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1.
A dual-frequency laser Doppler velocimeter implemented by a dual-polarization fiber grating laser is proposed,with the two laser frequencies produced by the two orthogonally polarized laser outputs of the fiber grating laser.The reflected laser outputs from a moving target experience the Doppler frequency shift,which is shown to be linearly related to the velocity and the beat note frequency difference between the laser outputs and the reflected light. With a digital frequency demodulation scheme,a high sensitivity of 0.64 MHz/(m/s) and a velocity resolution of less than 0.5% of the velocity for velocity measurement are demonstrated,which shows that the proposed laser Doppler velocimeter is capable of measurement of wide range of velocity.  相似文献   

2.
Particle Imaging Velocimetry (PIV) and Laser Doppler Velocimetry (LDV) measurements on a self-induced sloshing flow in a rectangular tank had been conducted in the present study. The PIV measurement result was compared with LDV measurement result quantitatively in order to evaluate the accuracy level of the PIV measurement. The comparison results show that the PIV and LDV measurement results agree with each other well in general for both mean velocity and fluctuations of the velocity components. The average disagreement level of the mean velocity between PIV and LDV measurement results was found to be within 3% of the target velocity for the PIV system parameter selection. Bigger disagreements between the PIV and LDV measurement results were found to concentrate at high shear regions. The spatial resolution and temporal resolution differences of the PIV and LDV measurements and the limited frames of the PIV instantaneous results were suggested to be the main reasons for the disagreement.  相似文献   

3.
We propose a fiber-optic non-mechanical scanning laser Doppler velocimeter (LDV) with directional discrimination of the velocity component using a single transmission path. The LDV uses a polarization maintaining fiber (PMF) as the transmission path between the main body and probe. Two beams with different frequencies induced by acousto-optic modulators (AOMs) are transmitted to the probe as two orthogonal polarization modes of the PMF. The measurement position is axially scanned using gratings in the probe and the change in wavelength. The functions of the scan and directional discrimination are demonstrated experimentally.  相似文献   

4.
频移分离型三维激光多普勒测速仪研究   总被引:2,自引:0,他引:2  
李恩邦 《光学学报》1994,14(7):68-772
研究一种采用频移分离方法的新型三维激光多普勒测速仪(3DLDV)。该仪器以单色He-Ne激光器和单只光电探测器并配合简单的光学发射和接收系统即实现了三维速度分量的同时测量。三个分量的速度信号由声光调制器引入的三种光学频移区分,通过电子滤波器完成信号的相互分离。在光学发射系统设计中采用独特的单轴四光束结构,通过光束组合形成三双光束差动模式的激光多普勒测速仪光。本文中还给出了该仪器的系统设计参数并分析  相似文献   

5.
Koichi Maru  Liu Yan Hu  Yusaku Fujii 《Optik》2011,122(11):974-977
A laser Doppler velocimeter (LDV) for two-dimensional velocity measurement using a simple optical configuration without any optical modulator is proposed. The structure using polarized beams and the 90° phase shift of the reference beam is used to discriminate the direction of velocity. The analytical relation among beat frequencies and velocity components is derived and the characteristics of the proposed LDV are simulated. The simulation results indicate that the direction of velocity can be discriminated by the proposed LDV as well as the magnitudes of the components of the velocity.  相似文献   

6.
二维频移激光多普勒测量油中悬浮粒子速度时,根据悬浮粒子通过针孔光阑时存在的四种不同情况,对原有激光多普勒测量悬浮粒子瞬时速度的方法进行了改进,提出一种悬浮粒子瞬时速度分析处理方法,利用该方法,对水平方管内的油中悬浮粒子的瞬时速度进行了测量分析。结果表明:改进方法获取的悬浮粒子瞬时速度的稳定性较好,能够表征在一组粒子通过激光多普勒的针孔光阑的时间段内粒子组随着时间的变化趋势,提高了频移激光多普勒采样数据的利用效率,有利于进一步准确表征悬浮粒子在油液中二维瞬时速度的分布特征和运动轨迹,为激光多普勒实验测量中悬浮粒子瞬时速度的表征提供理论支撑。  相似文献   

7.
An idea of using laser Doppler velocimeter (LDV) to measure the velocity for the vehicle inertial navigation system was put forward. The principle of measuring its own velocity with laser Doppler technique was elaborated and reference-beam LDV was designed. Then Doppler signal was processed by tracking filter, frequency spectrum refinement and frequency spectrum correction algorithm. The result of theory and experiment showed that the reference-beam LDV solved the problem that dual-beam LDV cannot be used for measuring when the system was out of focus. Doppler signal was tracked so that signal-to-noise ratio was improved, and the accuracy of the system was enhanced by the technology of frequency spectrum refinement and correction. The measurement mean error was less than 1.5% in velocity range of 0-30 m/s.  相似文献   

