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激光光栅多普勒效应微小振动测量 总被引:6,自引:0,他引:6
为了提高测量微小振动的精度和动态范围,提出一种基于激光光栅多普勒效应的微振动测量系统。通过对差拍信号的频率分析,以峰值频率比值的方法可以排除干扰获得被测振动频率,找到振动的翻转点并判断振幅的大小;推导了在翻转点附近的微小位移与电压值的关系,对于小于计数当量值的位移由测量电压得到,提高了微小振动位移的测量精度以及系统测量的最小分辨率、动态范围。实验系统的频率范围为0.5~500Hz,振幅为20~10mm,相对误差小于1%,其动态范围大于100dB。 相似文献
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Design of new seismometer based on laser Doppler effect 总被引:1,自引:0,他引:1
In order to improve the resolution of seismic acquisition,a new seismic acquisition system based on tangential laser Doppler effect with an optimized differential optical configuration is proposed.The relative movement of the inertia object and the immobile frame is measured by laser Doppler effect,which can avoid the electromagnetic and thermometric interference,and the adoption of frequency-modulated (FM) transmission can improve the ability of anti-jamming.The frequency bandwidth is properly determined by analyzing the frequency of the Doppler signal.The velocity, displacement,acceleration, and frequency to be measured can be real-time acquired by frequency/velocity (F/V) converting the FM Doppler signal. A 100-dB dynamic range and the linear frequency range of 1.0 to 1000 Hz are realized. 相似文献
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In order to improve the resolution of seismic acquisition, a new seismic acquisition system based on tangential laser Doppler effect with an optimized differential optical configuration is proposed. The relative movement of the inertia object and the immobile frame is measured by laser Doppler effect, which can avoid the electromagnetic and thermometric interference, and the adoption of frequency-modulated (FM)transmission can improve the ability of anti-jamming. The frequency bandwidth is properly determined by analyzing the frequency of the Doppler signal. The velocity, displacement, acceleration, and frequency to be measured can be real-time acquired by frequency/velocity (F/V) converting the FM Doppler signal.A 100-dB dynamic range and the linear frequency range of 1.0 to 1000 Hz are realized. 相似文献
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