首页> 外文会议>2011 IEEE world haptics conference >On the 1/f noise and non-integer harmonic decay of the interaction of a finger sliding on flat and sinusoidal surfaces
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On the 1/f noise and non-integer harmonic decay of the interaction of a finger sliding on flat and sinusoidal surfaces

机译:在1 / f噪声和非整数谐波衰减下,手指在平坦和正弦表面上滑动的相互作用

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Fluctuations of the frictional force arising from the stroke of a finger against flat and sinusoidal surfaces are studied. A custom-made high-resolution friction force sensor, able to resolve milli-newton forces, was used to record those fluctuations as well as the net, low-frequency components of the interaction force. Measurements show that the fluctuations of the sliding force are highly non-stationary. Despite their randomness, force spectra averages reveal regularities. With a smooth, flat, but not mirror-finish, surface the background noise follows a 1/f trend. Recordings made with pure-tone sinusoidal gratings reveal complexities in the interaction between a finger and a surface. The fundamental frequency is driven by the periodicity of the gratings and harmonics follow a non-integer power-law decay that suggests strong nonlinearities in the fingertip interaction. The results are consistent with the existence of a multiplicity of simultaneous and rapid stick-slip relaxation oscillations. Results have implications for high fidelity haptic rendering and biotribology.
机译:研究了手指在平坦和正弦表面上的笔触产生的摩擦力波动。使用定制的高分辨率摩擦力传感器(能够解析毫牛顿力)来记录这些波动以及相互作用力的净低频分量。测量表明,滑动力的波动非常不稳定。尽管它们具有随机性,但力谱平均值仍显示出规律性。光滑,平坦但没有镜面处理的表面,背景噪声遵循1 / f趋势。用纯正弦形光栅制作的唱片揭示了手指与表面之间相互作用的复杂性。基本频率由光栅的周期性驱动,谐波遵循非整数幂律衰减,这表明指尖相互作用中存在很强的非线性。结果与存在大量同时且快速的粘滑松弛振动一致。结果对高保真触觉渲染和生物摩擦学有影响。

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