On-line dynamic optimization and control strategy for improving the performance of batch reactors

No === Since batch reactors are generally applied to produce a wide variety of specialty products, there is a great deal of interest to enhance batch operation to achieve high quality and purity product while minimizing the conversion of undesired by-product. The use of process optimization in the c...

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Main Authors: Mujtaba, Iqbal M., Arpornwichanop, A., Kittisupakorn, P.
Language:en
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/10454/3118
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spelling ndltd-BRADFORD-oai-bradscholars.brad.ac.uk-10454-31182019-08-31T03:02:20Z On-line dynamic optimization and control strategy for improving the performance of batch reactors Mujtaba, Iqbal M. Arpornwichanop, A. Kittisupakorn, P. Robust control Exothermic reaction Algorithm Modelling Non-linear model State variable Klaman filter Reaction product Purity Reactor Batchwise Optimisation No Since batch reactors are generally applied to produce a wide variety of specialty products, there is a great deal of interest to enhance batch operation to achieve high quality and purity product while minimizing the conversion of undesired by-product. The use of process optimization in the control of batch reactors presents a useful tool for operating batch reactors efficiently and optimally. In this work, we develop an approach, based on an on-line dynamic optimization strategy, to modify optimal temperature set point profile for batch reactors. Two different optimization problems concerning batch operation: maximization of product concentration and minimization of batch time, are formulated and solved using a sequential optimization approach. An Extended Kalman Filter (EKF) is incorporated into the proposed approach in order to update current states from their delayed measurement and to estimate unmeasurable state variables. A nonlinear model-based controller: generic model control algorithm (GMC) is applied to drive the temperature of the batch reactor to follow the desired profile. A batch reactor with complex exothermic reaction scheme is used to demonstrate the effectiveness of the proposed approach. The simulation results indicate that with the proposed strategy, large improvement in batch reactor performance, in term of the amount of a desired product and batch operation time, can be achieved compared to the method where the optimal temperature set point is pre-determined. 2009-07-27T09:30:52Z 2009-07-27T09:30:52Z 2005 Article No full-text available in the repository Mujtaba, I.M., Arpornwichanop, A. and Kittisupakorn, P. (2002). On-line dynamic optimization and control strategy for improving the performance of batch reactors. Chemical Engineering and Processing. Vol. 44, No. 1, pp. 101-114. http://hdl.handle.net/10454/3118 en http://dx.doi.org/10.1016/j.cep.2004.04.010
collection NDLTD
language en
sources NDLTD
topic Robust control
Exothermic reaction
Algorithm
Modelling
Non-linear model
State variable
Klaman filter
Reaction product
Purity
Reactor
Batchwise
Optimisation
spellingShingle Robust control
Exothermic reaction
Algorithm
Modelling
Non-linear model
State variable
Klaman filter
Reaction product
Purity
Reactor
Batchwise
Optimisation
Mujtaba, Iqbal M.
Arpornwichanop, A.
Kittisupakorn, P.
On-line dynamic optimization and control strategy for improving the performance of batch reactors
description No === Since batch reactors are generally applied to produce a wide variety of specialty products, there is a great deal of interest to enhance batch operation to achieve high quality and purity product while minimizing the conversion of undesired by-product. The use of process optimization in the control of batch reactors presents a useful tool for operating batch reactors efficiently and optimally. In this work, we develop an approach, based on an on-line dynamic optimization strategy, to modify optimal temperature set point profile for batch reactors. Two different optimization problems concerning batch operation: maximization of product concentration and minimization of batch time, are formulated and solved using a sequential optimization approach. An Extended Kalman Filter (EKF) is incorporated into the proposed approach in order to update current states from their delayed measurement and to estimate unmeasurable state variables. A nonlinear model-based controller: generic model control algorithm (GMC) is applied to drive the temperature of the batch reactor to follow the desired profile. A batch reactor with complex exothermic reaction scheme is used to demonstrate the effectiveness of the proposed approach. The simulation results indicate that with the proposed strategy, large improvement in batch reactor performance, in term of the amount of a desired product and batch operation time, can be achieved compared to the method where the optimal temperature set point is pre-determined.
author Mujtaba, Iqbal M.
Arpornwichanop, A.
Kittisupakorn, P.
author_facet Mujtaba, Iqbal M.
Arpornwichanop, A.
Kittisupakorn, P.
author_sort Mujtaba, Iqbal M.
title On-line dynamic optimization and control strategy for improving the performance of batch reactors
title_short On-line dynamic optimization and control strategy for improving the performance of batch reactors
title_full On-line dynamic optimization and control strategy for improving the performance of batch reactors
title_fullStr On-line dynamic optimization and control strategy for improving the performance of batch reactors
title_full_unstemmed On-line dynamic optimization and control strategy for improving the performance of batch reactors
title_sort on-line dynamic optimization and control strategy for improving the performance of batch reactors
publishDate 2009
url http://hdl.handle.net/10454/3118
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AT arpornwichanopa onlinedynamicoptimizationandcontrolstrategyforimprovingtheperformanceofbatchreactors
AT kittisupakornp onlinedynamicoptimizationandcontrolstrategyforimprovingtheperformanceofbatchreactors
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