arXiv:2507.05555cs.RO2025-07被引 6

PAPRLE让机器人肢体可插拔组合,支持多种操控方式和实时力反馈。

PAPRLE (Plug-And-Play Robotic Limb Environment): A Modular Ecosystem for Robotic Limbs

  • 模块化设计支持灵活配置机器人肢体与操控设备
  • 兼容多种输入设备,实现关节空间与任务空间双控
  • 适合远程操作、人机交互及具身智能研究者使用

我们提出PAPRLE(Plug-And-Play Robotic Limb Environment),一个模块化生态系统,支持机器人肢体的灵活部署与控制。用户可通过傀儡装置、游戏手柄或基于VR的界面操控肢体,适应多种遥操作场景。系统引入可插拔的傀儡设备,能快速适配不同机器人构型,支持双边遥操作且不依赖从端机器人类型。通过同时支持关节空间与任务空间控制,系统提供实时力反馈,提升操作真实感与物理交互感知。其模块化架构支持创新肢体布局与可扩展数据采集,推动具身智能与学习型控制研究。我们在多种真实场景中验证了系统的通用性,展示了不同主控设备与从端机器人组合的表现。系统将开源发布,包含软硬件资源,项目网站提供演示与补充材料:https://uiuckimlab.github.io/paprle-pages

原文摘要 · Abstract (English)

We introduce PAPRLE (Plug-And-Play Robotic Limb Environment), a modular ecosystem that enables flexible placement and control of robotic limbs. With PAPRLE, a user can change the arrangement of the robotic limbs, and control them using a variety of input devices, including puppeteers, gaming controllers, and VR-based interfaces. This versatility supports a wide range of teleoperation scenarios and promotes adaptability to different task requirements. To further enhance configurability, we introduce a pluggable puppeteer device that can be easily mounted and adapted to match the target robot configurations. PAPRLE supports bilateral teleoperation through these puppeteer devices, agnostic to the type or configuration of the follower robot. By supporting both joint-space and task-space control, the system provides real-time force feedback, improving user fidelity and physical interaction awareness. The modular design of PAPRLE facilitates novel spatial arrangements of the limbs and enables scalable data collection, thereby advancing research in embodied AI and learning-based control. We validate PAPRLE in various real-world settings, demonstrating its versatility across diverse combinations of leader devices and follower robots. The system will be released as open source, including both hardware and software components, to support broader adoption and community-driven extension. Additional resources and demonstrations are available at the project website: https://uiuckimlab.github.io/paprle-pages

机器人控制遥操作模块化

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。