Opt Express. 2023 May 22;31(11):17809-17819. doi: 10.1364/OE.482833.
In this paper, a novel distributed twist sensor based on frequency-scanning phase-sensitive optical time-domain reflectometry (φ-OTDR) in a spun fiber is proposed and demonstrated. Owing to the unique helical structure of the stress rods in the spun fiber, fiber twist gives rise to the variation of the effective refractive index of the transmitting light, which can be quantitatively retrieved through frequency shift using frequency-scanning φ-OTDR. The feasibility of distributed twist sensing has been verified by both simulation and experiment. For proof of concept, distributed twist sensing over a 136 m spun fiber with a 1 m spatial resolution is demonstrated, and the measured frequency shift shows a quadratic fitting dependence on the twist angle. In addition, the responses of both clockwise and counterclockwise twist directions have also been explored and the experiment result indicates that the twist direction can be discriminated since the frequency shift directions are opposite in the correlation spectrum. The proposed twist sensor possesses some outstanding advantages, including high sensitivity, distributed twist measurement and twist direction recognition capability, etc., which is very promising for specific applications in industry, e.g., structural health monitoring, bionic robots, etc.
本文提出并演示了一种基于光纤中扫频相敏光时域反射(φ-OTDR)的新型分布式扭转变传感器。由于纺丝纤维中应力棒的独特螺旋结构,光纤扭转让传输光的有效折射率发生变化,通过扫频φ-OTDR 可以利用频率移动定量地恢复这种变化。通过仿真和实验验证了分布式扭转变感的可行性。为了验证概念,演示了在 136 m 长的纺丝光纤上进行分布式扭转变感,空间分辨率为 1 m,测量的频率移动与扭角呈二次拟合关系。此外,还探索了顺时针和逆时针扭转变向的响应,实验结果表明,由于相关谱中频率移动方向相反,因此可以区分扭转向。所提出的扭转变传感器具有一些突出的优点,包括高灵敏度、分布式扭测量和扭转向识别能力等,非常有希望在工业等特定应用中得到应用,例如结构健康监测、仿生机器人等。