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Design and Experimental Research on Small-Structures of Tactile Sensor Array Unit Based on Fiber Bragg Grating

机译:基于光纤布拉格光栅的触觉传感器阵列单元小结​​构设计与实验研究

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For the problem that the accuracy of the traditional the fiber Bragg grating (FBG) tactile sensor array unit is relatively low, which is caused by the lateral force. In this paper, we focused study on the small-structures of a single node of the array sensing unit, and designed the small-structures that can convert the exerted external force to the fiber axis tensile deformation. After using the finite-element analysis software to simulate and analyze the four kinds of small-structures, two kinds of small-structures were chosen for further research. In order to verify the feasibility of the chosen small-structures, a series of system performance tests were conducted. For the structure containing the arched bridge, the natural frequency is 17 Hz and the sensitivity is 0.38 nm/N. For the structure which contains a small hole and the FBGs locating in bottom position, the natural frequency is about 18 Hz and the sensitivity is 0.29 nm/N. The experimental results match the simulation results to demonstrate the good performance (high sensitivity and good linearity) of both the small-structures. In the performance tests for the FBG tactile sensor array unit based on one kind of the designed small-structure, the average positioning error is 0.057 cm2 and the average sensing force value error is 0.038 N. The array sensing unit has relatively high accuracy, which is expected to be used in the actual project.
机译:对于传统的光纤布拉格光栅(FBG)触觉传感器阵列单元的精度较低的问题,这是由于侧向力引起的。在本文中,我们集中研究了阵列传感单元单节点的小结构,并设计了可以将施加的外力转换为纤维轴拉伸变形的小结构。在使用有限元分析软件对四种小结构进行模拟和分析之后,选择了两种小结构进行进一步研究。为了验证所选小型结构的可行性,进行了一系列系统性能测试。对于包含拱桥的结构,固有频率为17 Hz,灵敏度为0.38 nm / N。对于具有小孔且FBG位于底部位置的结构,固有频率约为18 Hz,灵敏度为0.29 nm / N。实验结果与仿真结果相符,以证明两种小型结构均具有良好的性能(高灵敏度和良好的线性)。在基于一种设计的小结构的FBG触觉传感器阵列单元的性能测试中,平均定位误差为0.057 cm2,平均传感力值误差为0.038N。该阵列传感单元具有较高的精度,因此预计将在实际项目中使用。

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