使用由非线性全态反控制器调节的合成纤维电缆的电缆驱动操纵器的利亚普诺夫稳定性
Lorenzo De Mari Casareto Dal Verme1, Daniele Ludovico2, Alessandro Pistone2
1Dipartimento di Informatica, Bioingegneria, Robotica e Ingegneria dei Sistemi (DIBRIS), Unversità di Genova, Via Balbi, 5, Genova, 16126, Italy; Advanced Robotics (ADVR), Istituto Italiano di Tecnologia, Via Morego, 30, Genova, 16163, Italy.
ISA transactions
|September 6, 2023
概括
这项研究介绍了使用合成纤维电缆的弹性机器人操纵器的新控制器. 控制器负责电缆粘性弹性,提高工业应用中的安全性和效率.
科学领域:
- 机器人技术 机器人技术 机器人技术
- 控制系统工程 控制系统工程
- 材料科学 材料科学 材料科学
背景情况:
- 弹性关节机器人操纵器通过减少碰撞冲击能量来提高安全性.
- 电缆驱动的操纵器为工业检查提供了优势,因为它们具有远程执行器和高的有效载荷-重量比率.
- 合成纤维电缆具有优越的机械性能,但表现出复杂的粘弹性行为,需要补偿.
研究的目的:
- 为带有弹性接头的电缆驱动操纵器设计一个非线性全态反控制器.
- 将合成纤维电缆的粘弹性特性纳入控制器设计中.
- 为拟议的控制器提供闭环稳定性的数学证明.
主要方法:
- 使用四元模型捕捉合成纤维电缆的粘性行为.
- 开发一个非线性全态反控制策略.
- 应用利亚普诺夫稳定理论对控制系统性能进行数学验证.
主要成果:
- 一个新的控制器有效地管理机器人操纵器中合成纤维电缆的粘性弹性.
- 控制器的设计提高了电缆驱动系统的操作安全性和效率.
- 数学验证证实了开发的控制系统的闭环稳定性.
结论:
- 四元模型是用合成纤维电缆建模和控制弹性机器人操纵器的可行方法.
- 拟议的控制器为工业检查任务提供了更好的性能和安全性.
- 这项研究有助于推进符合规范的机器人系统的强有力的控制策略.
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