ON THE DESIGN OF ROBUST CONTROL SYSTEMS FOR DISTILLATION COLUMNS
Muhammad Nazmul Karim, Gordon K. F. Lee
Abstract
Muhammad Nazmul Karim, Gordon K. F. Lee
Abstract
The distillation column dynamics is very nonlinear, especially at high purity. Multivariable control system designs, which are essentially linear, may not be able to perform well at different operating conditions. This paper looks at three different multivariable design techniques—decoupling control, optimal state feedback and pole assignment as applied to distillation column control. Robustness of these techniques are analyzed by looking at the performance of these controllers at different operating conditions. Some interesting results are obtained.
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The distillation column dynamics is very nonlinear, especially at high purity. Multivariable control system designs, which are essentially linear, may not be able to perform well at different operating conditions. This paper looks at three different multivariable design techniques—decoupling control, optimal state feedback and pole assignment as applied to distillation column control. Robustness of these techniques are analyzed by looking at the performance of these controllers at different operating conditions. Some interesting results are obtained.
Key concepts: Multivariable calculus, Fractionating column, Distillation, Decoupling (probability), Control theory (sociology), Robustness (evolution), Nonlinear system, Control engineering