基于小波包能量特征向量的光纤布拉格光栅低速冲击定位

郭飞 1,2,张培伟 1,2,张大海 1,2,韩晓林 1,2,费庆国 1,2

振动与冲击 ›› 2017, Vol. 36 ›› Issue (8) : 184-189.

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振动与冲击 ›› 2017, Vol. 36 ›› Issue (8) : 184-189.
论文

基于小波包能量特征向量的光纤布拉格光栅低速冲击定位

  • 郭飞 1,2 ,张培伟 1,2,张大海 1,2,韩晓林 1,2,费庆国 1,2
作者信息 +

Localization of low-velocity impact by using fiber Bragg grating sensors based on wavelet packet energy eigenvector

  • GUO Fei1,2,ZHANG Peiwei1,2,ZHANG Dahai1,2,HAN Xiaolin1,2,FEI Qingguo1,2
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文章历史 +

摘要

光纤布拉格光栅(FBG)传感器在飞行器的实时冲击定位监测中具有广阔的应用前景。根据两次冲击位置距离越近接收到信号幅频特性相似度越高的关系,提出基于小波包能量特征向量与相似度匹配算法共同实现冲击定位的研究,构建了一套由光纤布拉格光栅传感器和复合材料层合板组成的冲击定位监测系统。首先通过遍布冲击建立能量特征向量数据库。然后通过试验点的能量特征向量与数据库中各点的能量特征向量进行相似度计算实现冲击定位。实验表明,对480mm×480mm的复合材料层合板的16次冲击定位实验中,该方法的最大误差为40mm。

Abstract

Fiber Bragg grating (FBG) sensors have great application prospects in identifying impact location on aircraft,especially for real-time monitoring.Here,a method to identify impact location was designed based on wavelet packet energy eigenvector and the similarity measurement algorithm,according to the relationships between amplitude-frequency characteristics induced by different impact locations,the closer two impact locations,the similar these two amplitude-frequency characteristics.Then,a monitor system was constructed of fiber-reinforced composite laminates and FBG sensors to verify the effectiveness of the proposed method.Initially,an energy eigenvector database was established by impacting all selected points on the laminates.Then,energy eigenvector was recorded by impacting an arbitrary position.By computing the similarity between the energy eigenvector recorded and all energy eigenvectors in database,the impact location could be determined with a tolerable error.Within 16 experiments on a 480 mm×480 mm fiber-reinforced composite laminates,the maximum error was 40mm.

关键词

光纤Bragg光栅(FBG) / 小波包变换 / 相似度匹配算法 / 低速冲击定位

Key words

fiber Bragg grating(FBG);  / wavelet packet transform; similarity measurement method;  / localization of low-velocity impact

引用本文

导出引用
郭飞 1,2,张培伟 1,2,张大海 1,2,韩晓林 1,2,费庆国 1,2. 基于小波包能量特征向量的光纤布拉格光栅低速冲击定位[J]. 振动与冲击, 2017, 36(8): 184-189
GUO Fei1,2,ZHANG Peiwei1,2,ZHANG Dahai1,2,HAN Xiaolin1,2,FEI Qingguo1,2. Localization of low-velocity impact by using fiber Bragg grating sensors based on wavelet packet energy eigenvector[J]. Journal of Vibration and Shock, 2017, 36(8): 184-189

参考文献

[1] Tribikram Kundu,Samik Das,Steven A. Martin,et al.Locating point of impact in anisotropic fiber reinforced composite plates[J].Ultrasonics,2008,48(13):193-201.
[2] Chan Yik Park,Jong Heon Kim,Seung-Moon Jun,et al.Localizations and force reconstruction of low-velocity impact in a composite panel using optical fiber sensors[J].Advanced Composite Materials,2012,21(5-6):357-369.
[3] 苏永振,袁慎芳,王瑜.基于多重信号分类算法的复合材料冲击定位[J].复合材料学报,2010,27(3):105-110.
Su Yongzhen,Yuan Shenfang,Wang Yu.Impact localization in composite using multiple signal classification method[J].Acta Materiae Compositae Sinica,2010,27(3):105-110.
[4] 钟永腾,袁慎芳,邱雷.基于梅花阵列的复合材料全方位冲击定位方法[J].复合材料学报,2014,31(5):1369-1374.
Zhong Yongteng,Yuan Shenfang,Qiu Lei.Omni-directional impact localization method on composite structure using plum blossom[J].Acta Materiae Compositae Sinica,2014,31(5):1369-1374.
[5] 邱雷,袁慎芳,苏永振,等.基于Shannon复数小波和时间反转聚焦的符合材料结构多源冲击成像定位方法[J].航空学报,2010,31(12):2418-2424.
Qiu Lei,Yuan Shenfang,Su Yongzhen,et al.Multiple impact source imageing and localization on composite structure based on Shannon complex wavelet and time reversal focusing[J].Acta Aeronautica et Astronautica Sinica,2010,31(12).2418-2424.
[6] 吴早凤,肖黎,曲文忠.一种基于时间反转的冲击定位方法[J].武汉大学学报(工学版),2014,47(4).520-526.
Wu Zaofeng,Xiao Li,Qu Wenzhong.An impact location method based on time reversal concept[J].Engineering Journal of Wuhan University,2014,47(4):520-526.
[7] Pratik Shrestha,Jin–Hyuk Kim,Yurim Park,et al.Impact localization on composite wing using 1D array FBG sensor and RMS/ correlation based reference database algrithm[J].Composite Structures,2015,125:159-169.
[8] 芦吉云,王帮峰,梁大开.基于小波包特征提取及支持向量回归机的光纤布拉格光栅冲击定位系统[J].光学精密工程,2012,20(4):712-718.
Lu Jiyun,Wang Bangfeng,Liang Dakai.Identification of impact location by using FBG based on wavelet packet feature extraction and SVR[J].Optics and Precision Engineering,2012,20(4):712-718.
[9] 路士增,姜明顺,隋青美,等.基于数据模板匹配算法的FBG冲击定位系统[J].光电子﹒激光,2014,25(2):305-310.
Lu Shizeng,Jiang Mingshun,Sui Qingmei,et al.An impact location method using FBG sensing based on data template matching algorithm[J].Journal of Optoelectronics﹒Laser
[10] 徐丹.光纤传感器应变监测的应用研究[D].大连:大连理工大学,2010.
Xu Dan.Research the application about strain monitoring using the Fiber Bragg Grating sensors[D].Dalian: Dalian University,2010.
[11] 凌同华,廖艳程,张胜.冲击载荷下岩石声发射信号能量特征的小波包分析[J].振动与冲击,2010,29(10):127-130.
Ling Tonghua,Liao Yancheng,Zhang Sheng.Application of wavelet packet method in frequency bands energy distribution of rock acoustic emission signals under impact loading[J].Journal of Vibration and Shock,2010,29(10):127-130.
[12] 肖小文.小波能量法损伤识别的研究[D].湖南:中南大学土木工程学院,2012.
Xiao Xiaowen.Wavelet energy method application in damage identification[D] .Hunan: Central South University,2012.
[13] 张宇,刘雨东,计钊.向量相似度测度方法[J] .声学技术,2009,28(4):532-536.
Zhang Yu,Liu Yudong, Ji Zhao.Vector similarity measurement method[J].Technical Acoustics,2009,28(4):532-536

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