非线性MIMO系统的非线性跟踪控制的解决方案,具有输入衍生和执行和度的输入衍生和执行和度
M R Homaeinezhad1, A Maghsoudpour1, M M Mousavi Alvar1
1Faculty of Mechanical Engineering, K. N. Toosi University of Technology, No. 17, Pardis Street, Mollasadra Ave., Vanak Square, Tehran, 19991-43344, Iran.
本研究介绍了复杂非线性系统的新控制器,通过管理输入约束和执行器动态来提高跟踪精度和稳定性. 实时测试证实了其在苛刻的多输入多输出 (MIMO) 系统中的实际应用.
科学领域:
- 控制工程 控制工程 控制工程
- 非线性系统动态 非线性系统动态
- 机器人技术 机器人技术 机器人技术
背景情况:
- 非线性多输入多输出 (MIMO) 系统由于输入约束和衍生限制而存在重大控制挑战.
- 传统的滑动模式控制设计可能会出现零解决方案,限制其有效性.
研究的目的:
- 为非线性MIMO系统开发一种新的跟踪控制器,该控制器解决了执行约束,系统输入约束和控制输入衍生.
- 为了提高跟踪精度,并确保在复杂的控制应用中实现非对称稳定性和稳定性.
主要方法:
- 使用了具有功率达到规律和可变滑动表面的滑动模式控制.
- 使用亚当斯-穆尔顿时间分离技术嵌入了执行器动态,将控制速率限制作为硬约束.
- 四位数编程优化了控制输入,统一了速度和位置命令.
主要成果:
- 与基线方法相比,拟议的控制器表现出优越的跟踪精度和稳定性.
- 通过控制器设计,保证了对比稳定性.
- 实时实现实现了快速执行 (7.594毫秒),在Linux实时内核上有0%的错误率.
结论:
- 新型跟踪控制器有效地管理非线性MIMO系统中的复杂约束.
- 控制器的性能和实用性通过严格的模拟和实时实施来验证.
- 这种方法为需要精确控制的高影响力MIMO系统应用提供了强大的解决方案.
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