Towards a tunable tactile communication system: concept and first experiments

T. Schieder, C. Wilks, T. Rontzek, R. Eckmiller
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引用次数: 4

Abstract

We present a novel concept of a tactile communication system with dialog-based tuning possibilities for the exploration of tactile language developments. An experimental implementation of the proposed tactile intelligent sensory substitution system (TIS/sup 3/) is being tested in a closed loop set up with human subjects. TIS/sup 3/ consists of a tactile encoder (TE) to map desired objects onto a parallel stream of tactile stimulation time courses, a tactile stimulator (TS) to elicit spatio-temporal tactile sensations on a selected skin region, and a learning module (LM) to generate an ever improving parameter vector for TE based on the rating input of the human subject. As a first step, TE function was implemented as a set of 3/spl times/5 generators, which could be employed as a function of time by means of a DSP-based tunable spatio-temporal signal algorithm (TSA). Results showed that TIS/sup 3/ in a closed loop with humans subjects could be tuned to yield clearly distinguishable tactile perceptions within less than 80 iteration cycles.
迈向可调谐触觉通讯系统:概念与初步实验
我们提出了一种新颖的触觉交流系统概念,该系统具有基于对话的调谐可能性,用于探索触觉语言的发展。提出的触觉智能感官替代系统(TIS/sup 3/)的实验实施正在与人类受试者建立的闭环中进行测试。TIS/sup 3/包括一个触觉编码器(TE),用于将期望的物体映射到平行的触觉刺激时间流上;一个触觉刺激器(TS),用于在选定的皮肤区域上引发时空触觉;以及一个学习模块(LM),用于根据人类受试者的评级输入生成不断改进的TE参数向量。首先,将TE函数实现为一组3/ sp1次/5次发生器,通过基于dsp的可调时空信号算法(TSA)将其作为时间函数。结果表明,TIS/sup /在与人类受试者的闭环中,可以在不到80个迭代周期内产生清晰可区分的触觉感知。
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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