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Controller design for sine wave tracking on magnetic levitation system: A comparative simulation study

机译:磁悬浮系统正弦波跟踪控制器设计:对比仿真研究

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In this paper, we advance a nonlinear control design concept based on backstepping, adjusted so that it might be used for a wider class of dynamical systems than the so-called strict-feedback form. Possible applications concern magnetic levitation systems, one of which will be used, in this paper, to design the proposed controller. Theoretical aspects regarding feasibility, stability and optimality will be readily described in a constructive and systematical manner, emphasizing flexibility of this procedure and further extensions. Special attention is being payed to practical concerns like singularity avoidance inside feedback loop. Lastly, we deal with sine wave tracking problem, by actually comparing simulation results, with other linear and nonlinear control design techniques already existing in the literature, in terms of robustness and performance. We hope to show that, our ‘engineer’ controller synthesis proves interesting enough, by effectively manipulating theoretical concepts with numerical applicability.
机译:在本文中,我们提出了一种基于反推的非线性控制设计概念,并对其进行了调整,使其比所谓的严格反馈形式可用于更广泛的动力学系统。可能的应用涉及磁悬浮系统,本文将使用其中之一来设计所提出的控制器。关于可行性,稳定性和最佳性的理论方面将很容易以建设性和系统的方式进行描述,强调此过程的灵活性和进一步的扩展。正在特别注意一些实际问题,例如避免在反馈循环中出现奇点。最后,通过在鲁棒性和性能方面通过将仿真结果与文献中已有的其他线性和非线性控制设计技术进行实际比较,来处理正弦波跟踪问题。我们希望证明,“工程师”控制器综合通过有效地运用具有数值适用性的理论概念而被证明足够有趣。

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