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利用光纤萨格纳克干涉仪进行超声波的非接触式检测。

Noncontact detection of ultrasonic waves using fiber optic Sagnac interferometer.

作者信息

Jang Tae Seong, Lee Seung Seok, Kwon Il Bum, Lee Wang Joo, Lee Jung Ju

机构信息

Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology, Taejon.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2002 Jun;49(6):767-75. doi: 10.1109/tuffc.2002.1009334.

Abstract

This paper describes a fiber optic sensor suitable for noncontact detection of ultrasonic waves. This sensor is based on the fiber optic Sagnac interferometer, which has a path-matched configuration and does not require active stabilization. Quadrature phase bias between two interfering laser beams in the Sagnac loop is applied by controlling the birefringence using a fiber polarization controller. A stable quadrature phase bias can be confirmed by observing the interferometer output according to the change of phase bias. Additional signal processing is not needed for the detection of ultrasonic waves using the Sagnac interferometer. Ultrasonic oscillations produced by conventional ultrasonic piezoelectric transducers were successfully detected, and the performance of this interferometer was investigated by a power spectrum analysis of the output signal. Based on the validation of the fiber optic Sagnac interferometer, noncontact detection of laser-generated surface waves was performed. The configured Sagnac interferometer is very effective for the detection of small displacement with high frequency, such as ultrasonic waves used in conventional nondestructive testing (NDT).

摘要

本文介绍了一种适用于超声波非接触检测的光纤传感器。该传感器基于光纤萨尼亚克干涉仪,其具有路径匹配配置且无需主动稳定。通过使用光纤偏振控制器控制双折射,在萨尼亚克环中两束干涉激光束之间施加正交相位偏置。根据相位偏置的变化观察干涉仪输出,可以确认稳定的正交相位偏置。使用萨尼亚克干涉仪检测超声波不需要额外的信号处理。成功检测到了传统超声压电换能器产生的超声振荡,并通过对输出信号进行功率谱分析研究了该干涉仪的性能。基于光纤萨尼亚克干涉仪的验证,进行了激光产生的表面波的非接触检测。所配置的萨尼亚克干涉仪对于检测高频小位移非常有效,例如传统无损检测(NDT)中使用的超声波。

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