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

机译:CYTOP光纤中的聚合物光纤布拉格光栅用于动态补偿角度测量

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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:本文演示了使用聚合物光纤布拉格光栅(POFBG)在不同振荡频率范围内进行角度测量。 POFBG刻有低损耗,环状透明无定形含氟聚合物(CYTOP),并使用直接写入,逐平面飞秒激光刻写方法进行刻印。由于聚合物具有粘弹性响应,并且考虑到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敏感度和磁滞补偿技术。结果表明,所提出的补偿技术能够提供44%的均方根误差(RMSE)降低,并且与参考电位计相比,其RMSE低至2.20°。所提出的技术提供的磁滞减少为55%,磁滞<0.01。本文介绍的结果可为使用POFBG进行运动分析铺平道路,在较大的运动频率范围内,POFBG可提供更高的灵敏度和更低的磁滞。

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