论文标题
使用反射的可见和红外光波信号的手势识别
Gesture Recognition using Reflected Visible and Infrared Light Wave Signals
论文作者
论文摘要
在本文中,我们证明了仅使用从人类受试者反射的不连贯的光信号来识别以非接触,无线方式识别手势的能力。从根本上讲,这种传感模式与雷达,激光雷达和基于摄像机的传感系统区别开来,仅使用低成本的光源(例如LED)和传感器(例如,光电探测器)。基于轻波的手势识别系统从受试者在短(20-35 cm)范围内反射的光强度的变化中识别出不同的手势。当用户执行不同的手势时,散射的光形成独特的,统计重复的时间域特征。可以通过重复采样来了解这些签名,以获得对未知的手势信号进行测试和分类的训练模型。绩效评估是用八个手势,五个受试者,不同的距离和照明条件以及可见和红外光源进行的。结果表明,在20 cm处红外传感的最佳手势识别性能,平均精度为96%。开发的手势识别系统是众多人为互动(HCI)应用的低成本,有效和非接触技术。
In this paper, we demonstrate the ability to recognize hand gestures in a non-contact, wireless fashion using only incoherent light signals reflected from a human subject. Fundamentally distinguished from radar, lidar and camera-based sensing systems, this sensing modality uses only a low-cost light source (e.g., LED) and sensor (e.g., photodetector). The light-wave-based gesture recognition system identifies different gestures from the variations in light intensity reflected from the subject's hand within a short (20-35 cm) range. As users perform different gestures, scattered light forms unique, statistically repeatable, time-domain signatures. These signatures can be learned by repeated sampling to obtain the training model against which unknown gesture signals are tested and categorized. Performance evaluations have been conducted with eight gestures, five subjects, different distances and lighting conditions, and with visible and infrared light sources. The results demonstrate the best hand gesture recognition performance of infrared sensing at 20 cm with an average of 96% accuracy. The developed gesture recognition system is low-cost, effective and non-contact technology for numerous Human-computer Interaction (HCI) applications.