首页> 外文会议>IEEE/RSJ International Conference on Intelligent Robots and Systems;IROS 2009 >Towards on-line fingertip bio-impedance identification for enhancement of electro-tactile rendering
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Towards on-line fingertip bio-impedance identification for enhancement of electro-tactile rendering

机译:迈向在线指尖生物阻抗识别,以增强电触感

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Research in rehabilitation engineering shows that electrodes can produce tactile sensations with appropriate electrical signals tailored to stimulate the multiple tactile receptors located under the fingertip skin. However, electrical stimulation that is suitable in terms of current or voltage level for tactile sensations experienced from an individual cannot be guaranteed for every user; the dynamic range is largely dependent on the user. An identification method is then necessary for characterizing the parameters of the skin-electrode interface circuit model as to improve rendering consistency and comfort for every user regardless of skin condition. In this paper, we focus on developing a custom-built electro-tactile display terminal for data collection and an identification method to determine the individual bio-impedance parameters based on the well-known skin-electrode interface circuit model: the Cole-Cole circuit model. The goal of this work is to develop an online identification and stimulation current control approach for enhancement of electro-tactile-based rendering in applications such as rehabilitation, sensory substitution, telepresence, etc.
机译:康复工程方面的研究表明,电极可以产生适当的电信号,以刺激位于指尖皮肤下的多个触觉感受器,从而产生触感。但是,不能为每个用户保证在电流或电压水平上适合于个人的触感的电刺激。动态范围在很大程度上取决于用户。因此,需要一种识别方法来表征皮肤电极接口电路模型的参数,以提高每个用户的渲染一致性和舒适感,而与皮肤状况无关。在本文中,我们着重于开发用于数据收集的定制电触觉显示终端,以及基于众所周知的皮肤电极接口电路模型:Cole-Cole电路确定单个生物阻抗参数的识别方法。模型。这项工作的目标是开发一种在线识别和刺激电流控制方法,以增强诸如康复,感觉替代,远程呈现等应用中基于电触觉的渲染。

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