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On Frictional Forces between the Finger and a Textured Surface during Active Touch

机译:主动触摸过程中手指与纹理表面之间的摩擦力

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We investigated forces felt by a bare finger in sliding contact with a textured surface, and how they depend on properties of the surface and contact interaction. Prior research has shed light on haptic texture perception. Nevertheless, how texture-produced forces depend on the properties of a touched object or the way that it is touched is less clear. To address this, we designed an apparatus to accurately measure contact forces between a sliding finger and a textured surface. We fabricated textured surfaces, and measured spatial variations in forces produced as subjects explored the surfaces with a bare finger. We analyzed variations in these force signals, and their dependence on object geometry and contact parameters. We observed a number of phenomena, including transient stick-slip behavior, nonlinearities, phase variations, and large force fluctuations, in the form of aperiodic signal components that proved difficult to model for fine surfaces. Moreover, metrics such as total harmonic distortion and normalized variance decreased as the spatial scale of the stimuli increased. The results of this study suggest that surface geometry and contact parameters are insufficient to account for force production during such interactions. Moreover, the results shed light on perceptual challenges solved by the haptic system during active touch sensing of surface texture.
机译:我们研究了裸露的手指与带纹理的表面滑动接触时所感受到的力,以及它们如何取决于表面的性质和接触相互作用。先前的研究揭示了触觉纹理的感知。然而,产生纹理的力如何取决于被触摸物体的性质或被触摸方式尚不清楚。为了解决这个问题,我们设计了一种可以精确测量滑动手指与纹理表面之间的接触力的设备。我们制作了带纹理的表面,并测量了受试者用裸露的手指探索表面时产生的力的空间变化。我们分析了这些力信号的变化及其对物体几何形状和接触参数的依赖性。我们以非周期性信号分量的形式观察到了许多现象,包括瞬态粘滑行为,非线性,相位变化和较大的力波动,这证明很难对精细表面进行建模。而且,诸如总谐波失真和归一化方差之类的度量随着刺激的空间比例的增加而降低。这项研究的结果表明,表面的几何形状和接触参数不足以说明这种相互作用过程中产生的力。此外,该结果揭示了在主动触摸感测表面纹理期间由触觉系统解决的感知挑战。

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