放电电流大小与基于微锥结构的LPFG扭转特性之间的关系

Relationship between discharge current and torsional characteristics of LPFG based on micro taper structure

  • 摘要: 提出了一种基于微锥结构的长周期光纤光栅,采用电弧放电技术在普通单模光纤上进行周期性放电,使得纤芯与包层之间的折射率被周期性调制,因此形成长周期光纤光栅。采用3种大小的电流制备样品,得到不同腰椎直径的微椎结构长周期光纤光栅,并对其扭转传感特性进行了测试。实验表明:一定程度上增大放电电流,在−360°~+360°扭转范围内传感器具有较好的方向分辨能力,且波长和强度扭转灵敏度分别可达到−0.1805 nm/(rad/m)和0.04199 dB/(rad/m),表明此类传感器有望成为高性能扭转传感器的候选方案。

     

    Abstract: In this paper, a long-period fiber grating based on microconical structure was proposed, which uses arc discharge technology to perform periodic discharge in ordinary single-mode fiber, so that the refractive index between the fiber core and the cladding is periodically modulated, thus forming LPFG. In this paper, three kinds of current were used to prepare samples. The experimental results show that, with a moderate increase in the discharge current, the sensor exhibits good directional discrimination within a torsion range of −360° to +360°. The wavelength and intensity torsional sensitivity reached −0.1805 nm/(rad/m) and 0.04199 dB/(rad/m), respectively, indicating that such sensors are expected to be candidates for high-performance torsional sensors.

     

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