Decouple Analysis of Triaxial Tactile Sensor Based on Triangular Comb Electrodes

Chenying Liu, Xuesong Luo, Shaoping Wang
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引用次数: 1

Abstract

Tactile sensing provides contact force information between grippers and objects for better manipulation. How to receive higher integration of tactile information, especially in measurement of tangential force, is under further discussion. Design, decoupling and simulation results of a tactile sensor which satisfies triaxial force information is presented in this paper. The sensor, based on triangular top and bottom plates, comprises two layers shaped of floating comb-like electrodes. The proposed structure guarantees the sensor's sensitivity to both normal and tangential force with a smaller size. Testing results proves that displacement of the sensor's plates can be analytically decoupled. Capacitance change of the sensor shows high linearity to triaxial force.
基于三角梳状电极的三轴触觉传感器解耦分析
触觉感应为抓手和物体之间的接触力信息提供更好的操作。如何获得更高的触觉信息集成度,特别是在切向力的测量中,还有待进一步讨论。介绍了一种满足三轴力信息的触觉传感器的设计、解耦和仿真结果。该传感器基于三角形的顶板和底板,由两层形状为浮动梳状电极组成。所提出的结构保证了传感器对法向力和切向力的灵敏度和较小的尺寸。测试结果表明,传感器板的位移可以解析解耦。传感器的电容变化与三轴力呈高度线性关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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