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Textile Multitouch Force-Sensor Array Based on Circular and Non-Circular Polymer Optical Fibers

机译:基于圆形和非圆形聚合物光纤的纺织多点力传感器阵列

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摘要

A 3 x 3 textile integrated force-sensor array is presented that is based on the cross coupling of optical fibers and provides multi-touch capability. The force sensing relies on cross coupling between two fibers that are aligned orthogonally to each other. The actual coupling is improved by an increased contact area and higher scattering at the fiber crossing. A systematic analysis of different parameters is done for the driving and the sensing fiber, which involves materials, size, fabrication parameters as well as the cross-section shape. The results reveal that the combination of a rather stiff driving fiber and a flexible sensing fiber from elastomer (TPU) lead to the highest sensitivities in the range of 45.5 pW/N. The application of non-circular cross sections can improve the coupling efficiency by directing the side-emitted light better towards the sensing fiber. A trilobal-shaped driving fiber lead to an increase of 5 dBs, whereas the shaping of the sensing fiber improved the efficiency by another 7.5 dB.
机译:提出了3×3纺织集成力传感器阵列,其基于光纤的交叉耦合,并提供多触摸能力。力传感依赖于两个纤维之间的交叉耦合,其彼此正交对齐。通过增加的接触面积和纤维交叉处的散射更高的散射来改善实际耦合。对驱动和传感纤维进行了对不同参数的系统分析,该传感纤维涉及材料,尺寸,制造参数以及横截面形状。结果表明,相当硬的驱动纤维和来自弹性体(TPU)的柔性感测纤维的组合导致了45.5 pW / n范围内的最高敏感性。非圆形横截面的应用可以通过将侧向发射的光线朝向传感纤维引导来提高耦合效率。一个三叶状驱动纤维导致5dbs的增加,而感应纤维的成形提高了另外的7.5dB的效率。

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