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Optimization of hi-birefringence fiber based distributed force sensors

机译:基于双折射光纤的分布式力传感器的优化

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Abstract: In this paper, we present two new approaches of distributed optical fiber force sensors. The first approach relies on the optical Kerr effect which utilizes two lasers launched into a Hi-Bi fiber from the same end. A He-Ne laser provides a CW probe beam which is launched into fiber to excite two polarization modes with equal intensities. A Nd:YAG laser is used to provide a pulsed pump beam which excites one polarization mode. The polarization state of the CW beam changes when the pump beam propagates through the fiber, or when a force is applied to the fiber. Information regarding the intensity of the force and its position can be obtained using a data acquisition and analysis system. The second approach is based on the FMCW technique. In this case, a frequency modulated laser beam is launched into a Hi-Bi fiber with one polarization mode and reflected from the far end of the fiber by a mirror. When a force is applied to the fiber at any position, mode coupling will occur. By detecting the beat frequency produced by the two coupled mode beams, the intensity and the position of the force can be found. In this paper, the experimental results obtained from the two sensor systems are presented. !9
机译:摘要:在本文中,我们提出了两种分布式光纤力传感器的新方法。第一种方法依靠光学Kerr效应,该效应利用从同一端发射到Hi-Bi光纤中的两个激光。氦氖激光器提供连续波探测光束,该光束被发射到光纤中,以激发具有相同强度的两个偏振模式。 Nd:YAG激光器用于提供激发一种偏振模式的脉冲泵浦光束。当泵浦光束传播通过光纤时,或者当力施加到光纤上时,CW光束的偏振状态会发生变化。可以使用数据采集和分析系统获得有关力的强度及其位置的信息。第二种方法基于FMCW技术。在这种情况下,调频激光束以一种偏振模式发射到Hi-Bi光纤中,并通过反射镜从光纤的远端反射。当在任何位置向光纤施加力时,将发生模式耦合。通过检测由两个耦合模式光束产生的拍频,可以找到力的强度和位置。本文介绍了从两个传感器系统获得的实验结果。 !9

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