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Pole-Clustering Design with Sliding-Mode Methods for Multi-Degree-of-Freedom Systems

机译:多自由度系统的滑模方法极点簇设计

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This paper proposes a sliding-mode controller design with adaptable pole-clustering capability for linear multiple-input multiple-output systems, in which the influences of parameter uncertainties and external disturbances on the system performance can be arbitrarily lessened to cluster all closed-loop poles within the desired regions in a complex plane. Due to parameter uncertainties or variations in a physical system, the closed-loop poles through linear state feedback might be perturbed away from the required ones and could not be constrained within the specified regions in a complex plane. In established sliding-mode control, system responses during sliding motions are completely invariant to system perturbations satisfying the so-called matching condition. However, this invariance property usually accompanies undesirable chatter phenomenon. In this paper, the proposed sliding-mode controller is designed to decrease the effects of system perturbations to an extent that is acceptable according to performance specifications, instead of being completely insensitive. One advantage of this design over the conventional one is the reduction of chatter level. To be precise, chatter alleviation can be achieved while the sliding mode is guaranteed during an entire response in this design. To verify the scheme, we performed experiments on its implementation in a two-degree-of-freedom magnetic levitation system. The results show that the proposed scheme not only satisfies the requirements for performance robustness but also achieves chatter alleviation.
机译:本文针对线性多输入多输出系统提出了一种具有极点自适应能力的滑模控制器设计,其中可以任意减小参数不确定性和外部干扰对系统性能的影响,从而将所有闭环极点聚类。在复杂平面中的所需区域内。由于物理系统中参数的不确定性或变化,通过线性状态反馈产生的闭环极点可能会偏离所需的极点,并且不会被限制在复杂平面的指定区域内。在已建立的滑模控制中,滑动运动期间的系统响应对于满足所谓匹配条件的系统扰动是完全不变的。但是,这种不变性通常伴随不希望的颤动现象。在本文中,所提出的滑模控制器旨在将系统扰动的影响减小到根据性能规格可接受的程度,而不是完全不敏感。这种设计相对于传统设计的一个优点是降低了颤振水平。准确地说,在此设计中,在整个响应过程中都保证了滑动模式的同时,还可以减轻抖动。为了验证该方案,我们对其在两自由度磁悬浮系统中的实施方案进行了实验。结果表明,该方案不仅满足了性能鲁棒性要求,而且实现了抖振缓解。

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