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首页> 外文期刊>Systems Science & Control Engineering >Robust PID controller design using particle swarm optimization-enabled automated quantitative feedback theory approach for a first-order lag system with minimal dead time
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Robust PID controller design using particle swarm optimization-enabled automated quantitative feedback theory approach for a first-order lag system with minimal dead time

机译:使用具有粒子群优化功能的自动定量反馈理论方法的鲁棒PID控制器设计,用于具有最小死区时间的一阶滞后系统

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This paper presents the design of a robust proportional integral and derivative (PID) controller for a first-order lag with pure delay (FOLPD) model using particle swarm optimization (PSO)-enabled automated quantitative feedback theory (QFT). The plant model considered here can be approximated as a first-order system with a non-minimum phase (NMP) zero. Synthesis of controller for the FOLPD model via manual graphical technique involved in the QFT method is always a challenging and cumbersome task, because an NMP system stabilizes by a small gain. In this paper, a proposal is being presented to automate the loop-shaping phase in the QFT design method to synthesize a robust controller that can undertake the exact amount of plant uncertainty even in the presence of larger uncertainties than those assumed initially and can ensure a proper trade-off between robust stability and tracking performance specifications over the entire range of design frequencies. In this paper,s the PSO technique has been employed to tune the controller automatically,which can significantly reduce the computational effort compared with manual graphical techniques. It has also been demonstrated that this methodology not only automates loop shaping but also improves design quality and, most usefully, improves performance with optimally tuned PID controller in quantitative manner.
机译:本文介绍了一种基于纯粒子群优化(PSO)的自动定量反馈理论(QFT)的纯延迟一阶滞后(FOLPD)模型的鲁棒比例积分和微分(PID)控制器的设计。此处考虑的工厂模型可以近似为具有非最小相位(NMP)零的一阶系统。通过QFT方法中涉及的手动图形技术对FOLPD模型的控制器进行合成始终是一项艰巨而繁琐的任务,因为NMP系统的增益很小。在本文中,提出了一种建议,以使QFT设计方法中的环路成形阶段自动化,以合成鲁棒的控制器,该控制器即使在存在比最初假定的不确定性更大的不确定性的情况下,也可以承担精确的工厂不确定性量,并且可以确保在整个设计频率范围内的鲁棒稳定性和跟踪性能指标之间进行适当的权衡。本文采用PSO技术对控制器进行自动调整,与手动图形化技术相比,可以大大减少计算量。还证明了这种方法不仅可以自动执行环路整形,而且可以提高设计质量,最有用的是,可以通过定量优化的PID控制器来提高性能。

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