通过体积变化模拟生命感,提升机器人亲和力。
MOFU: Development of a MOrphing Fluffy Unit with Expansion and Contraction Capabilities and Evaluation of the Animacy of Its Movements
- 用单电机驱动充气式结构实现整体膨胀收缩。
- 体积变化+移动组合使感知生动性评分最高。
- 适合情感交互、疗愈类机器人的设计参考。
旨在增强人类对治疗与社交机器人感知生动性的研究中,我们开发了名为MOFU(MOrphing Fluffy Unit)的移动机器人,其可通过单个电机驱动,在毛绒外壳内实现整体体积膨胀与收缩。该机器人采用Jitterbug几何变换机制,直径可在约210毫米至280毫米间平滑变化,同时配备差速双轮驱动系统以实现运动。通过在线视频问卷调查,使用Godspeed量表评估了不同行为下的感知生动性。结果显示:独立的体积变化与旋转运动均能提升生动性;两者结合时效果优于仅移动或仅静态变化;同时展示两个MOFU并未显著提升生动性感知。探索性分析还发现,体积变化与移动结合时,生动性评分高于单独移动。结果表明,全身体积变化是提升机器人生动感的重要因素,为未来社交与治疗机器人设计提供了关键参考。
原文摘要 · Abstract (English)
Robots designed for therapy and social interaction aim to evoke a sense of animacy in humans. While many studies have focused on life like appearance or joint based movements, the effect of whole body volume changing movements commonly observed in living organisms has received little attention. In this study, we developed MOFU MOrphing Fluffy Unit, a mobile robot capable of whole body expansion and contraction using a single motor enclosed in a fluffy exterior. MOFU employs a Jitterbug geometric transformation mechanism that enables smooth diameter changes from approximately 210 mm to 280 mm with a single actuator, and is equipped with a differential two wheel drive mechanism for locomotion. We conducted an online survey using videos of MOFU behaviors and evaluated perceived animacy using the Godspeed Questionnaire Series. First, we compared stationary conditions with and without expansion contraction and with and without rotational motion. Both expansion contraction and rotation independently increased perceived animacy. Second, we examined whether presenting two MOFUs simultaneously would further enhance animacy perception, but no significant difference was observed. Exploratory analyses were also conducted across four dual robot motion conditions. Third, when expansion contraction was combined with locomotion, animacy ratings were higher than for locomotion alone. These results suggest that whole body volume changing movements enhance perceived animacy in robots, indicating that physical volume change is an important design element for future social and therapeutic robots.
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