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Modulation Index Adjustment for Recovery of Pure Wavelength Modulation Spectroscopy Second Harmonic Signal Waveforms

机译:恢复纯波长调制光谱的二次谐波信号波形的调制指数调整

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摘要

A new technique of modulation index adjustment for pure wavelength modulation spectroscopy second harmonic signal waveforms recovery is presented. As the modulation index is a key parameter in determining the exact form of the signals generated by the technique of wavelength modulation spectroscopy, the method of modulation index adjustment is applied to recover the second harmonic signal with wavelength modulation spectroscopy. By comparing the measured profile with the theoretical profile by calculation, the relationship between the modulation index and average quantities of the scanning wavelength can be obtained. Furthermore, when the relationship is applied in the experimental setup by point-by-point modulation index modification for gas detection, the results show good agreement with the theoretical profile and signal waveform distortion (such as the amplitude modulation effect caused by diode laser) can be suppressed. Besides, the method of modulation index adjustment can be used in many other aspects which involve profile improvement. In practical applications, when the amplitude modulation effect can be neglected and the stability of the detection system is limited by the sampling rate of analog-to-digital, modulation index adjustment can be used to improve detection into softer inflection points and solve the insufficient sampling problem. As a result, measurement stability is improved by 40%.
机译:提出了一种用于纯波长调制光谱二次谐波信号波形恢复的调制指数调整新技术。由于调制指数是确定由波长调制光谱技术产生的信号的确切形式的关键参数,因此采用调制指数调整的方法来利用波长调制光谱恢复二次谐波信号。通过计算将测得的轮廓与理论轮廓进行比较,可以获得调制指数与扫描波长的平均值之间的关系。此外,当通过逐点调制指数修改将该关系应用于气体检测的实验装置中时,结果与理论曲线和信号波形失真(例如由二极管激光器引起的振幅调制效应)可以很好地吻合。被压制。此外,调制指数调整的方法可以用于涉及轮廓改善的许多其他方面。在实际应用中,当可以忽略调幅效果并且检测系统的稳定性受到模数采样率的限制时,可以使用调制指数调整来改善对较软拐点的检测并解决采样不足的问题。问题。结果,测量稳定性提高了40%。

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