感知替代:增强现实技术,提高无触摸机器人控制中的力感知。

Tonia Mielke, Florian Heinrich, Christian Hansen
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引用次数: 0

摘要

在非接触式人机交互中缺乏触觉反馈在机器人超声等应用中是至关重要的,在这些应用中,力感知对确保图像质量至关重要。增强现实(AR)是一个很有前途的工具,通过视觉或振动触觉反馈提供感官替代来解决这一限制。视觉力反馈的实现不仅需要考虑反馈设计,还需要考虑定位。因此,我们在三个不同的位置实现了两种不同的可视化类型,并研究了振动触觉反馈对这些方法的影响。此外,我们研究了多模态反馈与视觉或振动触觉输出的效果。我们的研究结果表明,与无反馈的基线条件相比,感官替代减轻了交互作用,视觉支持的存在减少了平均力误差,并且被参与者主观地偏爱。然而,提供的反馈越多,用户完成任务所需的时间就越长。在可视化设计方面,与3D箭头概念相比,2D条形可视化减少了力误差。此外,直接显示在超声屏幕上的可视化是主观上的首选。随着反馈模式和可视化设计的发现,我们的工作代表了向非接触式人机交互的感官替代迈出的重要一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SensARy Substitution: Augmented Reality Techniques to Enhance Force Perception in Touchless Robot Control.

The lack of haptic feedback in touchless human-robot interaction is critical in applications such as robotic ultrasound, where force perception is crucial to ensure image quality. Augmented reality (AR) is a promising tool to address this limitation by providing sensory substitution through visual or vibrotactile feedback. The implementation of visual force feedback requires consideration not only of feedback design but also of positioning. Therefore, we implemented two different visualization types at three different positions and investigated the effects of vibrotactile feedback on these approaches. Furthermore, we examined the effects of multimodal feedback compared to visual or vibrotactile output alone. Our results indicate that sensory substitution eases the interaction in contrast to a feedback-less baseline condition, with the presence of visual support reducing average force errors and being subjectively preferred by the participants. However, the more feedback was provided, the longer users needed to complete their tasks. Regarding visualization design, a 2D bar visualization reduced force errors compared to a 3D arrow concept. Additionally, the visualizations being displayed directly on the ultrasound screen were subjectively preferred. With findings regarding feedback modality and visualization design our work represents an important step toward sensory substitution for touchless human-robot interaction.

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