arXiv:2510.17341cs.RO2025-10被引 1

提出一种自适应交互力阻抗控制框架,实现人机协作安全稳定

Interactive Force-Impedance Control

  • 基于端口-哈密顿框架统一建模力与阻抗控制
  • 在强交互场景下降低接触冲击力与力振荡,保持系统被动性
  • 适合需要高安全性的柔性交互或复杂物理协作场景

人类与机器人协作需要灵活的角色切换,使机器人可在主动主导与被动跟随间转换。有效角色切换依赖于对人类意图的准确估计,传统方法通过外部力分析、机器人本体动力学或数据驱动方式实现,但主要适用于接触稀疏环境。当机器人在混合或统一力-阻抗控制下与主动人类或非被动环境进行物理交互时,系统可能失去被动性,危及安全。为此,本文提出统一的交互力-阻抗控制(IFIC)框架,根据交互功率流自适应调整,确保在接触密集环境下安全、无负担的协作。该控制架构基于端口-哈密顿框架,包含交互与任务控制端口,保证系统自主被动性。刚性和柔性接触实验均表明,IFIC在主动人类交互下仍能保持稳定,显著降低接触冲击力与交互力振荡。

原文摘要 · Abstract (English)

Human collaboration with robots requires flexible role adaptation, enabling the robot to switch between an active leader and a passive follower. Effective role switching depends on accurately estimating human intentions, which is typically achieved through external force analysis, nominal robot dynamics, or data-driven approaches. However, these methods are primarily effective in contact-sparse environments. When robots under hybrid or unified force-impedance control physically interact with active humans or non-passive environments, the robotic system may lose passivity and thus compromise safety. To address this challenge, this paper proposes a unified Interactive Force-Impedance Control (IFIC) framework that adapts to interaction power flow, ensuring safe and effortless interaction in contact-rich environments. The proposed control architecture is formulated within a port-Hamiltonian framework, incorporating both interaction and task control ports, thereby guaranteeing autonomous system passivity. Experiments in both rigid and soft contact scenarios demonstrate that IFIC ensures stable collaboration under active human interaction, reduces contact impact forces and interaction force oscillations.

人机协作力控控制框架

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