Hybrid Interferometer Sensor Based on the Enhanced Vernier Effect for the Simultaneous Measurement of Strain and Temperature

干涉测量 游标尺 材料科学 温度测量 光学 拉伤 光电子学 电子工程 物理 工程类 量子力学 医学 内科学
作者
Peng Yang,Shaocui Jiang,Zenghui Wang,Baojin Peng
出处
期刊:IEEE Transactions on Instrumentation and Measurement [Institute of Electrical and Electronics Engineers]
卷期号:73: 1-10 被引量:6
标识
DOI:10.1109/tim.2024.3472793
摘要

A hybrid interferometer sensor based on the enhanced Vernier effect was proposed for the simultaneous measurement of strain and temperature. The sensor was composed of a Fabry-Perot interferometer (FPI) made of hollow core fiber (HCF) and a Michelson interferometer (MI) made of few-mode fiber. Unlike the traditional Vernier effect, the reference arm of enhanced Vernier effect does not need to be isolated but participates in sensing along with the sensing arm, and its response to strain is opposite that of the sensing arm, thereby improving the sensitivity of the traditional Vernier effect. Given that the two interferometers participate in sensing, a coefficient matrix was used for the simultaneous measurement of strain and temperature, which overcame the cross-sensitivity problem of temperature. First, we theoretically analyzed the relationship between the mode excited in a few-mode fiber and the offset and the relationship between the coupling efficiency and the offset of different modes when a few-mode fiber was coupled with a single-mode fiber (SMF). Then, we conducted experimental verification and measured the strain and temperature responses of the sensor. The sensor had a strain sensitivity of −13.7 pm/ $\mu \varepsilon $ , which was 4.28 and 1.36 times the sensitivity of the traditional Vernier effect using MI or FPI as the sensing arm, and the temperature sensitivity was −97.7 pm/°C. The proposed sensing device exhibits the benefits of straightforward fabrication, an extensive measurement range, and low-temperature interference, holding promising prospects for strain assessment.
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