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首页> 外文期刊>IEEE Photonics Technology Letters >Temperature-Insensitive Fiber Bragg Grating Liquid-Level Sensor Based on Bending Cantilever Beam
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Temperature-Insensitive Fiber Bragg Grating Liquid-Level Sensor Based on Bending Cantilever Beam

机译:基于弯曲悬臂梁的温度不敏感光纤布拉格光栅液位传感器

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摘要

A temperature insensitive fiber Bragg grating (FBG) liquid level sensor based on bending cantilever beam (BCB) is proposed and demonstrated. The BCB induces axial strain gradient along the sensing FBG, resulting in a Bragg bandwidth modulation. The broadening of FBG spectrum bandwidth and the reflection optical power change with the liquid level and they are insensitive to spatially uniform temperature variations. For a liquid level variation of 500 mm and a temperature range from 0 deg C to 80 deg C, the measured liquid level fluctuates less than 2percent without any temperature compensation. By optical power detection via a pin photodiode, the liquid-level sensor avoids complex demodulation process and potentially costs low.
机译:提出并证明了一种基于弯曲悬臂梁(BCB)的温度感应光纤布拉格光栅(FBG)液位传感器。 BCB沿感应FBG引起轴向应变梯度,从而产生布拉格带宽调制。 FBG光谱带宽的扩展和反射光功率随液位而变化,并且它们对空间均匀的温度变化不敏感。对于500 mm的液位变化和0摄氏度至80摄氏度的温度范围,在没有任何温度补偿的情况下,测得的液位波动小于2%。通过通过pin光电二极管进行光功率检测,液位传感器避免了复杂的解调过程,并可能降低成本。

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