arXiv:2512.22957cs.ROcs.SY2025-12被引 1

用可变增益观测器实现无人机机械臂高精度运动控制

PreGME: Prescribed Performance Control of Aerial Manipulators based on Variable-Gain ESO

  • 通过可变增益扩展状态观测器实时估计动态耦合
  • 在机械臂高速运动(速度1.02 m/s,加速度5.10 m/s²)下仍保持高精度跟踪
  • 适合需要快速、精准操作的无人机机械臂应用场景

一架由多旋翼平台和机械臂组成的空中机械臂,其两部分间存在显著的动力学耦合。为实现精确且鲁棒的运动控制,本文提出一种基于可变增益扩展状态观测器(variable-gain ESO)的预定性能控制框架,命名为PreGME。该方法利用可变增益ESO实时估计快速变化的动力学耦合,并引入带误差轨迹约束的预定性能飞行控制。相比现有方法,本方案具有两个优势:首先,可变增益ESO能准确估计快速变化的耦合项,使系统可应对机械臂剧烈运动任务;其次,通过设定预定性能,生成预设误差轨迹引导系统演化,确保跟踪误差始终处于预定性能包络内,实现高精度控制。在真实平台上的实验包括空中杆子旋转、空中调酒及空中拉车任务,结果表明,即使在机械臂高速运动(末端速度达1.02 m/s,加速度达5.10 m/s²)引发强耦合条件下,所提方法仍保持优异的跟踪性能。

原文摘要 · Abstract (English)

An aerial manipulator, comprising a multirotor base and a robotic arm, is subject to significant dynamic coupling between these two components. Therefore, achieving precise and robust motion control is a challenging yet important objective. Here, we propose a novel prescribed performance motion control framework based on variable-gain extended state observers (ESOs), referred to as PreGME. The method includes variable-gain ESOs for real-time estimation of dynamic coupling and a prescribed performance flight control that incorporates error trajectory constraints. Compared with existing methods, the proposed approach exhibits the following two characteristics. First, the adopted variable-gain ESOs can accurately estimate rapidly varying dynamic coupling. This enables the proposed method to handle manipulation tasks that require aggressive motion of the robotic arm. Second, by prescribing the performance, a preset error trajectory is generated to guide the system evolution along this trajectory. This strategy allows the proposed method to ensure the tracking error remains within the prescribed performance envelope, thereby achieving high-precision control. Experiments on a real platform, including aerial staff twirling, aerial mixology, and aerial cart-pulling experiments, are conducted to validate the effectiveness of the proposed method. Experimental results demonstrate that even under the dynamic coupling caused by rapid robotic arm motion (end-effector velocity: 1.02 m/s, acceleration: 5.10 m/s$^2$), the proposed method achieves high tracking performance.

无人机控制机械臂动态耦合观测器

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