Control of a Thermal Airflow Process - Part II: Adaptive Self-Tuning Control

Sidney Viana
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Abstract

This article was motivated from a practical work on modeling and control of a time-delayed thermal airflow process using adaptive techniques. The work was divided into two parts: (I) the modeling of the process using system identification methods, with main concerns to the numerical robustness of the identification, and (II) the digital control of the process using adaptive self-tuning control, with main concerns to the adaptation of the controller to changes in the process dynamics. This article concerns the second part of the work. An adaptive self-tuning controller was implemented to improve the performance of the thermal airflow process. At each sampling interval, the process model is updated using an on-line identification strategy developed in the first part of the work. Based on the identification, the controller is self-tuned to compensate for eventual changes in the process parameters. Intentional disturbances were made in the process dynamics in order to evaluate the adaptation performance of the control system.
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热气流过程的控制。第二部分:自适应自调谐控制
本文的灵感来自于使用自适应技术对时滞热气流过程进行建模和控制的实际工作。这项工作分为两部分:(I)使用系统识别方法对过程进行建模,主要关注识别的数值鲁棒性;(II)使用自适应自整定控制对过程进行数字控制,主要关注控制器对过程动力学变化的适应。本文涉及到第二部分的工作。采用自适应自整定控制器来改善热气流过程的性能。在每个采样间隔,使用在第一部分工作中开发的在线识别策略更新过程模型。基于辨识,控制器自调整以补偿过程参数的最终变化。为了评价控制系统的自适应性能,对过程动力学进行了有意扰动。
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