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首页> 外文期刊>Sensors Journal, IEEE >Liquid-Level Sensor Based on Reflective Mechanically Induced Long-Period Grating Using Double-Cladding Fiber
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Liquid-Level Sensor Based on Reflective Mechanically Induced Long-Period Grating Using Double-Cladding Fiber

机译:基于双包层光纤的反射式机械感应长周期光栅的液位传感器

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摘要

A reflection-type liquid-level sensor based on mechanically induced long-period fiber grating (MLPFG) is proposed and experimentally demonstrated. The sensor, acting as a Michelson interferometer, includes MLPFG with double-cladding fiber (DCF) whose end-face is coated with a silver film. DCF is used here in order to be more conducive for interference-spectrum generation. The liquid level can be measured by monitoring the shift of the interference fringes. By theoretical and experimental analysis of the interference characteristics, it is concluded that there are certain relationships between the interference-fringe spacing and the distance from the grating to the reflector, and that the fringe contrast ratio is influenced either by the stress or the position of the MLPFG. After the appropriate parameters are selected for the liquid-level sensor, the sensor sensitivity of 0.03136 nm/mm is obtained, which is considerably superior to that of conventional interferometric liquid-level sensors. In addition, the device has advantages, such as low cost and structural simplicity.
机译:提出了一种基于机械感应长周期光纤光栅(MLPFG)的反射式液位传感器,并进行了实验验证。该传感器用作迈克尔逊干涉仪,包括带有双包层光纤(DCF)的MLPFG,其端面涂有银膜。这里使用DCF是为了更有利于产生干扰频谱。可以通过监视干涉条纹的移动来测量液位。通过对干涉特性的理论和实验分析,可以得出结论:干涉条纹间距与光栅到反射镜的距离之间存在一定的关系,并且条纹的对比度受应力或应力位置的影响。 MLPFG。为液位传感器选择合适的参数后,传感器的灵敏度为0.03136 nm / mm,大大优于传统的干涉式液位传感器。另外,该装置具有诸如低成本和结构简单的优点。

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