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An Interferometric Vibration Sensor Based on a Four-core Optical Fiber

机译:基于四芯光纤的干涉振动传感器

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In this paper, an interferometric fiber optic vibration sensor based on a four-core optical fiber is described. When the light is coupled into the four cores, each core acts as a mutually coherent waveguide with the other ones, which allows obtaining an interference fringe pattern at the far field. Vibrating a section of the four-core optical fiber causes a path difference between the light beams guiding in the separate cores, which results in a shift in the fringe pattern. Such a mechanism allows one to relate the fringe shift to the vibration amplitude and frequency. In this study, a source, which is capable to generate 100 Hz frequency sound waves is attached to the optical fiber to maintain vibration of the section of the fiber. A single slit and a photodetector are used to detect the shifting of the fringe pattern that causes a change in the phase of the guiding light. When a He-Ne laser beam is coupled into the optical fiber, the structured fringe pattern is projected onto the slit behind the photodetector, then a small part of the fringe pattern is analysed. Thus, an interferometric fiber optic vibration sensor based on a four-core optical fiber, which has a simple structure and high sensitivity, is accomplished.
机译:本文描述了一种基于四芯光纤的干涉光纤振动传感器。当光耦合到四个核心时,每个芯用作与另一个的相互相干的波导,这允许在远场中获得干涉条纹图案。振动四芯光纤的一部分导致引导在单独的芯中的光束之间的路径差,这导致条纹图案的偏移。这种机构允许人们将边缘移位与振动幅度和频率相关联。在该研究中,能够产生100Hz频率声波的源连接到光纤以保持光纤部分的振动。单个狭缝和光电探测器用于检测引起引导光的相位的变化的条纹图案的换档。当HE-NE激光束耦合到光纤中时,将结构的条纹图案突出到光电探测器后面的狭缝上,然后分析了一小部分条纹图案。因此,完成了基于四芯光纤的干涉式光纤振动传感器,其具有简单的结构和高灵敏度。

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