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LMI-Based Multivariable PID Controller Design and its Application to the Control of the Surface Shape of Magnetic Fluid Deformable Mirrors

机译:基于LMI的多变量PID控制器设计及其在电磁变形镜表面形状控制中的应用

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摘要

In this paper, the design of multivariable proportional-integral-derivative (PID) controllers for discrete-time systems based on linear matrix inequalities (LMIs) is studied. First the stability problem of the closed-loop system with the multivariable PID controller is investigated. To adjust the transient response of the resulting closed-loop system, the design method is extended to account for a pole clustering constraint. PID controller design methods that yield closed-loop systems with $H_{infty}$ and $H_{2}$ performance specifications are then investigated. Algorithms based on properly formulated LMIs are developed for the above different cases. Finally, the performance of the proposed controllers is experimentally evaluated in an adaptive optics system where it is desired to control the shape of a magnetic fluid deformable mirror. The experimental results indicate the proposed controllers can successfully provide the desired shape tracking performance in the closed-loop adaptive optics system.
机译:本文研究了基于线性矩阵不等式(LMI)的离散时间系统多变量比例积分微分(PID)控制器的设计。首先,研究了带有多变量PID控制器的闭环系统的稳定性问题。为了调整最终闭环系统的瞬态响应,扩展了设计方法以解决极点聚类约束。 PID控制器设计方法可产生具有 $ H_ {infty} $ 然后研究 $ H_ {2} $ 性能规范。针对以上不同情况,开发了基于正确制定的​​LMI的算法。最后,在自适应光学系统中通过实验评估了提出的控制器的性能,在该系统中需要控制磁性流体可变形反射镜的形状。实验结果表明,所提出的控制器可以在闭环自适应光学系统中成功提供所需的形状跟踪性能。

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