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Driver's blink detection using Doppler sensor

机译:使用多普勒传感器检测驾驶员的眨眼

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摘要

Blink is a physiological signal that reflects drowsiness and concentration. It is important to detect driver's blinks without any wearable devices. For this purpose, a Doppler sensor has been used and several blink detection methods where a subject sits in front of such sensor have been proposed. However, it is challenging to detect driver's blinks because of face and body movement. In this paper, we propose a Doppler sensor-based driver's blink detection method in existence of face and body movement in a car. In the proposed method, blinks are detected through two steps: pre-detection and classification. In the first step which we call pre-detection, the time candidates of subject's blinks are detected based on spectrograms calculated from a received signal. Then, in the second one which we call classification, a set of features are calculated from a spectrogram and are fed into a supervised machine learning classifier to identify which time candidates are truly blinks. We leverage the fact that the distribution of the energy on a spectrogram differs between a blink and non-blink. Specifically, features are extracted based on the distribution of energy on a spectrogram. We conducted a series of experiments for the evaluation in the situation where a subject drives a real car in public road. As a result, we confirmed our method outperforms the conventional one in terms of F-measure calculated from recall rate and precision rate.
机译:眨眼是反映睡意和注意力的生理信号。在没有任何可穿戴设备的情况下检测驾驶员的眨眼很重要。为此,已经使用了多普勒传感器,并且已经提出了几种眨眼检测方法,其中被检者坐在该传感器的前面。然而,由于面部和身体的移动,检测驾驶员的眨眼是一项挑战。在本文中,我们提出了一种基于多普勒传感器的驾驶员眨眼检测方法,该方法可以在汽车中存在面部和身体移动的情况。在提出的方法中,眨眼通过两个步骤进行检测:预检测和分类。在我们称为预检测的第一步中,根据从接收信号中计算出的频谱图,检测对象眨眼的候选时间。然后,在我们称为分类的第二个分类中,根据频谱图计算出一组特征,并将它们输入到有监督的机器学习分类器中,以识别哪些候选对象真正眨眼了。我们利用这样一个事实,即频谱图上的能量分布在眨眼和不眨眼之间有所不同。具体而言,基于谱图上的能量分布提取特征。我们进行了一系列实验,以评估受试者在公共道路上驾驶真车的情况。结果,我们确认了从召回率和准确率计算出的F度量方面,我们的方法优于传统方法。

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