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Using a high spatial resolution tactile sensor for intention detection

机译:使用高空间分辨率触觉传感器进行意图检测

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Intention detection is the interpretation of biological signals with the aim of automatically, reliably and naturally understanding what a human subject desires to do. Although intention detection is not restricted to disabled people, such methods can be crucial in improving a patient's life, e.g., aiding control of a robotic wheelchair or of a self-powered prosthesis. Traditionally, intention detection is done using, e.g., gaze tracking, surface electromyography and electroencephalography. In this paper we present exciting initial results of an experiment aimed at intention detection using a high-spatial-resolution, high-dynamic-range tactile sensor. The tactile image of the ventral side of the forearm of 9 able-bodied participants was recorded during a variable-force task stimulated at the fingertip. Both the forces at the fingertip and at the forearm were synchronously recorded. We show that a standard dimensionality reduction technique (Principal Component Analysis) plus a Support Vector Machine attain almost perfect detection accuracy of the direction and the intensity of the intended force. This paves the way for high spatial resolution tactile sensors to be used as a means for intention detection.
机译:意图检测是对生物信号的解释,目的是自动,可靠,自然地理解人类受试者的愿望。虽然意图检测不仅限于残疾人,但这些方法对于改善患者的生命来说至关重要,例如,辅助机器人轮椅或自动假体的控制控制。传统上,意图检测是使用,例如凝视跟踪,表面电学和脑电图进行。在本文中,我们目前旨在使用高空间分辨率,高动态触觉触觉传感器进行意图检测的实验的初始结果。在触发指尖刺激的可变力任务期间记录9个能够体验的参与者的前臂的腹侧的触觉图像。指尖和前臂的力同步地记录。我们表明标准维度减少技术(主成分分析)加上支持向量机实现了几乎完善的方向的检测精度和预期力的强度。这为高空间分辨率触觉传感器铺平了用于意图检测的手段的方法。

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