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Multivariable adaptive control with unknown signs of the high-frequency gain matrix using novel Nussbaum functions

机译:使用新型NUSSBAUM函数的高频增益矩阵未知标志的多变量自适应控制

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Multivariable adaptive control with less prior information of the high-frequency gain matrix (HFGM) is a longstanding problem of both theoretical and practical importance. In this paper, a solution is presented by proposing a novel output-feedback adaptive backstepping control scheme. Our scheme only requires the leading principal minors of the HFGM to be nonzero and allows their signs to be unknown, which significantly relaxes the assumptions on the HFGM in conventional multivariable adaptive control schemes. To cope with the unknown signs, we propose novel Nussbaum functions with some nice properties and construct periodical intervals in which the effects of the multiple Nussbaum functions reinforce rather than counteract each other. With these efforts, global stability of the closed-loop system and asymptotical convergence to zero of the tracking error are successfully achieved. Simulation results illustrate the effectiveness of the proposed control scheme. (C) 2019 Elsevier Ltd. All rights reserved.
机译:多变量自适应控制具有较少的高频增益矩阵(HFGM)的现有信息是理论和实践重要性的长期存在。在本文中,通过提出新的输出反馈自适应反向控制方案来提出解决方案。我们的计划只需要HFGM的领先主要未成年人不含非零,并允许其迹象是未知的,这显着放宽了传统多变量自适应控制方案中HFGM的假设。为了应对未知的标志,我们提出了新的NUSSBAUM功能,具有一些漂亮的特性,并构建了周期间隔,其中多个NUSSBAUM函数的效果增强而不是互相抵消。通过这些努力,成功实现了闭环系统的全局稳定性和对跟踪误差零的渐近收敛。仿真结果说明了所提出的控制方案的有效性。 (c)2019年elestvier有限公司保留所有权利。

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