arXiv:2509.10065cs.RO2025-09被引 2

让无人机机械臂在规定时间内精准到达目标位置

Prespecified-Performance Kinematic Tracking Control for Aerial Manipulation

  • 用预设轨迹与二次规划分配控制,确保运动精度
  • 可在指定时间内完成任务,误差控制在要求范围内
  • 适合需要高时效性与安全性的空中作业场景

本文研究无人机机械臂的运动学跟踪控制问题。现有方法多采用比例-微分反馈或基于跟踪误差的策略,难以在指定时间约束内达成目标。为此,提出一种新控制框架,包含用户预设轨迹的末端执行器跟踪控制和基于二次规划的参考量分配。相比现有方法,该方案能保证末端在规定时间内到达目标位置,同时跟踪误差保持在反映任务需求的性能包络内;通过二次规划协调四旋翼基座与Delta机械臂的参考量,兼顾系统物理约束,避免违反实际可执行性。通过三项实验验证,结果表明该算法有效,可保障目标位置在预设时间内被准确抵达。

原文摘要 · Abstract (English)

This paper studies the kinematic tracking control problem for aerial manipulators. Existing kinematic tracking control methods, which typically employ proportional-derivative feedback or tracking-error-based feedback strategies, may fail to achieve tracking objectives within specified time constraints. To address this limitation, we propose a novel control framework comprising two key components: end-effector tracking control based on a user-defined preset trajectory and quadratic programming-based reference allocation. Compared with state-of-the-art approaches, the proposed method has several attractive features. First, it ensures that the end-effector reaches the desired position within a preset time while keeping the tracking error within a performance envelope that reflects task requirements. Second, quadratic programming is employed to allocate the references of the quadcopter base and the Delta arm, while considering the physical constraints of the aerial manipulator, thus preventing solutions that may violate physical limitations. The proposed approach is validated through three experiments. Experimental results demonstrate the effectiveness of the proposed algorithm and its capability to guarantee that the target position is reached within the preset time.

无人机控制机械臂运动规划

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