arXiv:2605.30849cs.RO2026-05

高负载磁吸附足部实现四足机器人稳定攀爬

High-Load-Density Electro-Permanent Magnetic Foot with Controllable Adhesion for Quadruped Wall-Climbing Robots

  • 采用环形哈氏阵列电永磁结构,提升磁通利用率
  • 最大吸附力超1000牛,负载重量比超200:1
  • 适合在复杂金属表面爬行的四足机器人使用

为实现四足机器人在铁磁表面的可靠攀爬运动,本文提出一种高负载密度的电永磁足部,具备力反馈的环形哈氏阵列电永磁(CHN-EPM)吸附单元和磁化控制系统。由于三维磁路结构与磁通聚焦效应,CHN-EPM实现了分布式并联磁路路径,提升了磁通利用效率,降低了对气隙变化的敏感性,可在部分接触条件下维持有效吸附。所提CHN-EPM最大吸附力超过1000 N,负载-自重比超过200:1。设计了磁化驱动器与两级脉冲电流控制策略,调节激励电流幅值与持续时间,实现精确可靠的磁化。通过集成柔性压力传感器进行接触力反馈,系统可有效监测吸附与脱离状态,确保在不确定接触条件下实现鲁棒吸附切换。该系统已集成至商用四足机器人(Unitree GO2),在天花板、垂直墙面及涂漆、打孔、曲面等铁磁表面均实现高负载吸附与稳定运动。

原文摘要 · Abstract (English)

To enable reliable climbing locomotion of quadruped robots on ferromagnetic surfaces, this paper presents a high-load-density electro-permanent magnetic foot with controllable adhesion, featuring force-feedback circular Halbach-net electro-permanent magnet (CHN-EPM) adhesion units and a magnetization control system. Due to its three-dimensional magnetic circuit structure and flux-concentration effect, the CHN-EPM enables a distributed parallel magnetic flux path with enhanced flux utilization, resulting in reduced sensitivity to air-gap variations and allowing effective adhesion to be maintained even under partial contact conditions. The proposed CHN-EPM generates a maximum adhesion force exceeding 1000 N with a load-to-weight ratio over 200:1. A magnetization driver and a two-stage pulse current control strategy are developed to regulate the excitation current amplitude and duration, enabling accurate and reliable magnetization. By incorporating a flexible pressure sensor for contact force feedback, the system can effectively monitor attachment and detachment states, ensuring robust adhesion switching under uncertain contact conditions. The proposed system is integrated into a commercial quadruped robot (Unitree GO2), demonstrating high-load adhesion on ceiling and vertical-wall surfaces and stable locomotion on painted, perforated, and curved ferromagnetic surfaces.

机器人磁吸附四足爬行力反馈

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