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首页> 外文期刊>Medical engineering & physics. >A modified low-cost haptic interface as a tool for complex tactile stimulation.
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A modified low-cost haptic interface as a tool for complex tactile stimulation.

机译:修改后的低成本触觉界面,可作为复杂触觉刺激的工具。

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摘要

This study describes the development and evaluation of a platform for the investigation of the human tactile ability. Specifically, it enables precise and reproducible application of time-varying 3D force stimuli to the skin of an immobilized human limb. We proceeded in the following steps: (1) programming a low-cost haptic interface to apply time-varying 3D force stimuli to a fixed rigid target, (2) implementing a combined feed-forward/feedback controller to improve the platform's precision and reliability in force stimulation, (3) determining the optimal tuning of the control loop parameters and (4) evaluating the system's performances when applying time-varying 3D force stimuli to an immobilized human finger pad. The system's performances were evaluated in terms of the accuracy and repeatability when delivering standard 3D force stimuli, i.e., stimuli with specified force components in the normal and skin tangential directions. Within the range of forces tested (5 N in various directions), the maximum difference between the actual force and the desired value during static phases was <30 mN (accuracy) and the root-mean-square of the standard deviation (repeatability) was 15 mN during static phases and <75 mN during dynamic phases.
机译:这项研究描述了人类触觉能力研究平台的开发和评估。具体而言,它可以将时变3D力刺激精确且可复制地应用于固定的人肢体的皮肤。我们执行以下步骤:(1)编程一个低成本的触觉界面,以将随时间变化的3D力刺激应用于固定的刚性目标;(2)实现组合的前馈/反馈控制器,以提高平台的精度和可靠性在力刺激中,(3)确定对控制环参数的最佳调整,以及(4)在将时变3D力刺激应用于固定的人手指垫时,评估系统的性能。系统在传递标准3D力刺激(即在法线和皮肤切线方向具有指定力分量的刺激)时,根据准确性和可重复性评估了系统的性能。在测试力的范围内(各个方向为5 N),静态时实际力与所需值之间的最大差值<30 mN(精度),标准偏差的均方根(重复性)为在静态阶段为15 mN,在动态阶段为<75 mN。

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