Frequency-shaped sliding mode control using H/sub /spl infin// control and /spl mu/ synthesis theory

K. Nonami, T. Ito, Y. Kitamura, K. Iwabuchi
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引用次数: 6

Abstract

This paper proposes a new sliding mode control method using H/sub /spl infin////spl mu/ control theory and shows its applications. This concept is based on the frequency-shaped approach. A conventional hyperplane consists of a desired reference model without dynamics. Therefore, the sliding mode control system often becomes unstable based on spillover phenomena in a higher frequency region. On the other hand, the proposed design method can completely suppress such spillover phenomena because of the frequency-shaped hyperplane. Also, it has good robustness and robust performance in cases of parameter variations on the hyperplane to minimize the maximum singular value and structured singular value from some noise to the controlled variables. We have applied this new method to the flexible structure of the miniature test rig with four stories like high rise building and the positioning control system with the flexible arm. We have verified from simulations and experiments that the new sliding mode control method proposed in previous paper has good performances and it is very useful to suppress the spillover in a higher frequency region.
频率型滑模控制采用H/sub /spl / infin/ control和/spl mu/ synthesis理论
本文提出了一种基于H/sub /spl的新型滑模控制方法,并给出了应用实例。这个概念是基于频率形状的方法。传统的超平面由一个没有动力学的期望参考模型组成。因此,滑模控制系统往往会由于高频区域的溢出现象而变得不稳定。另一方面,由于频率型超平面的存在,所提出的设计方法可以完全抑制这种溢出现象。此外,该方法在超平面参数变化情况下具有良好的鲁棒性和鲁棒性,能够最大限度地减小被控变量受噪声影响的最大奇异值和结构奇异值。我们将这种新方法应用于四层类似高层建筑的微型试验台的柔性结构和带有柔性臂的定位控制系统。仿真和实验表明,本文提出的滑模控制方法具有良好的性能,对抑制高频区域的溢出非常有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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