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Study of Fourier Transform Spectrumeter based on Michelson Interferometer Wave-meter

机译:基于迈克尔逊干涉仪波长表的傅立叶变换谱仪的研究

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摘要

A wave-meter based on Michelson interferometer consists of a reference and a measurement channel. The voice-coiled motor using PID means can realize to move in stable motion. The wavelength of a measurement laser can be obtained by counting interference fringes of reference and measurement laser. Reference laser with frequency stabilization creates a cosine interferogram signal whose frequency is proportional to velocity of the moving motor. The interferogram of the reference laser is converted to pulse signal, and it is subdivided into 16 times. In order to get optical spectrum, the analog signal of measurement channel should be collected. The Analog-to-Digital Converter (ADC) for measurement channel is triggered by the 16-times pulse signal of reference laser. So the sampling rate is constant only depending on frequency of reference laser and irrelative to the motor velocity. This means the sampling rate of measurement channel signals is on a uniform time-scale. The optical spectrum of measurement channel can be processed with Fast Fourier Transform (FFT) method by DSP and displayed on LCD.
机译:基于迈克尔逊干涉仪的波表由参考和测量通道组成。采用PID装置的音圈电机可以实现平稳运动。测量激光的波长可以通过计算参考激光和测量激光的干涉条纹来获得。具有频率稳定功能的参考激光器会产生余弦干涉图信号,其频率与移动电机的速度成正比。参考激光的干涉图转换为脉冲信号,并细分为16倍。为了获得光谱,应收集测量通道的模拟信号。测量通道的模数转换器(ADC)由参考激光器的16倍脉冲信号触发。因此,采样率仅取决于参考激光的频率并且与电动机速度无关,而是恒定的。这意味着测量通道信号的采样率处于统一的时标上。 DSP可以通过快速傅立叶变换(FFT)方法处理测量通道的光谱,并显示在LCD上。

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