arXiv:2501.01323cs.RO2025-01被引 7

软性折纸餐勺让机器人更轻松夹住各种食物,送入口中。

Kiri-Spoon: A Kirigami Utensil for Robot-Assisted Feeding

  • 用折纸结构设计可变形餐勺,自动包裹食物
  • 实测在多种食物和机器人平台表现优异
  • 适合行动不便者与护理人员使用

数百万成年行动障碍者日常进食困难。现有机器人助食系统因难以稳定抓取和运送各类食物,用户采纳率低。本文提出Kiri-Spoon,一种基于折纸结构的软性餐勺:通过驱动使薄片变形为曲率递增的碗状,机器人可借此环绕夹持食物,在移动中保持并柔性释放。我们采用以使用者为中心的设计流程,确保符合护理人员与残障用户需求;建立力学模型,关联驱动力与勺形变化;并通过三项实验验证:(a) Kiri-Spoon的机械优势,(b) 用户对系统的感知评价,(c) 其机械智能如何增强先进算法性能。结果表明,该设计在多种食物、机器人平台及算法下均显著提升助食效果。

原文摘要 · Abstract (English)

For millions of adults with mobility limitations, eating meals is a daily challenge. A variety of robotic systems have been developed to address this societal need. Unfortunately, end-user adoption of robot-assisted feeding is limited, in part because existing devices are unable to seamlessly grasp, manipulate, and feed diverse foods. Recent works seek to address this issue by creating new algorithms for food acquisition and bite transfer. In parallel to these algorithmic developments, however, we hypothesize that mechanical intelligence will make it fundamentally easier for robot arms to feed humans. We therefore propose Kiri-Spoon, a soft utensil specifically designed for robot-assisted feeding. Kiri-Spoon consists of a spoon-shaped kirigami structure: when actuated, the kirigami sheet deforms into a bowl of increasing curvature. Robot arms equipped with Kiri-Spoon can leverage the kirigami structure to wrap-around morsels during acquisition, contain those items as the robot moves, and then compliantly release the food into the user's mouth. Overall, Kiri-Spoon combines the familiar and comfortable shape of a standard spoon with the increased capabilities of soft robotic grippers. In what follows, we first apply a stakeholder-driven design process to ensure that Kiri-Spoon meets the needs of caregivers and users with physical disabilities. We next characterize the dynamics of Kiri-Spoon, and derive a mechanics model to relate actuation force to the spoon's shape. The paper concludes with three separate experiments that evaluate (a) the mechanical advantage provided by Kiri-Spoon, (b) the ways users with disabilities perceive our system, and (c) how the mechanical intelligence of Kiri-Spoon complements state-of-the-art algorithms. Our results suggest that Kiri-Spoon advances robot-assisted feeding across diverse foods, multiple robotic platforms, and different manipulation algorithms.

机器人助食软体机械折纸结构人机交互

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。