一种触觉分布传感器,可在高和动态拉伸下进行稳定测量

Hassan Alirezaei, Akihiko Nagakubo, Y. Kuniyoshi
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引用次数: 69

摘要

近年来,我们一直在研究各种基于电阻抗断层成像(EIT)的触觉分布传感器,它是一种非侵入性的技术,仅从一个边界测量导电材料的电阻分布,并且不需要在传感区域内布线。在本文中,我们提出了一种新的导电结构,它是压力敏感而拉伸不敏感的,它是基于(1)具有高电阻的可拉伸波状导电纱线网络和(2)具有低电阻的导电拉伸片之间的接触电阻的概念。基于这种新开发的结构,我们实现了一种新型的触觉分布传感器,可以在各个方向的动态和大拉伸下稳定地测量。给出了气球表面挤压、挤压等动态复杂变形情况下压力分布的稳定测量方法。该传感器最初设计用于在具有柔软和高度可变形身体的交互式机器人上实现,但也可以用作新型用户界面设备或普通压力分布传感器。开发的触觉传感器的一些最显着的规格是高拉伸性高达140%和在不利负载条件下的韧性。这种传感器也有可能变得像袜子织物一样薄且可拉伸。本研究的目标是将这种薄传感器与拉伸分布传感器相结合,从而实现更丰富、更复杂的触觉交互。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A tactile distribution sensor which enables stable measurement under high and dynamic stretch
Recaently, we have been studying various tactile distribution sensors based on Electrical Impedance Tomography (EIT) which is a non-invasive technique to measure the resistance distribution of a conductive material only from a boundary, and needs no wiring inside the sensing area. In this paper, we present a newly developed conductive structure which is pressure sensitive but stretch insensitive and is based on the concept of contact resistance between (1)a network of stretchable wave-like conductive yarns with high resistance and (2)a conductive stretchable sheet with low resistance. Based on this newly developed structure, we have realized a novel tactile distribution sensor which enables stable measurement under dynamic and large stretch from various directions. Stable measurement of pressure distribution under dynamic and complex deformation cases such as pinching and pushing on a balloon surface are demonstrated. The sensor has been originally designed for implementation over interactive robots with soft and highly deformable bodies, but can also be used as novel user interface devices, or ordinary pressure distribution sensors. Some of the most remarkable specifications of the developed tactile sensor are high stretchability up to 140% and toughness under adverse load conditions. The sensor also has a realistic potential of becoming as thin and stretchable as stocking fabric. A goal of this research is to combine this thin sensor with stretch distribution sensors so that richer and more sophisticated tactile interactions can be realized.
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