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Fractional order adaptive controller for stabilised systems via high-gain feedback

机译:通过高增益反馈实现稳定系统的分数阶自适应控制器

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Controllers based on fractional order calculus are gaining more and more interests from the control community. This type of controllers may involve fractional integration, fractional differentiation and/or fractional systems in their structure or implementation. They have been introduced in the control applications in a continuous effort to enhance the system control quality performances and robustness. In this study, a new scheme of fractional order adaptive controller via high-gain output feedback for a class of linear, time-invariant, minimum phase and single input-single output systems of relative degree one is proposed. The basic idea of the new design is a further modification in the adaptive proportional control law by the introduction of a fractional integration besides of the regular one of the squared output of the system in the adaptation gain of the control strategy. An analytical stability proof of the feedback control system is presented. The control quality enhancement of the proposed control scheme compared with the classical one has been presented through the simulation results of an illustrative example.
机译:基于分数阶微积分的控制器越来越引起控制界的关注。这种类型的控制器可能在其结构或实现中涉及分数积分,分数微分和/或分数系统。它们不断地被引入控制应用中,以增强系统控制质量的性能和鲁棒性。在这项研究中,提出了一种新的分数阶自适应控制器的高增益输出反馈方案,该方案适用于一类线性,时不变,最小相位和相对输入为一的单输入单输出系统。新设计的基本思想是在控制策略的自适应增益中引入除系统的平方输出的规则平方以外的分数积分,进一步改进自适应比例控制定律。给出了反馈控制系统的解析稳定性证明。通过一个示例的仿真结果,提出了与经典控制方案相比,所提出的控制方案的控制质量得到了提高。

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