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基于游标效应和螺旋结构的具有低温串扰的超灵敏压力传感器。

Ultra-sensitive pressure sensor with low-temperature crosstalk based on the Vernier effect and helical structure.

作者信息

Wang Sunde, Wang Tianshu, Li Baoqun, Li Deqi, Du Silun, Wu Tianjiao, Liu Dongmei

出版信息

Opt Express. 2024 Apr 8;32(8):14582-14593. doi: 10.1364/OE.518087.

Abstract

What we believe to be a novel high-sensitivity fiber-optic pressure sensor based on the vernier effect and helical structure is proposed and experimentally verified. The sensor utilizes the superposition of higher-order mode Mach-Zehnder interference and Sagnac fundamental mode polarization interference in a single fiber ring to achieve the vernier effect. In addition, a non-invasive encapsulation structure was fabricated to convert the rise and fall of the pressure value into the change in the twist angle of the optical fiber. This approach reduces the interference of the detecting medium on the sensor signal while simultaneously increasing the sensitivity of the pressure sensor. According to experimental data, the detection sensitivity of the sensor can reach -67277 nm/MPa, which is 65 times higher than the sensitivity of the conventional vernier effect pressure sensor. It also solves the issue of temperature interference with the Vernier-effect structured fiber optic sensor. The sensor has a measured temperature cross-sensitivity of 0.000065 kPa/°C, which is significantly lower than that of comparable sensors. This makes the sensor highly sensitive and ideal for low crosstalk pressure measurement.

摘要

我们提出了一种基于游标效应和螺旋结构的新型高灵敏度光纤压力传感器,并进行了实验验证。该传感器利用单光纤环中高阶模马赫-曾德尔干涉和萨尼亚克基模偏振干涉的叠加来实现游标效应。此外,制作了一种非侵入式封装结构,将压力值的上升和下降转换为光纤扭转角的变化。这种方法减少了检测介质对传感器信号的干扰,同时提高了压力传感器的灵敏度。根据实验数据,该传感器的检测灵敏度可达-67277 nm/MPa,比传统游标效应压力传感器的灵敏度高65倍。它还解决了游标效应结构光纤传感器的温度干扰问题。该传感器测得的温度交叉灵敏度为0.000065 kPa/°C,明显低于同类传感器。这使得该传感器具有高灵敏度,是低串扰压力测量的理想选择。

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