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Estimation of Driver's Longitudinal Intention for the Preceding Car by Brain Current Distribution Estimation Method

机译:用脑电流分布估计法估计前车驾驶员的纵向意图

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The interaction between human and vehicle has been extensively researched to reduce the traffic accident in Japan. In the research of driver assistance system, human-friendly driver assistance systems have been researched using the information of driver and vehicle. This system requires to achieve a better relationship between human and vehicle. In addition, it is important to find a method to detect driver's operational intention. Therefore, we have focused on the brain activities in the biological information. In our previous research, we investigated that the driver's EEG at the preceding car avoidance maneuver was decomposed by parallel factor analysis (PARAFAC), and we investigated the driver's EEG of during longitudinal operation. Consequently, all subjects have two common factors of the frequency component which exist in the 5-10 Hz and 8-13 Hz bandwidth. Those factors were changed by the driver's mental state during visual recognition and judgment. In this paper, we estimated the driver's longitudinal intention from a driver's EEG using source current distribution estimation with Hierarchical Bayesian method and the sparse logistic regression. From the estimation results, the estimation accuracy of driver's intention was higher than about 60 % accuracy of all operation except the gas pedal operation of one's subject.
机译:为了减少日本的交通事故,已经对人与车辆之间的相互作用进行了广泛的研究。在驾驶员辅助系统的研究中,已经利用驾驶员和车辆的信息研究了人类友好的驾驶员辅助系统。该系统要求在人与车辆之间建立更好的关系。另外,重要的是找到一种检测驾驶员的操作意图的方法。因此,我们将注意力集中在大脑活动中的生物学信息上。在我们先前的研究中,我们调查了通过并行因素分析(PARAFAC)分解了前次避车操作中驾驶员的EEG,并研究了纵向操作时驾驶员的EEG。因此,所有受试者在5-10 Hz和8-13 Hz带宽中都有两个频率分量的共同因子。在视觉识别和判断过程中,驾驶员的精神状态改变了这些因素。在本文中,我们使用基于分层贝叶斯方法的源电流分布估计和稀疏逻辑回归从驾驶员的脑电图估计驾驶员的纵向意图。从估计结果来看,驾驶员意图的估计准确度高于除对象的油门踏板操作以外的所有操作的大约60%的准确度。

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