8.
9.
一种高分辨率的光纤光栅传感解调技术   总被引:20,自引:0,他引:20  
报道了一种基于光纤激光器波长扫描寻址的高分辨率的光纤光栅传感解调方案。光纤激光器的扫描寻址过程由微机来控制。微机控制光纤激光器波长扫描的同时,同步采集、处理传感信号,并通过曲线拟合给出传感光栅的中心反射波长值。本解调方案的波长移动分辨率为0.1pm,可以实现高分辨率的温度及应变测量。  相似文献   

10.
In 1964, just a few years after the invention of the laser, a fluid velocity measurement based on the frequency shift of scattered light was made and the laser Doppler technique was born. This comprehensive review paper charts advances in the development and applications of laser Doppler vibrometry (LDV) since those first pioneering experiments. Consideration is first given to the challenges that continue to be posed by laser speckle. Scanning LDV is introduced and its significant influence in the field of experimental modal analysis described. Applications in structural health monitoring and MEMS serve to demonstrate LDV's applicability on structures of all sizes. Rotor vibrations and hearing are explored as examples of the classic applications. Applications in acoustics recognise the versatility of LDV as demonstrated by visualisation of sound fields. The paper concludes with thoughts on future developments, using examples of new multi-component and multi-channel instruments.  相似文献   

11.
Experimental determination of the velocity distribution in the deformation zone is of significant importance to investigate the metal flow in both conventional and asymmetrical rolling processes. In this paper, a scanning laser Doppler velocimetry (LDV) system, designed for measuring the velocity distributions in the deformation zone in plate rolling is reported. The LDV used for the rolling process is briefly described and then the scanning mechanism based on beam displacement by a rotating transparent plate is introduced. The relationship among the scanning distance, the beam-cross angle of the LDV system and the rotating angle of the plate is established. The scanning LDV was first tested with a rotating disk and then applied in the rolling process. The test results have demonstrated the feasibility of the scanning LDV.  相似文献   

12.
提出一种基于光纤阵列的激光光斑时空分布测量方法,采用在多层石英平板上制作V型槽并层叠石英光纤阵列的方法,获得了具有较高抗激光损伤能力和空间分辨力的光纤阵列取样器,实现了激光光斑的空间分布取样。给出了光纤阵列的取样原理、取样器结构和大倍数光强衰减的设计。实验结果表明:光纤阵列抗激光损伤能力优于10 kW/cm2(50 s),系统空间分辨力优于3 mm,测量误差小于3%。  相似文献   

13.
 为了减小载体振动对传统差动激光多普勒测速仪(LDV)测速精度的影响,提出了Janus配置的差动LDV,并对其速度测量的相对误差进行了理论分析与数值仿真。结果表明:Janus配置技术可以近似反演出载体上下振动时的俯仰角,并对速度进行补偿;载体上下振动对传统差动LDV的测量精度有较大影响,而对Janus配置的差动LDV的影响较小;在Janus配置的差动LDV中,当存在俯仰角且大小一定时,随着载体上下起伏速度与运行速度比值增大,速度测量的相对误差增大;当载体上下起伏速度与运行速度的比值为0.01,俯仰角小于10°时,Janus配置的差动LDV的速度测量的相对误差小于0.2%。  相似文献   

14.
为了解决单脉冲激光诱导击穿光谱(LIBS)技术在元素分析时空间分辨本领与分析灵敏度之间的矛盾,本文利用一台双波长输出的Nd∶YAG激光器开展了双波长激光剥离-激光诱导击穿光谱(LA-LIBS)技术的研究。其中532 nm的二倍频激光用于剥离样品;1 064 nm的基频激光通过大芯径石英玻璃光纤传输并实现一定的延时后用于击穿被剥离的样品。两束激光采用正交几何配置以实现高空间分辨高灵敏的元素分析。实验研究了1 064 nm激光到光纤的耦合、光纤输出后的准直以及再聚焦时的一些关键技术问题。研究并得出了四种不同光纤对激光能量的传输能力。选择利用芯径为800 μm,数值孔径为0.39、长50 m的石英玻璃光纤成功传输了15 mJ的调Q激光脉冲并实现了250 ns的延时。并在此基础上开展了铜合金样品的双波长LA-LIBS分析,实验验证了基于一台Nd∶YAG激光器开展双波长LA-LIBS研究的可行性。该技术只需要一台激光器就可以完成相应的光谱分析,具有系统结构简单,便于小型化等优点,适合对不同样品开展原位的高空间分辨高灵敏的元素显微分析。  相似文献   

