arXiv:2505.11808cs.ROcs.HC2025-05被引 3

让四足导盲机器人走路更安静平稳,提升视障者使用体验

Human-Centered Development of Guide Dog Robots: Quiet and Stable Locomotion Control

  • 设计新型步态控制器,实现慢速平稳行走与稳定平衡
  • 噪声降低至默认控制器的一半,通过视障用户实测验证
  • 适合关注人机交互体验的智能机器人研究者

四足机器人因形态类似导盲犬,具备提供类似辅助的潜力。然而,现有机器人在行走时存在噪音大、动作僵硬等问题,严重影响视障人士使用。我们对导盲犬训导员和使用者进行访谈后发现,声音与身体震动对依赖听觉导航的视障者尤为干扰。为此,我们开发了一种新型步行控制器,可在保持人类步行速度的同时实现缓慢、平滑的迈步与脚部接触,并具备稳健的平衡控制能力。该控制器与感知系统结合,可实现非平坦地形(如楼梯)的自主通行。在Unitree Go1机器人上测试表明,相比默认控制器,本方案噪声降低约50%。采用混合方法评估其可用性:室内步行实验中,参与者对比新旧控制器后,普遍更偏好新方案,证实其显著提升用户体验。视频演示详见:https://youtu.be/8-pz_8Hqe6s。

原文摘要 · Abstract (English)

A quadruped robot is a promising system that can offer assistance comparable to that of dog guides due to its similar form factor. However, various challenges remain in making these robots a reliable option for blind and low-vision (BLV) individuals. Among these challenges, noise and jerky motion during walking are critical drawbacks of existing quadruped robots. While these issues have largely been overlooked in guide dog robot research, our interviews with guide dog handlers and trainers revealed that acoustic and physical disturbances can be particularly disruptive for BLV individuals, who rely heavily on environmental sounds for navigation. To address these issues, we developed a novel walking controller for slow stepping and smooth foot swing/contact while maintaining human walking speed, as well as robust and stable balance control. The controller integrates with a perception system to facilitate locomotion over non-flat terrains, such as stairs. Our controller was extensively tested on the Unitree Go1 robot and, when compared with other control methods, demonstrated significant noise reduction -- half of the default locomotion controller. In this study, we adopt a mixed-methods approach to evaluate its usability with BLV individuals. In our indoor walking experiments, participants compared our controller to the robot's default controller. Results demonstrated superior acceptance of our controller, highlighting its potential to improve the user experience of guide dog robots. Video demonstration (best viewed with audio) available at: https://youtu.be/8-pz_8Hqe6s.

导盲机器人人机交互步态控制

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