Adaptive relay based identification and control of Hammerstein-type nonlinear processes

U. Mehta, S. Majhi
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引用次数: 1

Abstract

This paper presents a very simple and effective identification and control method for Hammerstein type nonlinear processes. Generally, a nonlinear process possessing static nonlinearity experiences an asymmetrical limit cycle output. During the relay feedback test, the relay height is adjusted such that the output becomes symmetrical. The static nonlinearity is identified from a single test and then its inverse function is used to nullify static nonlinearity in the process. Thereafter, a linear process model is identified and subsequently a linear PID controller is designed. Finally, the PID controller along with the inverse nonlinear function yields a simple nonlinear PID controller that is capable of controlling the nonlinear process effectively. The usefulness of proposed identification and control strategy is illustrated by two simulation examples.
基于自适应继电器的hammerstein型非线性过程辨识与控制
本文提出了一种简单有效的Hammerstein型非线性过程辨识与控制方法。一般来说,具有静态非线性的非线性过程具有不对称的极限环输出。在继电器反馈测试时,调整继电器的高度,使输出变得对称。从单次试验中识别出静态非线性,然后利用其反函数消除过程中的静态非线性。然后,确定线性过程模型,然后设计线性PID控制器。最后,将PID控制器与逆非线性函数结合,得到一个简单的非线性PID控制器,能够有效地控制非线性过程。通过两个仿真实例说明了所提出的识别和控制策略的有效性。
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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