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People detection and distinction of their walking aids in 2D laser range data based on generic distance-invariant features

机译:基于通用的距离不变特征,人们可以在二维激光测距数据中检测并区分助行器

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People detection in 2D laser range data is a popular cue for person tracking in mobile robotics. Many approaches are designed to detect pairs of legs. These approaches perform well in many public environments. However, we are working on an assistance robot for stroke patients in a rehabilitation center, where most of the people need walking aids. These tools occlude or touch the legs of the patients. Thereby, approaches based on pure leg detection fail. The essential contribution of this paper are generic distance-invariant range scan features for people detection in 2D laser range data and the distinction of their walking aids. With these features we trained classifiers for detecting people without walking aids (or with crutches), people with walkers, and people in wheelchairs. Using this approach for people detection, we achieve an F score of 0.99 for people with and without walking aids, and 86% of detections are classified correctly regarding their walking aid. For comparison, using state-of-the-art features of Arras et al. on the same data results in an F score of 0.86 and 57% correct discrimination of walking aids. The proposed detection algorithm takes around 2.5% of the resources of a 2.8 GHz CPU core to process 270° laser range data at an update rate of 10 Hz.
机译:2D激光测距数据中的人员检测是移动机器人技术中人员跟踪的流行提示。设计了许多方法来检测双腿。这些方法在许多公共环境中表现良好。但是,我们正在康复中心为中风患者提供辅助机器人,那里大多数人都需要助行器。这些工具会阻塞或触摸患者的腿。因此,基于纯腿检测的方法失败了。本文的主要贡献是用于二维激光测距数据中的人员检测的通用距离不变范围扫描功能及其助行器的区别。通过这些功能,我们训练了分类器,以检测没有助行器(或带有拐杖)的人,有助行器的人和坐在轮椅上的人。使用这种方法进行人员检测,对于有或没有助行器的人,我们的F得分为0.99,并且将86%的检测结果正确地归类于他们的助行器。为了进行比较,使用Arras等人的最新功能。在相同数据上得出的F值为0.86,对助行器的正确判别率为57%。所提出的检测算法占用2.8 GHz CPU内核约2.5%的资源,以10 Hz的更新速率处理270°激光测距数据。

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