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Polymer Optical Fiber Bragg Gratings in CYTOP Fibers for Angle Measurement with Dynamic Compensation

机译:聚合物光纤布拉格在细胞纤维中的光栅,用于动态补偿的角度测量

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摘要

This paper demonstrates the use of polymer optical fiber Bragg gratings (POFBGs) for angle measurements over a range of different oscillatory frequencies. The POFBGs are inscribed in low-loss, cyclic transparent amorphous fluoropolymers (CYTOP) and are imprinted using the direct-write, plane-by-plane femtosecond laser inscription method. As the polymer has a viscoelastic response and given that the Young’s modulus depends on the oscillatory frequency, a compensation technique for sensor frequency cross-sensitivity and hysteresis is proposed and verified. Results show that the proposed compensation technique is able to provide a root mean squared error (RMSE) reduction of 44%, and a RMSE as low as 2.20° was obtained when compared with a reference potentiometer. The hysteresis reduction provided by the proposed technique is 55%, with hysteresis <0.01. The results presented in this paper can pave the way for movement analysis with POFBG providing higher sensitivity and low hysteresis over a large range of motion frequencies.
机译:本文演示了在一系列不同振荡频率范围内使用聚合物光纤布拉格光栅(POFBG)的角度测量。 POFBG刻在低损耗,环状透明非晶含氟聚合物(CYTOP)中,并使用直接写入平面飞秒激光题字方法印刷。由于聚合物具有粘弹性响应并且鉴于杨氏模量取决于振荡频率,因此提出并验证了传感器频率交叉灵敏度和滞后的补偿技术。结果表明,该提出的补偿技术能够提供44%的均方根误差(RMSE)减少44%,并且与参考电位计相比,获得低至2.20°的RMSE。所提出的技术提供的滞后减少为55%,滞后<0.01。本文呈现的结果可以利用POFBG为运动分析提供铺平的方式,在大范围的运动频率上提供更高的灵敏度和低滞后。

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