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结合二元精馏模型作为扩展卡尔曼滤波器(EKF)预测器的多组分精馏过程的非线性控制

Nonlinear control of a multicomponent distillation process coupled with a binary distillation model as an EKF predictor.

作者信息

Jana Amiya Kumar, Ganguly Saibal, Samanta Amar Nath

机构信息

Department of Chemical Engineering, Birla Institute of Technology and Science-Pilani, Rajasthan-333 031, India.

出版信息

ISA Trans. 2006 Oct;45(4):575-88. doi: 10.1016/s0019-0578(07)60233-x.

Abstract

The work is devoted to design the globally linearizing control (GLC) strategy for a multicomponent distillation process. The control system is comprised with a nonlinear transformer, a nonlinear closed-loop state estimator [extended Kalman filter (EKF)], and a linear external controller [conventional proportional integral (PI) controller]. The model of a binary distillation column has been used as a state predictor to avoid huge design complexity of the EKF estimator. The binary components are the light key and the heavy key of the multicomponent system. The proposed GLC-EKF (GLC in conjunction with EKF) control algorithm has been compared with the GLC-ROOLE [GLC coupled with reduced-order open-loop estimator (ROOLE)] and the dual-loop PI controller based on set point tracking and disturbance rejection performance. Despite huge process/predictor mismatch, the superiority of the GLC-EKF has been inspected over the GLC-ROOLE control structure.

摘要

这项工作致力于为多组分精馏过程设计全局线性化控制(GLC)策略。该控制系统由一个非线性变换器、一个非线性闭环状态估计器[扩展卡尔曼滤波器(EKF)]和一个线性外部控制器[传统比例积分(PI)控制器]组成。二元精馏塔模型已被用作状态预测器,以避免EKF估计器巨大的设计复杂性。二元组分是多组分系统中的轻关键组分和重关键组分。所提出的GLC-EKF(GLC与EKF相结合)控制算法已与GLC-ROOLE[GLC与降阶开环估计器(ROOLE)相结合]和基于设定值跟踪及抗干扰性能的双环PI控制器进行了比较。尽管过程/预测器存在巨大失配,但已检验了GLC-EKF相对于GLC-ROOLE控制结构的优越性。

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