首页> 外文会议>Conference on Advanced Sensor Systems and Applications, Oct 15-18, 2002, Shanghai, China >Simultaneous measurement of transverse load and temperature using a single long-period fiber grating element
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Simultaneous measurement of transverse load and temperature using a single long-period fiber grating element

机译:使用单个长周期光纤光栅元件同时测量横向载荷和温度

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摘要

In this paper, a single long-period fiber grating (LPFG) element written by focused high-frequency CO_2 laser pulses is demonstrated for simultaneous measurement of transverse load and temperature, for the first time, to our knowledge. Temperature and transverse load can be directly measured by detecting the resonant wavelength shift and the resonant peak amplitude change of the LPFG, respectively, as there are two special circular orientations along the fiber axis where the resonant peak amplitude change of the LPFG has a linear relationship with the load applied and is insensitive to the resonant wavelength shift. Such a sensor could solve the cross-sensitivity problem between transverse load and temperature due to the unique feature of this type of LPFG, i.e. the wavelength-load-sensitivity of the LPFG strongly depends on loading orientations due to the non-uniform distribution of the refractive index on the cross-section of the LPFG caused by the thermal shock effect and other effects of the high-frequency CO_2 laser pulses exposure method used.
机译:在本文中,首次展示了由聚焦高频CO_2激光脉冲写入的单个长周期光纤光栅(LPFG)元件,用于同时测量横向载荷和温度。通过分别检测LPFG的共振波长偏移和共振峰幅度变化,可以直接测量温度和横向载荷,因为沿着光纤轴有两个特殊的圆形方向,其中LPFG的共振峰幅度变化具有线性关系施加了负载,并且对谐振波长偏移不敏感。由于这种LPFG的独特功能,这种传感器可以解决横向载荷和温度之间的交叉敏感性问题,即LPFG的波长-载荷敏感性在很大程度上取决于载荷方向,这是因为LPFG的分布不均匀。由热冲击效应和高频CO_2激光脉冲暴露方法的其他效应引起的LPFG截面上的折射率。

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