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Exploring Cognitive Distraction of Galvanic Skin Response while Driving: An Artificial Intelligence Modeling

机译:驾驶时探索电流皮肤反应的认知分心:人工智能建模

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摘要

It is quite often that we hear fatal traffic accidents due to driver's distraction. Car manufactures and researchers are therefore putting their efforts into car safety protection mechanism. However, the application of car safety protection mechanism is frequently hindered by its limitations, such as drivers' privacy or the high cost of its deployment and each of which leads to rare applications of car safety protection specifically in the field of nonautonomous cognitive distraction. This research proposal intends to apply the sensor of Galvanic Skin Response (GSR) to measure drivers' non-autonomous cognitive distraction due to the blood glucose variation of diabetes. SVM-RFE will be adopted as the major algorithm to create an alert mechanism with the artificial intelligence concept of supervised machine learning. The researched human-machine sense interaction mechanism can be able to embed into the car computer so that it can detect drivers' physiological changes during diabetes outbreak and then raise advisable alert and intervention accordingly.
机译:由于驾驶员分心,我们经常听到致命的交通事故。因此,汽车制造商和研究人员正在努力进入汽车安全保护机制。然而,汽车安全保护机制的应用经常因其局限性而受到阻碍,例如司机的隐私或部署的高成本,每一个都会导致汽车安全保护的罕见应用专门在非自治认知分心领域。该研究提案打算应用电流皮肤反应(GSR)传感器,以测量由于糖尿病的血糖变异而导致的司机的非自主认知分担。 SVM-RFE将被采用为创建警报机制的主要算法,以防治机械学习的人工智能概念。研究的人机读取相互作用机制可以嵌入汽车计算机中,以便在糖尿病爆发期间检测司机的生理变化,然后相应地提高可取的警报和干预。

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