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Design and analysis of a highly stabilised optical fiber Michelson interferometer measurement system

机译:高稳定光纤迈克尔逊干涉仪测量系统的设计与分析

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Single-mode optical fiber interferometers used with measurement or sensing systems should be stabilised to achieve high measurement accuracy and linearity in the presence of differential phase drift in their arms resulting from temperature fluctuations and other types of environmental disturbances. We propose an optical fiber interferometric measurement system which has the function of self-compensating the influences induced by the environmental disturbances and is stable and robust enough for on-line precision measurement or sensing. By employing the characteristics of fiber Bragg gratings (FBGs), the system interleaves two fiber Michelson interferometers together that share the common-interferometric-optical path. One of the fiber interferometers is used to stabilise the system while the other one is used to perform the measurement or sensing task. An electronic feedback loop for stabilising the measurement system is designed. The bandwidth of the feedback loop is 5 kHz, sufficiently wide to compensate various disturbances from environment. By these means, the system is endowed with high stability in various environments and suitability for on-line precision measurement or sensing.
机译:在测量或传感系统中使用的单模光纤干涉仪应稳定,以确保其测量臂中由于温度波动和其他类型的环境干扰而出现相位差,从而实现高测量精度和线性度。我们提出了一种光纤干涉测量系统,该系统具有对环境干扰引起的影响进行自补偿的功能,并且具有足够的稳定性和鲁棒性,可以进行在线精确测量或传感。通过利用光纤布拉格光栅(FBG)的特性,该系统将共享公共干涉光路的两个光纤迈克尔逊干涉仪交错在一起。其中一个光纤干涉仪用于稳定系统,而另一个用于执行测量或传感任务。设计了用于稳定测量系统的电子反馈回路。反馈环路的带宽为5 kHz,足够宽以补偿来自环境的各种干扰。通过这些手段,该系统在各种环境中都具有很高的稳定性,并且适用于在线精密测量或传感。

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