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Tuning of fractional PI controllers for fractional order system models with and without time delays

机译:具有和没有时间延迟的分数阶系统模型的分数PI控制器的调整

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In this paper, a servo control strategy for tuning of fractional order PI (FO-PI) controllers is proposed for fractional order system models with and without time delays. The proposed strategy is based on a reference model, whose open-loop transfer function is given by Bode's ideal transfer function, which provides an infinite gain margin and constant phase margin. To come up with satisfactory tuning parameters of the controller, an iterative optimization method is suggested, based on minimization of a quadratic cost function. This cost function is defined as weighted sum of squares of control input moves and sum of the integral squared error (ISE) between the time response of the reference model and the fractional system with the FO-PI controller. The resulting closed-loop system is shown to exhibit features of robustness to process gain variations and the step responses exhibit iso-damping property. Simulation results are presented and analyzed here to illustrate the effectiveness of the proposed algorithm.
机译:在本文中,针对具有和没有时间延迟的分数阶系统模型,提出了一种用于分数阶PI(FO-PI)控制器调整的伺服控制策略。所提出的策略基于参考模型,该参考模型的开环传递函数由Bode的理想传递函数给出,该理想传递函数提供了无限的增益裕度和恒定的相位裕度。为了给出令人满意的控制器调整参数,在最小化二次成本函数的基础上,提出了一种迭代优化方法。该成本函数定义为控制输入运动的平方和的加权和参考模型与带有FO-PI控制器的分数系统之间的时间响应之间的积分平方误差(ISE)的总和。所得的闭环系统显示出对过程增益变化具有鲁棒性的特征,而阶跃响应则表现出等阻尼特性。仿真结果在此进行了介绍和分析,以说明所提算法的有效性。

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