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首页> 外文期刊>Multimedia, IEEE Transactions on >A Touch Interface Exploiting Time-Frequency Classification Using Zak Transform for Source Localization on Solids
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A Touch Interface Exploiting Time-Frequency Classification Using Zak Transform for Source Localization on Solids

机译:使用Zak变换利用时频分类进行固体源定位的触摸界面

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We propose a new approach to the development of a touch interface using surface-mounted sensors which allows one to convert a hard surface into a touch pad. This is achieved by using location template matching (LTM), a source localization algorithm that is robust to dispersion and multipath. In this interdisciplinary research, we employ mechanical vibration theories that model wave propagation of the flexural modes of vibration generated by an impact on the surface. We then verify that the amplitude variance across time for each propagating mode frequency is unique to each location on a surface. We show that the Zak transform allows us to faithfully track these amplitude variations and we exploit the uniqueness of this variance as a time-frequency classifier which in turn allows us to localize a finger tap in the context of a human-computer interface. The performance of the proposed algorithm is compared with existing LTM approaches on real surfaces.
机译:我们提出了一种使用表面安装传感器开发触摸界面的新方法,该方法允许将硬表面转换为触摸板。这可以通过使用位置模板匹配(LTM)来实现,该模板是一种对色散和多路径具有鲁棒性的源定位算法。在这项跨学科研究中,我们采用了机械振动理论,该模型模拟了由于对表面的撞击而产生的挠曲振动模式的波传播。然后,我们验证每个传播模式频率随时间变化的幅度方差对于表面上的每个位置都是唯一的。我们表明Zak变换使我们能够忠实地跟踪这些幅度变化,并且我们利用这种变化的唯一性作为时频分类器,从而使我们能够在人机界面的上下文中定位手指的敲击。将该算法的性能与真实表面上的现有LTM方法进行了比较。

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