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Evaluation of Direct and Indirect Haptic Aiding in an Obstacle Avoidance Task for Tele-Operated Systems

机译:远程操作系统避障任务中直接和间接触觉帮助的评估

摘要

The sense of telepresence is very important in teleoperation environments in which the operator is physically separated from the vehicle. It appears reasonable, and it has already been shown in the literature, that extending the visual feedback with force feedback is able to complement the visual information (when missing or limited) through the sense of touch and allows the operator to better perceive information from the remote environment and its constraints, hopefully preventing dangerous collisions. This paper focuses on a novel concept of haptic cueing for an airborne obstacle avoidance task; the novel cueing algorithm was designed in order to appear "natural" to the operator, and to improve the human-machine interface without directly acting on the actual aircraft commands. An experimental evaluation of two different Haptic aiding concepts for obstacle avoidance is presented. An existing and widely used approach, belonging to what we called the Direct Haptic Aid (DHA) class, and a novel one based on the Indirect Haptic Aid (IHA) class. The two haptic aids were compared with a baseline condition in which no haptic force was associated to the obstacles. Test results show that a net improvement in terms of performance (i.e. the number of collisions) is provided by employing the IHA haptic cue instead of both the DHA haptic cue and the visual cue only. Most participants of the experiment reported the strongest force feeling, the most necessary effort and also the most helpful sensation with DHA and IHA conditions with respect to the baseline condition. This paper shows that the IHA philosophy is a valid alternative to the other commonly used, and published in the scientific literature, approaches which fall in the DHA category.
机译:远程呈现感在操作员与车辆物理上分开的远程操作环境中非常重要。看起来是合理的,并且在文献中已经表明,通过力反馈来扩展视觉反馈能够通过触觉来补充视觉信息(缺失或受限时),并使操作员能够更好地感知来自视觉的信息。偏远的环境及其限制条件,有望避免发生危险的碰撞。本文着重介绍一种新型的触觉提示概念,用于机载避障任务。设计新颖的提示算法是为了使操作员看起来“自然”,并改善人机界面,而无需直接作用于实际的飞机命令。提出了两种不同的触觉辅助概念用于避障的实验评估。一种现有的且被广泛使用的方法,属于我们所谓的直接触觉辅助(DHA)类,并且是一种基于间接触觉辅助(IHA)类的新颖方法。将这两种触觉辅助设备与没有触觉力与障碍物相关联的基线条件进行了比较。测试结果表明,通过使用IHA触觉提示而不是仅DHA触觉提示和视觉提示,可以在性能(即碰撞次数)方面实现净改进。实验的大多数参与者报告了DHA和IHA条件相对于基准条件而言最强的力量感觉,最必要的努力以及最有帮助的感觉。本文表明,IHA哲学是其他常用哲学的有效替代方法,并且已发表在科学文献中,属于DHA类。

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