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Driver head pose and gaze estimation based on multi-template ICP 3-D point cloud alignment

机译:基于多模板ICP 3-D点云对齐的驾驶员头部姿势和注视估计

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Head movements, combined with the line of gaze, play a fundamental role in predicting the driver's actions and in inferring his intention. However, a gaze tracking system for automotive applications needs to satisfy high demands: It must not disturb the driver in his freedom of movements, it must cover large and fast head turns in yaw and pitch, be resistant to changing illumination conditions, be fast enough to recognize fast mirror checks, which are performed almost exclusively through eye rather than head movements, and be accurate and reliable enough to derive high quality information for driver assistance systems relying on their output. In this work a multi-template, ICP-based gaze tracking system is introduced. The system determines the head pose and subsequently estimates the driver's line of gaze by analyzing the angles of the eyes. Due to a fast search of correspondences, and switching between point-to-point and point-to-plane alignment, real-time performance and high accuracy can be achieved. The system is compared with other state of the art head pose estimation systems based on a publicly available benchmark database, where a classification rate of 92% at a tolerance of 10 degrees in yaw could be achieved. We further show in the experiments section, that head rotations up to 4 radians per seconds can be handled. Taking the angles of the eyes into account, rather than the head pose only, the driver's line of sight could be successfully mapped to particular regions of interest.
机译:头部运动与凝视线相结合,在预测驾驶员的动作并推断其意图方面起着根本性的作用。但是,用于汽车应用的注视跟踪系统需要满足很高的要求:它不能干扰驾驶员的行动自由,它必须能够覆盖偏航和俯仰的大而快速的头部转向,能够抵抗变化的照明条件,并且足够快识别几乎仅通过眼睛而不是头部运动进行的快速后视镜检查,并且足够准确可靠,可以依靠其输出为驾驶员辅助系统提供高质量的信息。在这项工作中,介绍了基于ICP的多模板注视跟踪系统。该系统确定头部姿势,然后通过分析眼睛的角度来估计驾驶员的视线。通过快速搜索对应关系,以及在点对点和点对平面对齐之间进行切换,可以实现实时性能和高精度。该系统与基于公开可用的基准数据库的其他现有技术的头部姿势估计系统进行了比较,在该系统中,在偏航角为10度时可以实现92%的分类率。我们在实验部分进一步表明,可以处理每秒高达4弧度的头部旋转。考虑到眼睛的角度,而不只是头部的姿势,驾驶员的视线可以成功地映射到感兴趣的特定区域。

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