Ionic liquid based distributed touch sensor using electrical impedance tomography

T. Zhao, C. Wu, M. Soleimani
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引用次数: 8

Abstract

Inspired by the human skin sensory mechanism, there are growing interests in creating a sense of touch in robotics. This work describes a new impedance based design to create an artificial tactile sensing skin. It has demonstrated that the electrical impedance tomography imaging technique allows for detecting the pressure distribution in a large area by a distributed touch sensor. The sensor is fabricated by filling a circular shaped phantom with liquid conductor and covering with an elastic shell on the top. The proposed sensor can detect the pressure applied to the elastic top using electrical impedance tomography imaging method. The sensor can therefore operate as a touch sensor mimicking a piezo-impedance operation in a simple fashion. The new sensor can differentiate between various force levels and their locations and thus produces a distribution of pressure. Such a simple sensor can function as a large area skin, enabling smarter human-machine interactions in emerging augmented reality and robotic applications.
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基于电阻抗断层成像的离子液体分布式触摸传感器
受人类皮肤感觉机制的启发,人们对在机器人中创造触觉越来越感兴趣。这项工作描述了一种新的基于阻抗的设计,以创建一种人工触觉感知皮肤。已经证明,电阻抗断层成像技术允许通过分布式触摸传感器检测大面积的压力分布。该传感器是通过用液体导体填充圆形体模并在顶部覆盖弹性壳来制造的。所提出的传感器可以使用电阻抗断层成像方法来检测施加到弹性顶部的压力。因此,传感器可以以简单的方式作为模拟压阻操作的触摸传感器来操作。新传感器可以区分不同的力水平及其位置,从而产生压力分布。这样一个简单的传感器可以起到大面积皮肤的作用,在新兴的增强现实和机器人应用中实现更智能的人机交互。
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