Dynamic Models of Vacuum-Evaporator Plants for Dairy Industry

The paper studies problems of linearized dynamic models intended for synthesis of automatic temperature control systems and vacuum depth in vacuum evaporators. А single-casing vacuum evaporator plant is considered as an object of automatic control. Disturbance input channels are discerned and transf...

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Main Authors: G. M. Airapetiants, M. M. Kazheunikau
Format: Article
Language:Russian
Published: Belarusian National Technical University 2009-12-01
Series:Izvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika
Online Access:https://energy.bntu.by/jour/article/view/462
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author G. M. Airapetiants
M. M. Kazheunikau
author_facet G. M. Airapetiants
M. M. Kazheunikau
author_sort G. M. Airapetiants
collection DOAJ
description The paper studies problems of linearized dynamic models intended for synthesis of automatic temperature control systems and vacuum depth in vacuum evaporators. А single-casing vacuum evaporator plant is considered as an object of automatic control. Disturbance input channels are discerned and transfer functions permitting to determine laws of temperature and vacuum regulation and optimum parameters for setting automatic regulators used for various operational modes of vacuum-evaporator plants are obtained on the basis of the executed analysis.
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publisher Belarusian National Technical University
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spelling doaj.art-535f7617a13845009d86b68ca83252692023-03-13T07:41:46ZrusBelarusian National Technical UniversityIzvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika1029-74482414-03412009-12-01065363455Dynamic Models of Vacuum-Evaporator Plants for Dairy IndustryG. M. Airapetiants0M. M. Kazheunikau1Могилевский государственный университет продовольствияМогилевский государственный университет продовольствияThe paper studies problems of linearized dynamic models intended for synthesis of automatic temperature control systems and vacuum depth in vacuum evaporators. А single-casing vacuum evaporator plant is considered as an object of automatic control. Disturbance input channels are discerned and transfer functions permitting to determine laws of temperature and vacuum regulation and optimum parameters for setting automatic regulators used for various operational modes of vacuum-evaporator plants are obtained on the basis of the executed analysis.https://energy.bntu.by/jour/article/view/462
spellingShingle G. M. Airapetiants
M. M. Kazheunikau
Dynamic Models of Vacuum-Evaporator Plants for Dairy Industry
Izvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika
title Dynamic Models of Vacuum-Evaporator Plants for Dairy Industry
title_full Dynamic Models of Vacuum-Evaporator Plants for Dairy Industry
title_fullStr Dynamic Models of Vacuum-Evaporator Plants for Dairy Industry
title_full_unstemmed Dynamic Models of Vacuum-Evaporator Plants for Dairy Industry
title_short Dynamic Models of Vacuum-Evaporator Plants for Dairy Industry
title_sort dynamic models of vacuum evaporator plants for dairy industry
url https://energy.bntu.by/jour/article/view/462
work_keys_str_mv AT gmairapetiants dynamicmodelsofvacuumevaporatorplantsfordairyindustry
AT mmkazheunikau dynamicmodelsofvacuumevaporatorplantsfordairyindustry