arXiv:2503.12584cs.ROcs.SY2025-03被引 2

用3D打印工具实现低成本高精度协作机器人标定

MUKCa: Accurate and Affordable Cobot Calibration Without External Measurement Devices

  • 仅需3D打印的球铰接工具,通过约束末端执行器采集数据
  • 使机械臂误差从10mm降至0.2mm,三款机器人均有效
  • 适合预算有限但需高精度的工业用户或研究者

为提升协作机器人在日常任务中的可靠性,需确保其不仅重复性好,而且具备高精度。然而,现有标定工具往往比机器人本身还贵,难以普及。本文提出一种低成本、高效的标定方法:仅使用一个3D打印的双插座球铰接工具作为物理辅助,通过约束机器人末端执行器来收集训练数据。优化算法更新初始模型,确保每个插座位置预测一致,并保持两插座间平均距离无畸变。在Franka、Kuka和Kinova三款协作机器人上验证,标定后模型将平均绝对误差从约10mm降至0.2mm。进一步实验显示,在0.4mm公差下,未标定模型无法完成插销任务,而标定后可稳定成功;结合示教学习的重复绘图任务亦仅在标定后成功。结果表明该方法兼具精度与实用性。

原文摘要 · Abstract (English)

To increase the reliability of collaborative robots in performing daily tasks, we require them to be accurate and not only repeatable. However, having a calibrated kinematics model is regrettably a luxury, as available calibration tools are usually more expensive than the robots themselves. With this work, we aim to contribute to the democratization of cobots calibration by providing an inexpensive yet highly effective alternative to existing tools. The proposed minimalist calibration routine relies on a 3D-printable tool as the only physical aid to the calibration process. This two-socket spherical-joint tool kinematically constrains the robot at the end effector while collecting the training set. An optimization routine updates the nominal model to ensure a consistent prediction for each socket and the undistorted mean distance between them. We validated the algorithm on three robotic platforms: Franka, Kuka, and Kinova Cobots. The calibrated models reduce the mean absolute error from the order of 10 mm to 0.2 mm for both Franka and Kuka robots. We provide two additional experimental campaigns with the Franka Robot to render the improvements more tangible. First, we implement Cartesian control with and without the calibrated model and use it to perform a standard peg-in-the-hole task with a tolerance of 0.4 mm between the peg and the hole. Second, we perform a repeated drawing task combining Cartesian control with learning from demonstration. Both tasks consistently failed when the model was not calibrated, while they consistently succeeded after calibration.

机器人标定低成本协作机器人3D打印

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