arXiv:2511.20299cs.ROcs.HC2025-11

研究机器人运动方式如何影响人机交接中的动作表现。

How Robot Kinematics Influence Human Performance in Virtual Robot-to-Human Handover Tasks

  • 用VR模拟人机交接,测试不同机器人运动模式对人的影响。
  • 早期清晰的视觉提示和类人平滑轨迹能显著提升人类预测与同步能力。
  • 适合关注人机协作设计、机器人运动规划的研究者与工程师。

近年来机器人技术的发展使得机器人在人机协同工作场景中应用日益广泛,亟需优化人机协作表现。本研究通过虚拟现实(VR)技术模拟人机交接任务,考察不同任务动态与机器人运动学特征对人类运动表现的影响。实验分别评估了四个因素:(1)任务发起控制权与机器人运动同步性(时间与时空同步);(2)协作伙伴外观(真人与机器人);(3)机器人速度曲线(最小抖动、恒定速度、恒定加速度、双相);(4)旋转物体运动时机。结果表明,机器人提供关于任务相关物体运动的早期且显著的视觉信息,以及采用类人平滑轨迹,可显著提升人类的预测准确性和交互同步性。这说明人机交互设计应充分利用人类对生物运动的天然感知优势,从而降低机器人计算成本或人类认知负担。

原文摘要 · Abstract (English)

Recent advancements in robotics have increased the possibilities for integrating robotic systems into human-involved workplaces, highlighting the need to examine and optimize human-robot coordination in collaborative settings. This study explores human-robot interactions during handover tasks using Virtual Reality (VR) to investigate differences in human motor performance across various task dynamics and robot kinematics. A VR-based robot handover simulation afforded safe and controlled assessments of human-robot interactions. In separate experiments, four potential influences on human performance were examined (1) control over task initiation and robot movement synchrony (temporal and spatiotemporal); (2) partner appearance (human versus robotic); (3) robot velocity profiles (minimum jerk, constant velocity, constant acceleration, and biphasic); and (4) the timing of rotational object motion. Findings across experiments emphasize humans benefit from robots providing early and salient visual information about task-relevant object motion, and advantages of human-like smooth robot trajectories. To varying degrees, these manipulations improved predictive accuracy and synchronization during interaction. This suggests that human-robot interactions should be designed to allow humans to leverage their natural capabilities for detecting biological motion, which conversely may reduce the need for costly robotic computations or added cognitive adaptation on the human side.

人机协作虚拟现实运动规划

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