Self-adaptive coding-based touch detection for interactive projector system

Ming He, Jun Cheng
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引用次数: 2

Abstract

Most current challenge of hand touch detection in interactive projector system is how to detect finger touching with a single camera. In this paper, we introduce a projector camera system that enables users to interact with computers by touching on arbitrary surfaces with bare-hand. The realization of touch detection is through a novel vision-based algorithm performing in three steps: 1) foreground extraction according to a predicted image generated from geometric and photometric calibration matrix; 2) fingertip detection based on the curvature of hand contour points; 3) touch detection by encoding a local region of self-adaptive structured light into the projected image. In our approach, through the disparity of pattern codes projected on the fingertip, it is able to distinguish immediately whether a touch action really takes place without complex calibration and triangulation. Extensive experiments on foreground extraction, fingertip detection, and touch judgment are presented to show the robust performance of this system.
基于自适应编码的交互式投影系统触摸检测
目前在交互式投影仪系统中,手触摸检测面临的最大挑战是如何利用单摄像头检测手指触摸。在本文中,我们介绍了一种投影仪相机系统,使用户可以通过徒手触摸任意表面来与计算机交互。触摸检测是通过一种新的基于视觉的算法实现的,该算法分三步进行:1)根据几何和光度校准矩阵生成的预测图像提取前景;2)基于手轮廓点曲率的指尖检测;3)将自适应结构光的局部区域编码到投影图像中进行触摸检测。在我们的方法中,通过投射在指尖上的模式代码的差异,它能够立即区分触摸动作是否真的发生,而无需复杂的校准和三角测量。在前景提取、指尖检测和触摸判断等方面进行了大量实验,证明了该系统的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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