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首页> 外文期刊>Intelligent Transportation Systems, IEEE Transactions on >On the Roles of Eye Gaze and Head Dynamics in Predicting Driver's Intent to Change Lanes
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On the Roles of Eye Gaze and Head Dynamics in Predicting Driver's Intent to Change Lanes

机译:目光和头部动态在预测驾驶员改变车道意图中的作用

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摘要

Driver behavioral cues may present a rich source of information and feedback for future intelligent advanced driver-assistance systems (ADASs). With the design of a simple and robust ADAS in mind, we are interested in determining the most important driver cues for distinguishing driver intent. Eye gaze may provide a more accurate proxy than head movement for determining driver attention, whereas the measurement of head motion is less cumbersome and more reliable in harsh driving conditions. We use a lane-change intent-prediction system (McCall , 2007) to determine the relative usefulness of each cue for determining intent. Various combinations of input data are presented to a discriminative classifier, which is trained to output a prediction of probable lane-change maneuver at a particular point in the future. Quantitative results from a naturalistic driving study are presented and show that head motion, when combined with lane position and vehicle dynamics, is a reliable cue for lane-change intent prediction. The addition of eye gaze does not improve performance as much as simpler head dynamics cues. The advantage of head data over eye data is shown to be statistically significant $(p ≪ 0.01)$ 3 s ahead of lane-change situations, indicating that there may be a biological basis for head motion to begin earlier than eye motion during “lane-change”-related gaze shifts.
机译:驾驶员行为提示可能会为未来的智能高级驾驶员辅助系统(ADAS)提供丰富的信息和反馈。考虑到简单而强大的ADAS的设计,我们有兴趣确定最重要的驾驶员提示以区分驾驶员意图。目视可提供比头部运动更准确的指标来确定驾驶员的注意力,而头部运动的测量则不那么麻烦,在恶劣的驾驶条件下也更可靠。我们使用车道变更意图预测系统(McCall,2007)来确定每个提示用于确定意图的相对有用性。将输入数据的各种组合呈现给判别式分类器,该分类器被训练为在将来的特定点输出可能的车道变更操纵的预测。给出了来自自然驾驶研究的定量结果,结果表明,头部运动与车道位置和车辆动力学相结合,对于换道意图的预测是可靠的提示。注视的增加不能像简单的头部动态提示那样改善性能。头部数据优于眼睛数据的优势被证明在车道变换情况之前3 s具有统计上的显着性(p = 0.01)$ 3 s,这表明在“车道”中,头部运动开始于眼睛运动可能有生物学基础。变化”相关的视线转移。

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