Blowdown wind tunnel control using an adaptive fuzzy PI controller

The paper presents an approach towards the control of a supersonic blowdown wind tunnel plant (as evidenced by experimental data collected from “INCAS Supersonic Blowdown Wind Tunnel”) using a PI type controller. The key to maintain the imposed experimental conditions is the control of the air flow...

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Main Author: Corneliu Andrei NAE
Format: Article
Language:English
Published: National Institute for Aerospace Research “Elie Carafoli” - INCAS 2013-09-01
Series:INCAS Bulletin
Subjects:
Online Access:http://bulletin.incas.ro/files/nae_c_a__v5_iss_3_full.pdf
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author Corneliu Andrei NAE
author_facet Corneliu Andrei NAE
author_sort Corneliu Andrei NAE
collection DOAJ
description The paper presents an approach towards the control of a supersonic blowdown wind tunnel plant (as evidenced by experimental data collected from “INCAS Supersonic Blowdown Wind Tunnel”) using a PI type controller. The key to maintain the imposed experimental conditions is the control of the air flow using the control valve of the plant. A proposed mathematical model based on the control valve will be analyzed using the PI controller. This control scheme will be validated using experimental data collected from real test cases. In order to improve the control performances an adaptive fuzzy PI controller will be implemented in SIMULINK in the present paper. The major objective is to reduce the transient regimes and the global reduction of the start-up loads on the models during this phase.
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last_indexed 2024-12-13T05:46:22Z
publishDate 2013-09-01
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spelling doaj.art-62acddea06e64151b1c924a5c30aa64b2022-12-21T23:57:39ZengNational Institute for Aerospace Research “Elie Carafoli” - INCASINCAS Bulletin2066-82012247-45282013-09-0153899810.13111/2066-8201.2013.5.3.10Blowdown wind tunnel control using an adaptive fuzzy PI controllerCorneliu Andrei NAEThe paper presents an approach towards the control of a supersonic blowdown wind tunnel plant (as evidenced by experimental data collected from “INCAS Supersonic Blowdown Wind Tunnel”) using a PI type controller. The key to maintain the imposed experimental conditions is the control of the air flow using the control valve of the plant. A proposed mathematical model based on the control valve will be analyzed using the PI controller. This control scheme will be validated using experimental data collected from real test cases. In order to improve the control performances an adaptive fuzzy PI controller will be implemented in SIMULINK in the present paper. The major objective is to reduce the transient regimes and the global reduction of the start-up loads on the models during this phase.http://bulletin.incas.ro/files/nae_c_a__v5_iss_3_full.pdfWind tunnel operationPI controllerfuzzy PI controller
spellingShingle Corneliu Andrei NAE
Blowdown wind tunnel control using an adaptive fuzzy PI controller
INCAS Bulletin
Wind tunnel operation
PI controller
fuzzy PI controller
title Blowdown wind tunnel control using an adaptive fuzzy PI controller
title_full Blowdown wind tunnel control using an adaptive fuzzy PI controller
title_fullStr Blowdown wind tunnel control using an adaptive fuzzy PI controller
title_full_unstemmed Blowdown wind tunnel control using an adaptive fuzzy PI controller
title_short Blowdown wind tunnel control using an adaptive fuzzy PI controller
title_sort blowdown wind tunnel control using an adaptive fuzzy pi controller
topic Wind tunnel operation
PI controller
fuzzy PI controller
url http://bulletin.incas.ro/files/nae_c_a__v5_iss_3_full.pdf
work_keys_str_mv AT corneliuandreinae blowdownwindtunnelcontrolusinganadaptivefuzzypicontroller