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Localization of Taps on Solid Surfaces for Human-Computer Touch Interfaces

机译:人机触摸界面在固体表面上的攻丝定位

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Localization of impacts on solid surfaces is a challenging task due to dispersion where the velocity of wave propagation is frequency dependent. In this work, we develop a source localization algorithm on solids with applications to human-computer interface. We employ surface-mounted piezoelectric shock sensors that, in turn, allow us to convert existing flat surfaces to a low-cost touch interface. The algorithm estimates the time-differences-of-arrival between the signals via onset detection in the time-frequency domain. The proposed algorithm is suitable for vibration signals generated by a metal stylus and a finger. The validity of the algorithm is then verified on an aluminium and a glass plate surface.
机译:由于波的传播速度与频率有关,所以由于分散,在固体表面上的冲击局部化是一项艰巨的任务。在这项工作中,我们开发了基于实体的源定位算法,并将其应用于人机界面。我们采用表面安装的压电震动传感器,从而使我们能够将现有的平坦表面转换为低成本的触摸界面。该算法通过时频域中的开始检测来估计信号之间的到达时间差。该算法适用于金属触控笔和手指产生的振动信号。然后在铝和玻璃板表面上验证算法的有效性。

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