Equivalent Models and Sliding Mode Stabilization of Cultivation Processes

In the paper a control design and stabilization of cultivation processes is presented. The control is based on an enlarged Wang-Monod-Yerusalimsky kinetic model and their restricted Monod-Wang and Monod forms.

Bibliographic Details
Main Author: Pavlov Y.
Format: Article
Language:English
Published: Academic Publishing House 2009-12-01
Series:Bioautomation
Subjects:
Online Access:http://www.clbme.bas.bg/bioautomation/2009/vol_13.4/files/13.4_4.03.pdf
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spelling doaj-d35e222a2bb146d4a7adea64e82257df2020-11-25T03:18:20ZengAcademic Publishing HouseBioautomation1313-261X1312-451X2009-12-01134185196Equivalent Models and Sliding Mode Stabilization of Cultivation ProcessesPavlov Y.In the paper a control design and stabilization of cultivation processes is presented. The control is based on an enlarged Wang-Monod-Yerusalimsky kinetic model and their restricted Monod-Wang and Monod forms. http://www.clbme.bas.bg/bioautomation/2009/vol_13.4/files/13.4_4.03.pdfFed-batchYerusalimsky modelMonod kineticEquivalent modelsBrunovsky normal formSliding mode control
collection DOAJ
language English
format Article
sources DOAJ
author Pavlov Y.
spellingShingle Pavlov Y.
Equivalent Models and Sliding Mode Stabilization of Cultivation Processes
Bioautomation
Fed-batch
Yerusalimsky model
Monod kinetic
Equivalent models
Brunovsky normal form
Sliding mode control
author_facet Pavlov Y.
author_sort Pavlov Y.
title Equivalent Models and Sliding Mode Stabilization of Cultivation Processes
title_short Equivalent Models and Sliding Mode Stabilization of Cultivation Processes
title_full Equivalent Models and Sliding Mode Stabilization of Cultivation Processes
title_fullStr Equivalent Models and Sliding Mode Stabilization of Cultivation Processes
title_full_unstemmed Equivalent Models and Sliding Mode Stabilization of Cultivation Processes
title_sort equivalent models and sliding mode stabilization of cultivation processes
publisher Academic Publishing House
series Bioautomation
issn 1313-261X
1312-451X
publishDate 2009-12-01
description In the paper a control design and stabilization of cultivation processes is presented. The control is based on an enlarged Wang-Monod-Yerusalimsky kinetic model and their restricted Monod-Wang and Monod forms.
topic Fed-batch
Yerusalimsky model
Monod kinetic
Equivalent models
Brunovsky normal form
Sliding mode control
url http://www.clbme.bas.bg/bioautomation/2009/vol_13.4/files/13.4_4.03.pdf
work_keys_str_mv AT pavlovy equivalentmodelsandslidingmodestabilizationofcultivationprocesses
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