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A novel long-period fiber grating torsion sensor

机译:一种新型的长周期光纤光栅扭转传感器

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摘要

In this paper, we propose and demonstrate a novel torsion sensor based on a long-period fiber grating (LPFG) induced symmetrically by three beams of focused high-frequency CO_2 laser pulses (20~24 kHz). Experimental results show, when the LPFG is twisted clockwise, the resonant wavelength shifts toward shorter wavelengths, and the peak loss decreases. When the LPFG is twisted anticlockwise, the resonant wavelength shifts toward longer wavelengths, and the peak loss increases. The resonant wavelength and the peak loss are all similarly proportional to the twist angle applied. Based on this LPFG, a new kind of fiber-optic torsion sensors can be made, which can not only directly measure the torsion angle, but also determine the torsion direction simultaneously by means of measuring the shift of the resonant wavelength and/or the peak loss of the LPFG.
机译:在本文中,我们提出并演示了一种新型的扭力传感器,该传感器基于长周期光纤光栅(LPFG),该光栅由三束聚焦的高频CO_2激光脉冲(20〜24 kHz)对称地感应。实验结果表明,当LPFG顺时针扭曲时,谐振波长向较短波长偏移,峰值损耗减小。当LPFG逆时针扭曲时,谐振波长向更长的波长偏移,并且峰值损耗增加。谐振波长和峰值损耗都与施加的扭曲角成比例。基于该LPFG,可以制造出一种新型的光纤扭转传感器,它不仅可以直接测量扭转角,而且可以通过测量谐振波长和/或峰值的偏移同时确定扭转方向。 LPFG的损失。

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