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Tactile sensing in human–computer interfaces : the inclusion of pressure sensitivity as a third dimension of user input.

机译:人机界面中的触觉:压力敏感度作为用户输入的第三维。

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摘要

This paper presents a review of tactile technologies for human–computer interactivity via touch interfaces, where touch force is measured as a third dimension of user input along with touch location. Until recently, tactile technologies for computing applications have detected only the location of a touch (or several touches simultaneously) with no additional information about the force or pressure the user imparts to the interface. Such additional input may open up new applications in force-enhanced gestures, for example the touch force may dictate the linewidth used in drawing software, or the speed of a scroll gesture may be increased with increasing applied force. Here we review the underlying physical principles behind several force sensitive touch technologies. The latest innovations by leading technology developers, only available in the patent literature, are also described and where public data exist the force-resistance behaviours of several key technologies are compared in terms of their sensitivity and range of response. The advantages and disadvantages of each technology are discussed, along with the current and possible future applications in consumer electronics. It is shown that the concept of pressure-sensitivity as an additional user input mechanism is fast gaining traction, with many implementations already found in commercial products. Furthermore, a study of the patent trends shows that this functionality may soon become commonplace in the new generation of consumer electronic devices.
机译:本文介绍了通过触摸界面实现人机交互的触觉技术,其中触摸力是用户输入与触摸位置的三维关系。直到最近,用于计算应用的触觉技术仅检测到触摸的位置(或同时进行多个触摸),而没有关于用户施加给界面的力或压力的其他信息。这样的附加输入可以用力增强的手势打开新的应用程序,例如,触摸力可以决定绘图软件中使用的线宽,或者可以随着施加的力的增加来增加滚动手势的速度。在这里,我们回顾了几种力敏感触摸技术背后的基本物理原理。还介绍了仅由专利文献提供的领先技术开发人员的最新创新技术,并且在存在公共数据的情况下,从灵敏度和响应范围方面比较了几种关键技术的抗力行为。讨论了每种技术的优缺点,以及在消费类电子产品中的当前和将来的可能应用。结果表明,压力敏感度作为一种附加的用户输入机制的概念正在迅速获得关注,在商业产品中已经发现了许多实现方式。此外,对专利趋势的研究表明,此功能可能很快会在新一代消费电子设备中变得司空见惯。

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