Efficient Fuzzy Control of a Biochemical Reactor

Fuzzy logic control based on the Takagi–Sugeno inference method has been applied for the yeast alcoholic fermentation running in a continuous-time biochemical reactor in this paper. A type-1 fuzzy PID controller was designed to temperature control in a biochemical reactor. The fuzzy PID controller w...

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Main Authors: Anna Vasickaninová, Monika Bakošová, Juraj Oravec, Michaela Horváthová
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2020-08-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/10956
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spelling doaj-4dfaa96d7cf74dc3a7136c002549d8972021-02-16T11:29:45ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162020-08-018110.3303/CET2081015Efficient Fuzzy Control of a Biochemical ReactorAnna VasickaninováMonika BakošováJuraj OravecMichaela HorváthováFuzzy logic control based on the Takagi–Sugeno inference method has been applied for the yeast alcoholic fermentation running in a continuous-time biochemical reactor in this paper. A type-1 fuzzy PID controller was designed to temperature control in a biochemical reactor. The fuzzy PID controller was also designed using type-2 fuzzy sets. The advantage of the fuzzy control is that it can be used very successfully for control of strongly non-linear processes and processes that are difficult to model because of complicated reaction kinetics. Obtained simulation results confirm this fact. The disadvantage of the fuzzy control design lies in the time-consuming tuning of controllers. The subtractive clustering method was used to identify the rule base. This approach was chosen to minimize the number of rules of the designed fuzzy logic controllers and to simplify the fuzzy controller design. Simulation results confirm that fuzzy PID controllers can assure better performance than conventional PID controllers. Yeast alcoholic fermentation is an exothermic process and the cooling is necessary to maintain the optimal temperature in the reactor. Fuzzy PID control reduces coolant consumption in comparison with conventional PID control and so it assures energy-efficient control of continuous-time alcoholic fermentation. Using type-2 fuzzy sets in the fuzzy PID controller design is very promising as the type-2 fuzzy controller offers even better results than the type-1 fuzzy controller.https://www.cetjournal.it/index.php/cet/article/view/10956
collection DOAJ
language English
format Article
sources DOAJ
author Anna Vasickaninová
Monika Bakošová
Juraj Oravec
Michaela Horváthová
spellingShingle Anna Vasickaninová
Monika Bakošová
Juraj Oravec
Michaela Horváthová
Efficient Fuzzy Control of a Biochemical Reactor
Chemical Engineering Transactions
author_facet Anna Vasickaninová
Monika Bakošová
Juraj Oravec
Michaela Horváthová
author_sort Anna Vasickaninová
title Efficient Fuzzy Control of a Biochemical Reactor
title_short Efficient Fuzzy Control of a Biochemical Reactor
title_full Efficient Fuzzy Control of a Biochemical Reactor
title_fullStr Efficient Fuzzy Control of a Biochemical Reactor
title_full_unstemmed Efficient Fuzzy Control of a Biochemical Reactor
title_sort efficient fuzzy control of a biochemical reactor
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2020-08-01
description Fuzzy logic control based on the Takagi–Sugeno inference method has been applied for the yeast alcoholic fermentation running in a continuous-time biochemical reactor in this paper. A type-1 fuzzy PID controller was designed to temperature control in a biochemical reactor. The fuzzy PID controller was also designed using type-2 fuzzy sets. The advantage of the fuzzy control is that it can be used very successfully for control of strongly non-linear processes and processes that are difficult to model because of complicated reaction kinetics. Obtained simulation results confirm this fact. The disadvantage of the fuzzy control design lies in the time-consuming tuning of controllers. The subtractive clustering method was used to identify the rule base. This approach was chosen to minimize the number of rules of the designed fuzzy logic controllers and to simplify the fuzzy controller design. Simulation results confirm that fuzzy PID controllers can assure better performance than conventional PID controllers. Yeast alcoholic fermentation is an exothermic process and the cooling is necessary to maintain the optimal temperature in the reactor. Fuzzy PID control reduces coolant consumption in comparison with conventional PID control and so it assures energy-efficient control of continuous-time alcoholic fermentation. Using type-2 fuzzy sets in the fuzzy PID controller design is very promising as the type-2 fuzzy controller offers even better results than the type-1 fuzzy controller.
url https://www.cetjournal.it/index.php/cet/article/view/10956
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AT monikabakosova efficientfuzzycontrolofabiochemicalreactor
AT jurajoravec efficientfuzzycontrolofabiochemicalreactor
AT michaelahorvathova efficientfuzzycontrolofabiochemicalreactor
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