Genetic model reference adaptive control of shell heavy oil fractionator

D. Araromi, Aminah Abolore Sulayman, Olajide Olukayode Ajala
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Abstract

Fractionators are characterised by high nonlinear dynamic behaviour, strong loop interactions and model uncertainties. Relative gain array (RGA) was used to determine the level of loop interaction. Dynamic decoupler was used to remove the interactions which were obtained using feed-forward design technique. A feedback control system is designed for the dynamic decoupled plant using Ziegler-Nichols tuned proportional integral (PI) controller. A genetic model reference adaptive controller (GMRAC) is designed to control the fractionator using a second order reference model and adaptation mechanism based on genetic algorithm (GA). Genetic algorithm uses real-coded data generation for optimisation. Comparison is made with the PI controller. Performance indices were based on settling time, rise time and overshoot.
壳质稠油分馏塔遗传模型参考自适应控制
分馏器具有高度非线性动态特性、强回路相互作用和模型不确定性等特点。相对增益阵列(RGA)用于确定环路相互作用的水平。采用动态解耦器消除前馈设计技术得到的相互作用。采用Ziegler-Nichols调谐比例积分(PI)控制器设计了动态解耦对象的反馈控制系统。采用二阶参考模型和基于遗传算法的自适应机制,设计了遗传模型参考自适应控制器(GMRAC)。遗传算法采用实数编码数据生成进行优化。并与PI控制器进行了比较。性能指标基于沉降时间、上升时间和超调时间。
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