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Smart Contact Lens Applied to Gaze Tracking

机译:智能隐形眼镜应用于凝视跟踪

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摘要

Most current eye-trackers are camera-based and rely on image processing. To improve gaze tracking accuracy, this paper presents a new approach based on a camera-less gaze tracking system using a smart contact lens. A scleral lens is fitted with photodetectors illuminated by specific spectacles. Photo-currents vary with eye movements as the light photodetectors received varies. The gaze direction is obtained then by computing a barycenter from the photocurrents by means of an integrated circuit implemented on the lens and powered using an inductive link. Experimental measurements with a prototype lens fitted with four infrared photodiodes and mounted on an artificial eyeball validate the method. Designed for the AMS 0.35-mu m CMOS process, a 170 mu W integrated circuit is proposed, including a subthreshold analog barycenter computation unit and an analog-todigital converter. Monte Carlo analysis based on the circuit layout and measured photo-currents shows an accuracy of 0.2. can be achieved. This is 2.5 times better than current camera-based eye-trackers.
机译:大多数目前的眼追踪器是基于相机的,依靠图像处理。为了提高凝视跟踪精度,本文介绍了一种新方法,基于使用智能隐形眼镜的相机凝视跟踪系统。巩膜透镜配有由特定眼镜照射的光电探测器。当接收的光光电探测器变化时,光电流随眼球运动而变化。通过通过在镜头上实现的集成电路从光电流计算凝视方向,然后通过在镜头上实现并使用电感链路供电。用配有四个红外光电二极管的原型镜头进行实验测量,并安装在人工眼球上验证该方法。专为AMS 0.35-MU M CMOS工艺而设计,提出了170μm的集成电路,包括亚阈值模拟重心计算单元和模拟签发转换器。基于电路布局和测量光电流的蒙特卡罗分析显示了0.2的精度。可以实现。这比基于相机的眼动员更好的2.5倍。

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