红外与激光工程
紅外與激光工程
홍외여격광공정
INFRARED AND LASER ENGINEERING
2013年
3期
810-813
,共4页
龚华平%杨效%屠于梦%宋海峰%董新永
龔華平%楊效%屠于夢%宋海峰%董新永
공화평%양효%도우몽%송해봉%동신영
光纤传感器%光纤布拉格光栅%电阻应变片%等强度梁%振动监测
光纖傳感器%光纖佈拉格光柵%電阻應變片%等彊度樑%振動鑑測
광섬전감기%광섬포랍격광책%전조응변편%등강도량%진동감측
optical fiber sensor%fiber Bragg grating%resistance strain gauge%uniform strength beam%vibration detection
将光纤布拉格光栅(FBG)传感器和电阻应变片固定在等强度梁上,研究了两种传感器的振动监测性能,总结比较了其优缺点.通过固定在等强度梁末端的电机来产生振动,测试了FBG传感器和电阻应变片监测到随时间变化的振动信号,并分析了振动信号经傅里变换(FFT)的频谱图.实验结果表明,FBG传感器和电阻应变片监测到振动信号的时图基本一致,但是FBG传感器监测到振动信号经FFT变换的频谱图出现较明显的二次谐波和三次谐波,电阻应变仪监测到的频谱图出现的谐波较弱.在实验中还观察到,在有电磁干扰情况下,电阻应变仪监测不到振动信号,而FBG传感器正常工作,不受电磁干扰.
將光纖佈拉格光柵(FBG)傳感器和電阻應變片固定在等彊度樑上,研究瞭兩種傳感器的振動鑑測性能,總結比較瞭其優缺點.通過固定在等彊度樑末耑的電機來產生振動,測試瞭FBG傳感器和電阻應變片鑑測到隨時間變化的振動信號,併分析瞭振動信號經傅裏變換(FFT)的頻譜圖.實驗結果錶明,FBG傳感器和電阻應變片鑑測到振動信號的時圖基本一緻,但是FBG傳感器鑑測到振動信號經FFT變換的頻譜圖齣現較明顯的二次諧波和三次諧波,電阻應變儀鑑測到的頻譜圖齣現的諧波較弱.在實驗中還觀察到,在有電磁榦擾情況下,電阻應變儀鑑測不到振動信號,而FBG傳感器正常工作,不受電磁榦擾.
장광섬포랍격광책(FBG)전감기화전조응변편고정재등강도량상,연구료량충전감기적진동감측성능,총결비교료기우결점.통과고정재등강도량말단적전궤래산생진동,측시료FBG전감기화전조응변편감측도수시간변화적진동신호,병분석료진동신호경부리변환(FFT)적빈보도.실험결과표명,FBG전감기화전조응변편감측도진동신호적시도기본일치,단시FBG전감기감측도진동신호경FFT변환적빈보도출현교명현적이차해파화삼차해파,전조응변의감측도적빈보도출현적해파교약.재실험중환관찰도,재유전자간우정황하,전조응변의감측불도진동신호,이FBG전감기정상공작,불수전자간우.
Fiber Bragg grating (FBG) sensor and resistance strain gauge sensor were fixed on the uniform strength beam. Vibration detection characteristics of two kinds of sensors were investigated. The advantage and disadvantage of two kinds of sensors were compared. Vibration was caused by a motor which was fixed at the end of uniform strength beam. The vibration signal in time domain was measured, which was monitored by FBG sensor and resistance strain gauge sensor simultaneously, and the frequency spectrum was analyzed from the vibration curve through FFT. The results show that the vibration graph monitored by FBG sensor is consistent with the vibration graph monitored by resistance strain gauge sensor. But the frequency spectrum monitored by FBG sensor has second harmonic and third harmonic obviously. The frequency spectrum monitored by resistance strain gauge sensor has weak subharmonic. The experiment investigation also indicates that the vibration signal can not be monitored by resistance strain gauge under the electromagnetic interference conditions, but can be monitored by FBG sensor.