Optimal tuning rules for an absolutely stable nonlinear PI controller with a practical application

Rúul Brenes Astorga, Mercedes Chacón Vásquez
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Abstract

Tuning nonlinear controllers which can be easily implemented in real-time applications is a challenging task since stability in the controlled loop has to be guaranteed. In this work, a set of new tuning rules for nonlinear PI controllers applied to first-order plus dead time systems is presented. The design method guarantees the asymptotic stability of the control system while providing optimal performance. Moreover, the tuning rules offer good robustness in the presence of process variations and disturbance. This controller is easy to implement and the efficacy of the method is shown through various simulations. Furthermore, the real-time implementation of the tuning rule on a control loop for an airflow process is shown.
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绝对稳定非线性PI控制器的最优整定规则及实际应用
由于必须保证被控回路的稳定性,因此在实时应用中容易实现的非线性控制器的整定是一项具有挑战性的任务。本文提出了一套适用于一阶加死区系统的非线性PI控制器的新整定规则。该设计方法在提供最优性能的同时保证了控制系统的渐近稳定。此外,在存在过程变化和干扰的情况下,该调谐规则具有良好的鲁棒性。该控制器易于实现,并通过各种仿真验证了该方法的有效性。此外,还给出了该调谐规则在气流过程控制回路上的实时实现。
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