首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Always-on low-power optical system for skin-based touchless machine control
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Always-on low-power optical system for skin-based touchless machine control

机译:始终开启的低功率光学系统,用于基于皮肤的非接触式机器控制

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Embedded vision systems are smart energy-efficient devices that capture and process a visual signal in order to extract high-level information about the surrounding observed world. Thanks to these capabilities, embedded vision systems attract more and more interest from research and industry. In this work, we present a novel low-power optical embedded system tailored to detect the human skin under various illuminant conditions. We employ the presented sensor as a smart switch to activate one or more appliances connected to it. The system is composed of an always-on low-power RGB color sensor, a proximity sensor, and an energy-efficient microcontroller (MCU). The architecture of the color sensor allows a hardware preprocessing of the RGB signal, which is converted into the rg space directly on chip reducing the power consumption. The rg signal is delivered to the MCU, where it is classified as skin or non-skin. Each time the signal is classified as skin, the proximity sensor is activated to check the distance of the detected object. If it appears to be in the desired proximity range, the system detects the interaction and switches on/off the connected appliances. The experimental validation of the proposed system on a prototype shows that processing both distance and color remarkably improves the performance of the two separated components. This makes the system a promising tool for energy-efficient, touchless control of machines. (C) 2016 Optical Society of America
机译:嵌入式视觉系统是一种智能节能设备,可捕获和处理视觉信号,以提取有关周围观察世界的高级信息。凭借这些功能,嵌入式视觉系统吸引了越来越多的研究和行业兴趣。在这项工作中,我们提出了一种新颖的低功耗光学嵌入式系统,该系统专为在各种照明条件下检测人体皮肤而设计。我们使用提出的传感器作为智能开关来激活与其连接的一个或多个电器。该系统由始终开启的低功率RGB颜色传感器,接近传感器和节能微控制器(MCU)组成。颜色传感器的体系结构允许对RGB信号进行硬件预处理,然后将其直接在芯片上转换为rg空间,从而降低功耗。 rg信号被传送到MCU,在此它被分类为皮肤或非皮肤。每次将信号分类为皮肤时,都会激活接近传感器以检查检测到的物体的距离。如果看起来在所需的接近范围内,则系统会检测到相互作用并打开/关闭连接的设备。对原型系统的实验验证表明,处理距离和颜色都可以显着提高两个分离组件的性能。这使该系统成为实现节能,无接触机器控制的有前途的工具。 (C)2016美国眼镜学会

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