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浙江师范大学 精密机械研究所,浙江 金华,321004
收稿日期:2013-11-28,
修回日期:2014-01-16,
纸质出版日期:2014-07-25
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阚君武, 李洋, 王淑云*等. 旋转激励磁铁数对压电俘能器输出性能的影响[J]. 光学精密工程, 2014,22(7): 1864-1870
KAN Jun-wu, LI Yang, WANG Shu-yun* etc. Influence of NRMs on energy-generation performance of piezoelectric harvesters[J]. Editorial Office of Optics and Precision Engineering, 2014,22(7): 1864-1870
阚君武, 李洋, 王淑云*等. 旋转激励磁铁数对压电俘能器输出性能的影响[J]. 光学精密工程, 2014,22(7): 1864-1870 DOI: 10.3788/OPE.20142207.1864.
KAN Jun-wu, LI Yang, WANG Shu-yun* etc. Influence of NRMs on energy-generation performance of piezoelectric harvesters[J]. Editorial Office of Optics and Precision Engineering, 2014,22(7): 1864-1870 DOI: 10.3788/OPE.20142207.1864.
考虑现有旋转发电机无法适应高/匀速旋转运动且振动冲击/ 噪音大、可靠性低等弊端,提出了一种由旋转磁铁激励的压电俘能器,并从理论及试验两方面研究了旋转磁铁数量(间距)对激振力及压电振子发电特性的影响规律。结果表明,在其它条件确定的情况下,存在使激振力最大的最佳旋转磁铁间隙比(磁铁直径与相邻磁铁间距离之比);间隙比为2时的激振力幅值为间隙比为0和4时的6.2倍。采用2,12,24个旋转磁铁激励发电时,电压-转速特性曲线中均存在多个使输出电压出现峰值的最佳转速,其中最大峰值电压及其所对应的最佳转速分别为29.4,87.2,28.4 V和1 282.5,707.5,2451 rmin
-1
;12个旋转磁铁激励的最大输出电压为其它两种情况的3倍。此外,压电振子一次激励所生成电能(波形数量及幅值)还与旋转磁铁数量及转速有关。2个旋转磁铁在低转速时仅能激励出1个较大幅值电压波形,而高转速时可生成4个幅值较大的自由振荡波形;12个磁铁在任何转速下都仅能激励出1个电压波形。实验显示动磁铁数量是影响旋转压电俘能器发电量及输出功率的关键要素。
As existing rotating generators can not adapt to a high speed shock and vibration and have higher noise and lower reliability
this paper proposes a piezoelectric energy harvester excited by rotating magnets.The influence of the number of the rotating magnets (NRMs) on the exciting force as well as the output voltage of the piezoelectric harvester is investigated theoretically and experimentally.The results show that there is an optimal gap ratio (the gap
l
between two adjacent magnets to the magnet diameter) for the excitation force to achieve maximum.The obtained excitation force at
l
=2 is 6.2 times that at
l
=0 and
l
=4.When the voltage generation exited with 2
12
24 rotating magnets in the experiments
there are several optimal rotating speeds for the generated voltages to achieve the peak.The maximal peak voltages and the relative optimal speeds for 2
12
24 rotating magnets are 29.4
87.2
28.4 V and 1 282.5
2 707.5
2 451 rmin
-1
respectively.The maximal voltage generated under 12 rotating magnets is about 3 times those under other excitation conditions.The voltage waveform generated from the piezoelectric harvester under one excitation depends on the NRMs and rotating speeds.For 2 rotating magnets
the number of voltage waveforms generated at low and high rotating speeds are 1 and 4
respectively.For 12 rotating magnets
only one voltage waveform generates at any speed.These results demonstrate that the NRMs have great influence on energy generation and output powers of piezoelectric energy harvesters.
ADNAN HARB. Energy harvesting: State-of-the-art[J]. Renewable Energy,2011,36: 2641-2654.
PAULO J,GASPAR P D. Review and future trend of energy harvesting methods for portable medical devices. Proc. of the World Congress on Engineering,2010(2):909-914.
KIM H S,KIM J H,KIM J. A Review of piezoelectric energy harvesting based on vibration[J]. International Journal of Precision Engineering and Manufacturing,2011,12(6):1129-1141.
THAD S. Human powered wearable computing[J]. IBM Systems Journal,1996,35 (3-4):618-629.
SALEM S,OTHMAN S. A review of vibration-based MEMS piezoelectric energy harvesters[J]. Energy Conversion and Management,2011,52:500-504.
POBERING S, EBERMEYER S, SCHWESINGER N. Generation of electrical energy using short piezoelectric cantilevers in flowing media[J]. Proc. of SPIE,2009,7288: 71-78.
闫世伟,杨志刚,罗洪波,等. TPMS用压电发电装置研究[J]. 压电与声光,2010,32(5): 774-777. YAN SH W,YANG SH G,LUO H B,et al. The study of piezoelectric generator for TPMS[J]. Piezoelectrics & Acoustooptics,2010,32(5): 774-777. (in Chinese)
GUA L,LIVERMORE C. Passive self-tuning energy harvester for extracting energy from rotational motion[J]. Applied Physics Letters,2010,97(8):081904.
PRIYA S,CHEN C T,FYE D,et al. Piezoelectric windmill: a novel solution to remote sensing[J]. Japanese Journal of Applied Physics. 2005,44(3):L104-L107.
AVALLIER B,BERTHELOT P,NOUIRA H,et al. Energy harvesting using vibrating structures excited by shock[J]. IEEE Ultrasonics Symposium,2005,2: 943-945.
阚君武,王淑云,彭少锋,等. 多振子压电发电机的输出特性[J]. 光学精密工程. 2011,19(9): 2108-2116. KAN J W,WANG SH Y,PENG SH F,et al. Output performance of a piezoelectric generator with multi-vibrator[J]. Opt. Precision Eng. ,2011,19(9): 2108-2116. (in Chinese)
陈宇东. 结构振动分析[M]. 吉林:吉林大学出版社,2008:69-71. CHEN Y D. Structural Vibration Analysis[M]. Jilin: Jilin university publisher,2008:69-71.
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