A nonlinear learning control approach for a cement milling process

O. Dagci, M. Efe, O. Kaynak
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引用次数: 14

Abstract

In this paper, a novel parameter tuning strategy for a class of controllers is discussed. The mathematical background of the algorithm is based on variable structure systems theory, which is well known with its robustness to systems having uncertainties and imprecision in the representative model. Since the course of modeling is concerned primarily with the dominant behavior, the nonlinearities existing in the system dynamics, external disturbances and plant-model mismatches require the control engineers to design controllers, which adapt the design parameters to alleviate the stated difficulties. The method introduced in this study is applicable to controller structures, whose outputs are linear in the adjustable parameters. In order to demonstrate the performance of the proposed technique, control of a cement milling circuit is studied with time-varying set values, time-varying plant parameters and a considerable amount of observation noise.
水泥磨粉过程的非线性学习控制方法
本文讨论了一类控制器的参数整定策略。该算法的数学背景是基于变结构系统理论,该理论以其对具有不确定性和不精确的代表性模型的系统的鲁棒性而闻名。由于建模过程主要涉及主导行为,系统动力学中存在的非线性,外部干扰和植物模型不匹配要求控制工程师设计控制器,这些控制器可以调整设计参数以减轻所述困难。该方法适用于输出在可调参数范围内为线性的控制器结构。为了验证该方法的性能,研究了具有时变设定值、时变装置参数和大量观测噪声的水泥磨矿电路的控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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