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Research on pressure tactile sensing technology based on fiber Bragg grating array

机译:基于光纤布拉格光栅阵列的触觉传感技术研究

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摘要

A pressure tactile sensor based on the fiber Bragg grating (FBG) array is introduced in this paper, and the numerical simulation of its elastic body was implemented by finite element software (ANSYS). On the basis of simulation, fiber Bragg grating strings were implanted in flexible silicone to realize the sensor fabrication process, and a testing system was built. A series of calibration tests were done via the high precision universal press machine. The tactile sensor array perceived external pressure, which is demodulated by the fiber grating demodulation instrument, and three-dimension pictures were programmed to display visually the position and size. At the same time, a dynamic contact experiment of the sensor was conducted for simulating robot encountering other objects in the unknown environment. The experimental results show that the sensor has good linearity, repeatability, and has the good effect of dynamic response, and its pressure sensitivity was 0.03 nm/N. In addition, the sensor also has advantages of anti-electromagnetic interference, good flexibility, simple structure, low cost and so on, which is expected to be used in the wearable artificial skin in the future.
机译:介绍了一种基于光纤布拉格光栅(FBG)阵列的压力触觉传感器,并通过有限元软件(ANSYS)对其弹性体进行了数值模拟。在仿真的基础上,将光纤布拉格光栅串植入柔性硅树脂中以实现传感器的制造过程,并建立了测试系统。通过高精度万能压力机进行了一系列的校准测试。触觉传感器阵列感知到的外部压力由光纤光栅解调仪进行解调,并且对三维图像进行编程以可视化显示位置和大小。同时,进行了传感器的动态接触实验,以模拟机器人在未知环境中遇到其他物体。实验结果表明,该传感器线性度好,重复性好,动态响应效果好,压力灵敏度为0.03 nm / N。另外,该传感器还具有抗电磁干扰,柔性好,结构简单,成本低廉等优点,有望在未来的可穿戴人造皮肤中使用。

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