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Motion stereo-based collision avoidance for an intelligent smart car door system

机译:基于运动立体的智能智能车门系统防撞技术

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Driver assistance systems in today's cars assist drivers when the car is in motion. However, there is relatively less, to almost no work on assistance systems when the car is stationary. This paper focuses on such a system, and describes the design and realization of a collision avoidance system for a novel car door assistance system, the smart car door. An omnidirectional camera is attached to each side-view mirror of a car, and the fold-in fold-out movement of the mirror is used to generate 3D information about static obstacles next to the car based on a motion stereo approach. The car door controller uses the sensor data to compute collision-free door opening paths, and the two-hinge kinematic system of the smart car door enables to move the door around static obstacles. The latter increases the door entrance area in tight parking lots, which drastically improves the ingress/egress to/from a vehicle. These are enhancements to currently available systems that only indicate the presence of obstacles next to the car. Experiments on a fully realized prototype demonstrated a robust generation of 3D information about obstacles next to the car. A study with 20 test users showed that our system strongly supports the users to avoid collisions when operating the door.
机译:当今汽车中的驾驶员辅助系统在汽车行驶时为驾驶员提供辅助。但是,当汽车静止时,辅助系统上的工作相对较少,几乎没有。本文着重于这样的系统,并描述了新型汽车门辅助系统智能汽车门的防撞系统的设计和实现。全向摄像机安装在汽车的每个侧视镜上,该镜的向内折叠运动用于基于运动立体方法生成与汽车相邻的静态障碍物的3D信息。轿门控制器使用传感器数据来计算无碰撞门的打开路径,而智能轿门的双铰链运动学系统可以使门绕静态障碍物移动。后者增加了狭窄停车场的门入口面积,从而极大地改善了进出车辆的出入口。这些是对当前可用系统的增强,这些系统仅指示汽车旁边存在障碍物。在完全实现的原型上进行的实验表明,可以可靠地生成有关汽车旁边障碍物的3D信息。对20位测试用户的研究表明,我们的系统大力支持用户避免在操作门时发生碰撞。

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