arXiv:2508.07758cs.RO2025-08被引 1

机器人与天车协作,实现吊载物精准定位。

Robot and Overhead Crane Collaboration Scheme to Enhance Payload Manipulation

  • 通过力控实现机器人与天车无物理连接协同
  • 采用两种阻抗函数确保接触平滑安全
  • 适合高精度工业搬运场景,提升操作安全性

本文提出一种机器人与天车协同的吊载物操控方案。当前工业实践中,当需将吊载物精确放置于目标位置时,操作员必须手动引导微调动作,过程费力且存在风险。本方案中,天车负责起吊,机器人末端执行器引导载荷至目标位置,两者仅通过引导过程中的交互力相连。设计了两种阻抗传递函数:第一种用于基于位置的机器人阻抗控制,第二种通过处理交互力生成天车速度指令,使天车跟随载荷。机器人与天车协同运动,完成载荷精确定位。文中提出了实现流畅协作的阻抗控制器设计方法,并通过仿真与实验验证了该方案的有效性。

原文摘要 · Abstract (English)

This paper presents a scheme to enhance payload manipulation using a robot collaborating with an overhead crane. In the current industrial practice, when the crane's payload has to be accurately manipulated and located in a desired position, the task becomes laborious and risky since the operators have to guide the fine motions of the payload by hand. In the proposed collaborative scheme, the crane lifts the payload while the robot's end-effector guides it toward the desired position. The only link between the robot and the crane is the interaction force produced during the guiding of the payload. Two admittance transfer functions are considered to accomplish harmless and smooth contact with the payload. The first is used in a position-based admittance control integrated with the robot. The second one adds compliance to the crane by processing the interaction force through the admittance transfer function to generate a crane's velocity command that makes the crane follow the payload. Then the robot's end-effector and the crane move collaboratively to guide the payload to the desired location. A method is presented to design the admittance controllers that accomplish a fluent robot-crane collaboration. Simulations and experiments validating the scheme potential are shown.

机器人协同力控工业自动化

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