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HumTouch: Localization of Touch on Semi-Conductive Surfaces by Sensing Human Body Antenna Signal

机译:HUMTOUCH:通过传感人体天线信号通过传感半导体表面上的触摸定位

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摘要

HumTouch is a touch sensing technology utilizing the environmental electromagnetic wave. The method can be realized using conductive and semi-conductive materials by simply attaching electrodes to the object’s surface. In this study, we compared three methods for localizing a touch on 20×16cm2 and 40×36cm2 papers, on which four or eight electrodes were attached to record the voltages leaked from the human fingertip. The number and positions of the electrodes and the data processing of the voltages differed according to the localization methods. By constructing a kernel regression analysis model between the electrode outputs and the actual physical locations, the touched locations were estimated. Each of the three methods was tested via leave-one-out cross validation. Out of the three methods discussed, two exhibited superior performances in terms of the estimation errors. Of these two methods, one simply uses the voltages recorded by the four electrodes attached on the middle of paper edges as inputs to the regression system. The other uses differential outputs of electrode pairs as the inputs. The smallest mean location errors were 0.31 cm on 20×16cm2 paper and 0.27 cm on 40×36cm2 paper, which are smaller than the size of a fingertip.
机译:HUMTOUCH是一种利用环境电磁波的触控技术。通过简单地将电极连接到物体表面,可以使用导电和半导体材料来实现该方法。在这项研究中,我们将三种方法进行了三种方法,用于定位在20×16cm2​​和40×36cm2纸上的触摸,其中附着四个或八个电极以记录从人指尖泄漏的电压。电极的数量和位置和电压的数据处理根据本地化方法不同。通过在电极输出和实际物理位置之间构建内核回归分析模型,估计触摸的位置。通过休留一次交叉验证测试了三种方法中的每一种。除了讨论的三种方法中,两个在估计误差方面表现出优越的性能。在这两种方法中,一个简单地使用由纸边的中间的四个电极记录的电压作为回归系统的输入。另一个使用电极对的差分输出作为输入。最小的平均定位误差在20×16cm2​​纸上为0.31厘米,40×36cm2纸上0.27厘米,比指尖的尺寸小。

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