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Automated Door Detection with a 3D-Sensor

机译:带3D传感器的自动门检测

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Service robots share the living space of humans. Thus, they should have a similar concept of the environment without having everything labeled beforehand. The detection of closed doors is challenging because they appear with different materials, designs and can even include glass inlays. At the same time their detection is vital in any kind of navigation tasks in domestic environments. A typical 2D object recognition algorithm may not be able to handle the large optical variety of doors. Improvements of low-cost infrared 3D-sensors enable robots to perceive their environment as spatial structure. Therefore we propose a novel door detection algorithm that employs basic structural knowledge about doors and enables to extract parts of doors from point clouds based on constraint region growing. These parts get weighted with Gaussian probabilities and are combined to create an overall probability measure. To show the validity of our approach, a realistic dataset of different doors from different angles and distances was acquired.
机译:服务机器人共享人类的生活空间。因此,他们应该具有类似的环境概念,而无需事先标记所有内容。关闭的门的检测具有挑战性,因为它们以不同的材料,设计出现,甚至可能包含玻璃镶嵌物。同时,在家庭环境中的任何种类的导航任务中,对它们的检测都是至关重要的。典型的2D对象识别算法可能无法处理多种光学门。低成本红外3D传感器的改进使机器人能够将其环境视为空间结构。因此,我们提出了一种新颖的门检测算法,该算法利用了有关门的基本结构知识,并能够基于约束区域增长从点云中提取门的一部分。这些部分用高斯概率加权,并组合起来以创建整体概率测度。为了证明我们方法的有效性,获得了来自不同角度和距离的不同门的真实数据集。

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