对非线性不确定系统的基于添加态分解的级联线性ADRC,适用于PMSM速度调节
Fuxi Jiang1, Jie Ye1, Siqi Wang1
1Key Laboratory of Image Processing and Intelligent Control, School of Artificial Intelligence and Automation, Huazhong University of Science and Technology, Wuhan 430074, China.
本研究为非线性系统引入了一种新的级联线性活性干扰排斥控制 (CLADRC). 这种方法提高了干扰排斥和跟踪性能,在永久磁铁同步电机转速控制器上得到了验证.
科学领域:
- 控制系统工程 控制系统工程
- 非线性系统动态 非线性系统动态
- 机器人和自动化机器人与自动化
背景情况:
- 非线性系统经常面临时间变化的干扰影响跟踪控制的挑战.
- 现有的主动干扰排斥控制 (ADRC) 方法可能无法完全分离控制目标.
研究的目的:
- 提出一种新的连锁线性活性干扰排斥控制 (CLADRC) 战略.
- 在有干扰的非线性系统中提高跟踪精度和稳定性.
- 为了使跟踪和强大的控制元件能够独立调.
主要方法:
- 添加状态分解 (ASD) 将系统分成主要和次要子系统.
- 国家反控制器,对两个子系统进行干扰估计和补偿.
- 一个线性扩展状态观察器用于二次干扰估计.
- 用于稳定性分析的利亚普诺夫稳定性理论.
主要成果:
- 在CLADRC的方法有效地解跟踪和强大的控制.
- 实现了独立的参数调整,简化了控制器设计.
- 证明了增强的干扰抑制和精确的参考跟踪.
- 闭环系统的统一的最终界限在理论上是保证的.
结论:
- 与标准ADRC相比,基于ASD的拟议CLADRC提供了更高的性能.
- 该方法通过对永磁同步电机 (PMSM) 速度调节的模拟和实验进行验证.
- 这种方法为复杂的控制问题提供了强大而有效的解决方案.
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