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Methodology and initial analysis results for development of non-invasive and hybrid driver drowsiness detection systems

机译:开发非侵入式和混合动力驾驶员睡意检测系统的方法和初步分析结果

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Application of piezofilm movement sensors integrated into the car seat, seat belt and steering wheel was proposed for development of a non-invasive and hybrid systems for detecting driver drowsiness. A car simulator study was designed to collect physiological data for validation of this technology. Methodology for analysis of physiological data, independent assessment of driver drowsiness and development of drowsiness detection algorithm by means of sequential fitting and selection of regression models is presented. Statistical analysis shows that during the episodes of transitions to dangerous levels of drowsiness movement variations recorded by the seat sensors are decreasing. This finding indicates that the piezofilm movement sensors could be used as non-invasive devices for detecting the level of drowsiness on their own or in combination with other physiological signals.
机译:提出了将压电薄膜运动传感器集成到汽车座椅,安全带和方向盘中的建议,以开发用于检测驾驶员困倦的非侵入性和混合系统。汽车模拟器研究旨在收集生理数据以验证该技术。提出了通过顺序拟合和回归模型的选择来分析生理数据,独立评估驾驶员睡意和开发睡意检测算法的方法。统计分析表明,在过渡到睡意到危险水平的过程中,座椅传感器记录的运动变化正在减小。这一发现表明,压电膜运动传感器可以用作非侵入性设备,以单独或与其他生理信号结合使用来检测睡意程度。

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