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Analysis and compensation of the measurement error in a look-in amplifier used for wavelength shift measurements in optical sensing application

机译:在用于光学传感应用中的波长偏移测量的查找放大器中测量误差的分析和补偿

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摘要

The phase measurement error in an interferometric wavelength shift measurement scheme, such as that used in association with fiber Bragg grating sensors, has been investigated experimentally with appropriate underpinning analytical theory. It has been shown that when a lock-in amplifier is used to detect the phase shift generated by the Bragg wavelength shift, a pseudoperiodical measurement error can be introduced owing to the difference between the amplitude of the optical path difference ramp and the value of the Bragg wavelength. If the initial ramp deviation equals 20 nm, the measurement error may be as large as +/-2.5% of the total measurement range. With a double-phase lock-in amplifier approach to measure the ac strain, the; measurement error can be decreased to 0.4% of the total measurement range, With the Peal-time measured period that corresponds to the Bragg wavelength with the distorted carrier signal of the interferometer as the reference period oi a digital lock-in amplifier the effect of the initial ramp deviation can be principally avoided, and the measurement error can be kept to an acceptably low level, about 0.1% of the total measurement range. (C) 1997 Optical Society of America.
机译:干涉式波长偏移测量方案中的相位测量误差(例如与光纤布拉格光栅传感器配合使用的方案)已通过适当的基础分析理论进行了实验研究。已经显示出,当使用锁相放大器来检测由布拉格波长偏移产生的相移时,由于光程差斜坡的幅度和光程差斜坡的值之间的差,会引入伪周期的测量误差。布拉格波长。如果初始斜波偏差等于20 nm,则测量误差可能会高达总测量范围的+/- 2.5%。采用双相锁相放大器方法来测量交流应变,可以将测量误差降低到总测量范围的0.4%,并且将与布拉格波长相对应的Peal-time测量周期与干涉仪的失真载波信号作为参考周期,或者数字锁定放大器的效果原则上可以避免初始斜坡偏差,并且可以将测量误差保持在可接受的较低水平,约为总测量范围的0.1%。 (C)1997年美国眼镜学会。

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