIRTHARAJALI R, MENINGER S, MUR MIRANDA J. et al. Self-powered signal processing using vibration-based power generation[J]. IEEE Journal of Solid State Circuits, 1998, 33(5): 687-695.
    [10] 贺学锋, 印显方, 杜志刚, 等. 悬臂梁压电振动能采集器的集总参数模型和实验验证[J]. 纳米技术与精密工程, 2012, 10(2): 108-112.

    HE Xue-feng, YIN Xian-fang, DU Zhi-gang, et al. Lumped-parameter model and experimental verification for cantilevered piezoelectric vibration harvester energy[J]. Nanotechnology and Precision Engineering, 2012, 10(2): 108-112.
    [11] 贺学锋, 杜志刚, 赵兴强, 等. 悬臂梁式压电振动能采集器的建模及实验验证[J]. 光学精密工程, 2011, 19(8): 1771-1778.

    HE Xue-feng, DU Zhi-gang, ZHAO Xing-qiang, et al. Modeling and experimental verification for cantilevered piezoelectric vibration energy harvester[J]. Optics Precision Engineering, 2011, 19(8): 1771-1778.
    [12]  KULAH H, NAJAFI K. Energy scavenging from low-frequency vibrations by using frequency up-conversion for wireless sensor applications[J]. IEEE Sensors Journal, 2008, 8(3): 261-268.
    [13] GALCHEV T, KIM H, NAJAFI K. Micro power generator for harvesting low-frequency and nonperiodic vibrations[J]. Journal of Microelectromechanical Systems, 2010, 20(4): 852-866.
    [14] JUNG S M, YUN K S. Energy-harvesting device with mechanical frequency-up conversion mechanism for increased power efficiency and wideband operation[J]. Applied Physics Letters, 2010, 96(11): 119061.
    [15]  HE X F, ZHU Y, CHENG Y Q, et al. Broadband low-frequency vibration energy harvester with a rolling mass[J]. Applied Mechanics and Materials, 2013, 404: 635-639. 
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Wireless Sensor Node Powered by Broadband Low-Frequency Vibration Energy Harvester

HE Xue-feng, LI Si-yu, ZHANG Chuang, QI Rui. Wireless Sensor Node Powered by Broadband Low-Frequency Vibration Energy Harvester[J]. Journal of University of Electronic Science and Technology of China, 2016, 45(2): 215-220.
Citation: HE Xue-feng, LI Si-yu, ZHANG Chuang, QI Rui. Wireless Sensor Node Powered by Broadband Low-Frequency Vibration Energy Harvester[J]. Journal of University of Electronic Science and Technology of China, 2016, 45(2): 215-220.
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