Guo Tuan, Shao Liyang, Tam Hwa-Yaw, Krug Peter A, Albert Jacques
Photonics Research Center, Department of Electrical Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong SAR, China.
Opt Express. 2009 Nov 9;17(23):20651-60. doi: 10.1364/OE.17.020651.
We demonstrate a compact power-referenced fiber-optic accelerometer using a weakly tilted fiber Bragg grating (TFBG) combined with an abrupt biconical taper. The electric-arc-heating induced taper is located a short distance upstream from the TFBG and functions as a bridge to recouple the TFBG-excited lower-order cladding modes back into the fiber core. This recoupling is extremely sensitive to microbending. We avoid complex wavelength interrogation by simply monitoring power change in reflection, which we show to be proportional to acceleration. In addition, the Bragg resonance is virtually unaffected by fiber bending and can be used as a power reference to cancel out any light source fluctuations. The proposed sensing configuration provides a constant linear response (nonlinearity < 1%) over a vibration frequency range from DC to 250 Hz. The upper vibration frequency limit of measurement is determined by mechanical resonance, and can be tuned by varying the sensor length. The tip-reflection sensing feature enables the sensor head to be made small enough (20~100 mm in length and 2 mm in diameter) for embedded detection. The polymer-tube-package makes the sensor sufficiently stiff for in-field acceleration measurement.
我们展示了一种紧凑的功率参考光纤加速度计,它使用弱倾斜光纤布拉格光栅(TFBG)与突然双锥锥形相结合。电弧加热诱导的锥形位于TFBG上游短距离处,并起到将TFBG激发的低阶包层模式重新耦合回光纤芯的桥梁作用。这种重新耦合对微弯曲极其敏感。我们通过简单监测反射中的功率变化来避免复杂的波长询问,结果表明该功率变化与加速度成正比。此外,布拉格共振几乎不受光纤弯曲影响,可作为功率参考来抵消任何光源波动。所提出的传感配置在从直流到250 Hz的振动频率范围内提供恒定的线性响应(非线性<1%)。测量的振动频率上限由机械共振决定,并且可以通过改变传感器长度进行调整。尖端反射传感特性使传感器头能够做得足够小(长度为20~100 mm,直径为2 mm)以用于嵌入式检测。聚合物管封装使传感器足够坚固,可用于现场加速度测量。