A Hybrid MPC-PID Control System Design for the Continuous Purification and Processing of Active Pharmaceutical Ingredients

In this work, a hybrid MPC (model predictive control)-PID (proportional-integral-derivative) control system has been designed for the continuous purification and processing framework of active pharmaceutical ingredients (APIs). The specific unit operations associated with the purification and proces...

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Main Authors: Maitraye Sen, Ravendra Singh, Rohit Ramachandran
Format: Article
Language:English
Published: MDPI AG 2014-05-01
Series:Processes
Subjects:
MPC
PID
Online Access:http://www.mdpi.com/2227-9717/2/2/392
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spelling doaj-09ec0ce514414bd383f906fa55cf56d82020-11-24T21:32:35ZengMDPI AGProcesses2227-97172014-05-012239241810.3390/pr2020392pr2020392A Hybrid MPC-PID Control System Design for the Continuous Purification and Processing of Active Pharmaceutical IngredientsMaitraye Sen0Ravendra Singh1Rohit Ramachandran2Department of Chemical and Biochemical Engineering, Rutgers, The State University of New Jersey, Piscataway, NJ 08854, USADepartment of Chemical and Biochemical Engineering, Rutgers, The State University of New Jersey, Piscataway, NJ 08854, USADepartment of Chemical and Biochemical Engineering, Rutgers, The State University of New Jersey, Piscataway, NJ 08854, USAIn this work, a hybrid MPC (model predictive control)-PID (proportional-integral-derivative) control system has been designed for the continuous purification and processing framework of active pharmaceutical ingredients (APIs). The specific unit operations associated with the purification and processing of API have been developed from first-principles and connected in a continuous framework in the form of a flowsheet model. These integrated unit operations are highly interactive along with the presence of process delays. Therefore, a hybrid MPC-PID is a promising alternative to achieve the desired control loop performance as mandated by the regulatory authorities. The integrated flowsheet model has been simulated in gPROMSTM (Process System Enterprise, London, UK). This flowsheet model has been linearized in order to design the control scheme. The ability to track the set point and reject disturbances has been evaluated. A comparative study between the performance of the hybrid MPC-PID and a PID-only control scheme has been presented. The results show that an enhanced control loop performance can be obtained under the hybrid control scheme and demonstrate that such a scheme has high potential in improving the efficiency of pharmaceutical manufacturing operations.http://www.mdpi.com/2227-9717/2/2/392MPCPIDcontinuous processingpowder mixingpharmaceutical manufacturingcrystallization
collection DOAJ
language English
format Article
sources DOAJ
author Maitraye Sen
Ravendra Singh
Rohit Ramachandran
spellingShingle Maitraye Sen
Ravendra Singh
Rohit Ramachandran
A Hybrid MPC-PID Control System Design for the Continuous Purification and Processing of Active Pharmaceutical Ingredients
Processes
MPC
PID
continuous processing
powder mixing
pharmaceutical manufacturing
crystallization
author_facet Maitraye Sen
Ravendra Singh
Rohit Ramachandran
author_sort Maitraye Sen
title A Hybrid MPC-PID Control System Design for the Continuous Purification and Processing of Active Pharmaceutical Ingredients
title_short A Hybrid MPC-PID Control System Design for the Continuous Purification and Processing of Active Pharmaceutical Ingredients
title_full A Hybrid MPC-PID Control System Design for the Continuous Purification and Processing of Active Pharmaceutical Ingredients
title_fullStr A Hybrid MPC-PID Control System Design for the Continuous Purification and Processing of Active Pharmaceutical Ingredients
title_full_unstemmed A Hybrid MPC-PID Control System Design for the Continuous Purification and Processing of Active Pharmaceutical Ingredients
title_sort hybrid mpc-pid control system design for the continuous purification and processing of active pharmaceutical ingredients
publisher MDPI AG
series Processes
issn 2227-9717
publishDate 2014-05-01
description In this work, a hybrid MPC (model predictive control)-PID (proportional-integral-derivative) control system has been designed for the continuous purification and processing framework of active pharmaceutical ingredients (APIs). The specific unit operations associated with the purification and processing of API have been developed from first-principles and connected in a continuous framework in the form of a flowsheet model. These integrated unit operations are highly interactive along with the presence of process delays. Therefore, a hybrid MPC-PID is a promising alternative to achieve the desired control loop performance as mandated by the regulatory authorities. The integrated flowsheet model has been simulated in gPROMSTM (Process System Enterprise, London, UK). This flowsheet model has been linearized in order to design the control scheme. The ability to track the set point and reject disturbances has been evaluated. A comparative study between the performance of the hybrid MPC-PID and a PID-only control scheme has been presented. The results show that an enhanced control loop performance can be obtained under the hybrid control scheme and demonstrate that such a scheme has high potential in improving the efficiency of pharmaceutical manufacturing operations.
topic MPC
PID
continuous processing
powder mixing
pharmaceutical manufacturing
crystallization
url http://www.mdpi.com/2227-9717/2/2/392
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