首页|基于傅里叶级数的光栅波长信号重构及振动位移精准测量

基于傅里叶级数的光栅波长信号重构及振动位移精准测量

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为实现光纤光栅传感器在多频率振动位移中的精确测量,研究了 一种基于傅里叶级数的光栅波长转换。该方法将光栅波长偏移量按照振动频率分解,依据波长变化量与加速度的关系式得到振动频率分量产生的振动加速度,通过对振动加速度进行二次积分得到振动位移,对振动位移求和,实现整体振动位移的精确测量。实验结果表明,在检测单频率振动位移时,该方法的最大误差率为3。74%,基于振动主频的光栅波长转化方法的最大误差率为-4。60%。在检测双频率振动位移时,该方法的最大误差率为-8。45%,基于振动主频的光栅波长转化方法的最大误差率为-74。25%。因此,该基于傅里叶级数的光栅波长转化方法能够准确分解并重构光栅波长信号,在测量多频率振动位移时精度更高,稳定性更强。
Fourier Series Based Grating Wavelength Signal Reconstruction and Accurate Vibration Displacement Measurement
During operation of a water turbine,the vibration of its mechanical structure may reflect its operating condition.If the peak value of the vibration displacement exceeds a certain range,the water turbine may malfunction,causing serious accidents resulting in casualties and property damage.Therefore,real-time monitoring of the vibration displacement of water turbines is of great importance to ensure the safe operation of water turbines.Existing vibration displacement calculation methods do not consider the influence of vibration frequency,resulting in significant errors when measuring complex vibration displacements.This paper proposes a grating wavelength conversion method based on Fourier series.First,the wavelength variation of the fiber-optic grating sensor feedback is decomposed into multiple wavelength components containing only a single frequency according to different frequencies.Calculate the vibration acceleration generated by each wavelength component corresponding to the vibration component based on the sensitivity of the sensor.Calculate the vibration displacement generated by each vibration component by quadratic integration of the vibration acceleration.Sum these vibration displacements to obtain the total vibration displacement.Perform displacement measurement for complex vibrations.In order to improve the accuracy of vibration displacement measurement,we conducted calibration experiments on the sensitivity outside the stable operating frequency band of fiber-optic grating sensors,because only a part of the corresponding relationship between vibration frequency and sensitivity is included in the stable operating frequency band.And the corresponding relationship between vibration frequency and wavelength change in this part of the frequency was determined by segmented fitting.Two experiments were designed to compare the ability of this method to calculate vibration displacement with traditional methods.They are the simple harmonic vibration experiment and the complex vibration experiment.The harmonic vibration experiment provides vibration excitation of only a single frequency by a vibration table.In the complex vibration experiment,the vibration excitation generated by the vibration table contains two different vibration frequencies,and there is a certain phase difference between these two different vibration frequencies.The wavelength change of the fiber-optic grating sensor is recorded,and the vibration acceleration and displacement are calculated using the above two methods.In the harmonic vibration experiment,the maximum vibration acceleration error of the traditional method is 4.6%,and the maximum vibration displacement error is 4.6%.The maximum vibration acceleration error of the method in this article is 2.1%,and the maximum vibration displacement error is 3.74%.In complex vibration experiments,the traditional method cannot accurately measure the vibration displacement,and the maximum error of this method is 8.45%.The experimental results of harmonic vibration show that both traditional methods and grating wavelength conversion methods based on Fourier series can accurately measure vibration displacement when there is only a single frequency vibration in the environment.The results of complex vibration experiments show that when there are multiple vibrations of different frequencies in the environment,the grating wavelength conversion method based on Fourier series can accurately decompose and reconstruct the grating wavelength signal,and has higher accuracy and stronger stability in measuring multi-frequency vibration displacement.In addition,we also used these two methods to measure the vibration displacement peak-to-peak values of the stator end and upper frame data of the water turbine,and compared them with the results of the electrical sensors.The experimental results show that the vibration component at the stator end of the water turbine is single,and the vibration displacement peak-to-peak measurement results are similar.The vibration components at the upper frame of the water turbine are complex,and the vibration displacement peak-to-peak measurement results of the traditional method are less than 5 μm.The vibration displacement peak-to-peak measurement results of the electric sensors and the grating wavelength conversion methods based on Fourier series are both around 45 μm.This indicates that the grating wavelength conversion method based on Fourier series has certain practical application value.

Fiber Bragg gratingsVibration displacement measurementWavelength signal reconstructionFourier seriesMechanical vibration

张翠、罗睿、张寅杰、贾思凯、甘维兵

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武汉理工大学光纤传感技术与网络国家工程研究中心,武汉 430070

武汉理工大学信息工程学院,武汉 430070

光纤布拉格光栅 振动位移测量 波长信号重构 傅里叶级数 机械振动

湖北省自然科学基金面上项目湖北省重点研发计划项目

2022CFB3302021BCA218

2024

光子学报
中国光学学会 中国科学院西安光学精密机械研究所

光子学报

CSTPCD北大核心
影响因子:0.948
ISSN:1004-4213
年,卷(期):2024.53(8)