Adaptive two-wave mixing interferometry for ultrasonic detection

Fuxiang Peng, Chuanyi Tao, Jingke Li, Yubing Liu, Hao Wang, Pinsheng Huang, Yueqing Zhu, Ping Su
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Abstract

Ultrasound has strong penetrability in opaque media, which makes it one of the most important detection tools for structural safety monitoring. Compared with the traditional piezoelectric transducers(PZTs) used for ultrasonic detection, fiber-optic ultrasonic sensing system based on optical adaptivity of two-wave mixing (TWM) photorefractive crystal has strong characteristics of anti-electromagnetic interference, high sensitivity and strong multiplexing, as well as the adaptive detection for optical phase modulation and permanent dynamic recording of the interference pattern current position, which has a large quantity of applications in structural health monitoring. For the interferometric properties and ultrasonic detection technology of TWM in the field of structural safety monitoring, this paper introduces the principle of adaptive two-wave mixing interferometry, the sensing devices, and methods in various fiber Bragg grating (FBG) sensor systems and dynamic signal detection of Er-doped fiber gratings and discusses the application of fiber-optic ultrasonic sensing systems in ultrasonic detection based on adaptive TWM technology. Finally, the problems and solutions in the sensing system are analyzed. By miniaturizing the TWM interferometer and integrating the entire sensing system, it is expected to further improve the detection performance of the device and expand future research directions.
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用于超声波探测的自适应双波混合干涉仪
超声波在不透明介质中具有很强的穿透性,因此成为结构安全监测领域最重要的检测工具之一。与传统用于超声检测的压电传感器(PZT)相比,基于双波混合(TWM)光折射晶体光学自适应的光纤超声传感系统具有抗电磁干扰强、灵敏度高、复用性强的特点,同时还具有光学相位调制自适应检测和干扰图案电流位置永久动态记录的特点,在结构健康监测中有着大量的应用。针对双波混频干涉技术在结构安全监测领域的干涉特性和超声检测技术,本文介绍了自适应双波混频干涉技术的原理、传感装置以及各种光纤布拉格光栅(FBG)传感器系统和掺铒光纤光栅动态信号检测方法,并探讨了基于自适应双波混频技术的光纤超声传感系统在超声检测中的应用。最后,分析了传感系统中存在的问题和解决方案。通过微型化 TWM 干涉仪和集成整个传感系统,有望进一步提高设备的检测性能,拓展未来的研究方向。
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