Touch Position Recovery Algorithm for Differential Sensing Touch Screen

Ji-Ho Kim, Dong-Min Won, Hyungwon Kim
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引用次数: 1

Abstract

Differential sensing methods are more effective in alleviating panel noise than single-line sensing, and thus have been increasingly used in the touch screen industry. However, they have a drawback: they tend to cancel out multiple touches and need touch position recovery algorithms. This paper introduces a novel algorithm of touch position recovery for differential sensing, which is a low-complexity but high-accuracy approach for determining multiple touch positions. We have implemented the proposed method in a touch screen controller system on a chip. In the simulation experiments using realistic touch screen models and a differential sensing circuit, the algorithm exhibited a high detection performance of a signal-tonoise ratio gain of up to 52.21 dB. Therefore, we can conclude that the proposed method is substantially more accurate than the previous method. Further, the proposed method incurs little or no overhead in terms of the detection speed and the chip size.
差分感应触摸屏触摸位置恢复算法
差分传感方法比单线传感更能有效地减轻面板噪声,因此在触摸屏行业中得到越来越多的应用。然而,它们有一个缺点:它们往往会抵消多次触摸,并且需要触摸位置恢复算法。本文介绍了一种新的差分传感触摸位置恢复算法,该算法是一种低复杂度、高精度的多触摸位置确定方法。我们已经在一个芯片上的触摸屏控制器系统中实现了该方法。在真实触摸屏模型和差分传感电路的仿真实验中,该算法表现出较高的检测性能,信噪比增益高达52.21 dB。因此,我们可以得出结论,所提出的方法比以前的方法精确得多。此外,所提出的方法在检测速度和芯片尺寸方面产生很少或没有开销。
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