15.
Relativistic effects of laser Doppler velocimeters (LDV's) are discussed and novel LDV systems are proposed. If the direction of the scattered light makes a right angle with the flow direction, relativistic effects completely disappear no matter how high the velocity of a moving particle becomes. The proposed LDV's involve that the velocity can be measured from one scattered light beam with two different single frequencies. It is also predicted that the usual optical heterodyne-detection techniques can be made applicable to measure even ultra-high velocities up to the region where relativistic effects should be taken into account.  相似文献   

16.
The common method of laser Doppler velocimeter (LDV) signal processing is fast Fourier transform (FFT). Because of the restraint of spectral interference, fence effect and spectrum leakage, the precision of FFT is not high. In order to improve the accuracy of double-beam and double-scattering laser Doppler velocimeter signal processing, an algorithm based on spectral refinement and interpolation is put forward. First, high-pass filter is adopted to remove the baseplate of LDV signal. Second, FFT is adopted to get the estimate of Doppler frequency and then Zoom-FFT is used to refine the local range of Doppler frequency. Third, four-term fifth derivative Nuttall windowed interpolation is used to correct the refined spectrum. Then the accurate estimate of Doppler frequency can be obtained. Simulations and experiments based on the LDV system built in laboratory show that Zoom-FFT can improve the resolution of spectrum and four-term fifth derivative Nuttall windowed interpolation can further increase the precision of signal processing.  相似文献   

17.
报道了一种基于掺铒光纤激光器瞬态特性的新型气体浓度传感器.用光纤环全反镜和光纤Bragg光栅(FBG)构成F-P线形腔,通过调节光栅的反射波长,使激光激射波长落在C2H2的一个较强的吸收峰1531.56 nm.激光激射延迟时间与激光器谐振腔损耗密切相关,气体浓度的改变将引起谐振腔损耗的改变,通过测量激光激射延迟时间可以获得气体的浓度.该装置分辨率及灵敏度由抽运光脉冲的高功率电平和低功率电平决定,传感器的动态测量范围由抽运光高功率电平决定.当高功率和低功率电平分别为25 mW和5.9 mW时,该传感器的灵敏度和分辨率分别为100 ppm/μs和20 ppm.  相似文献   

18.
The details of a new approach for absolute calibration of microphones, based on the direct measurement of acoustic particle velocity using laser Doppler velocimetry (LDV), are presented and discussed. The calibration technique is carried out inside a tube in which plane waves propagate and closed by a rigid termination. The method developed proposes to estimate the acoustic pressure with two velocity measurements and a physical model. Minimum theoretical uncertainties on the estimated pressure and minimum measurable pressure are calculated from the Cramer Rao bounds on the estimated acoustic velocity amplitude and phase. These uncertainties and the minimum measurable pressure help to optimize the experimental set up. Acoustic pressure estimations performed with LDV are compared with acoustic pressures obtained with a reference microphone. Measurements lead to a minimum bias of 0.006 dB and a minimum uncertainty of 0.013 dB on the acoustic pressure estimation for frequencies 1360 Hz and 680 Hz.  相似文献   

19.
In the last decade the laser Doppler vibrometer (LDV) has become a widely spread instrument for measuring vibrations. It often offers accurate measurements with a high spatial resolution. However, the measurement time of the LDV and especially for the scanning LDV is long. Therefore, reducing the measurement time is an attractive objective. A way to achieve this is to use a single sine excitation (on a resonance frequency). However, this technique has two major drawbacks: the inability to provide information on the damping and a operational deflection shape that can differ from the true mode shape. In this article two methods will be introduced to reduce measurement time without these defaults. In the first method introduced in this article a narrow band multisine is used as excitation signal and the measured vibration signal in the time domain is represented by a model using sines and cosines with these fixed narrow band frequencies. The coefficients of those sines and cosines are then estimated on a global scale by means of a least-squares estimator. An important advantage of this particular technique is that one does not have to measure a full period of the signal, reducing time. The second method accelerates the measurement time for scanning LDV measurements. Using the time domain sequence from each previous scan point and a limited number of time samples from the current scan point, the full time domain sequence of the current scan point can be estimated. Both these methods are a key benefit for in-line quality control, which can have upwards of 1000 spatial measurement locations. The proposed techniques will be validated on both simulations and experiments of varying complexity.  相似文献   

20.
基于计数法测量激光多普勒测速仪的测速精度   总被引:1,自引:0,他引:1  
为了测量所设计的激光多普勒测速仪(LDV)的测量精度,用均匀转动的斩波片代替高精度的转台作为标准的速度源,并基于单片机AT89S52,采用光计数的方法测量斩波片上某一固定位置的切向运动速度,LDV的测量结果与之相比较。实验结果表明,LDV测速的相对精度不超过8‰,稳定性较好。  相似文献   

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