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Localization of Sliding Movements Using Soft Tactile Sensing Systems with Three-axis Accelerometers

机译:使用三轴加速度计的软触觉系统对滑动运动进行定位

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摘要

This paper presents a soft tactile sensor system for the localization of sliding movements on a large contact surface using an accelerometer. The system consists of a silicone rubber base with a chamber covered by a thin silicone skin in which a three-axis accelerometer is embedded. By pressurizing the chamber, the skin inflates, changing its sensitivity to the sliding movement on the skin’s surface. Based on the output responses of the accelerometer, the sensor system localizes the sliding motion. First, we present the idea, design, fabrication process, and the operation principle of our proposed sensor. Next, we created a numerical simulation model to investigate the dynamic changes of the accelerometer’s posture under sliding actions. Finally, experiments were conducted with various sliding conditions. By confirming the numerical simulation, dynamic analysis, and experimental results, we determined that the sensor system can detect the sliding movements, including the sliding directions, velocity, and localization of an object. We also point out the role of pressurization in the sensing system’s sensitivity under sliding movements, implying the ideal pressurization for it. We also discuss its limitations and applicability. This paper reflects our developed research in intelligent integration and soft morphological computation for soft tactile sensing systems.
机译:本文提出了一种软触觉传感器系统,该系统使用加速度计来定位大接触表面上的滑动运动。该系统由一个硅橡胶底座和一​​个腔室组成,该腔室由薄的硅树脂表皮覆盖,并嵌入了三轴加速度计。通过对腔室加压,皮肤会膨胀,从而改变其对皮肤表面滑动的敏感性。根据加速度计的输出响应,传感器系统可以定位滑动运动。首先,我们介绍我们提出的传感器的概念,设计,制造过程和操作原理。接下来,我们创建了一个数字仿真模型,以研究在滑动作用下加速度计姿态的动态变化。最后,在各种滑动条件下进行了实验。通过确认数值模拟,动力学分析和实验结果,我们确定传感器系统可以检测到滑动运动,包括滑动方向,速度和对象的定位。我们还指出了在滑动运动下压力在传感系统的灵敏度中的作用,暗示了理想的压力。我们还将讨论其局限性和适用性。本文反映了我们在智能触觉系统的智能集成和软形态计算方面的先进研究。

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