Robust and adaptive control design of a drilling rig during the operating modes

Oil well drilling towers have different operating modes during a real operation, like drilling, tripping, and reaming. Each mode involves certain external disturbances and uncertainties. In this study, using the nonlinear model for the modes of the operation, robust and/or adaptive control systems a...

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Main Authors: Amir Nobahar Sadeghi, Kutluk Bilge Arıkan, Mehmet Efe Özbek, Besim Baranoğlu
Format: Article
Language:English
Published: SAGE Publishing 2019-06-01
Series:Measurement + Control
Online Access:https://doi.org/10.1177/0020294019836121
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spelling doaj-096215a8a64344dc9768a899ef69e1ac2020-11-25T03:11:30ZengSAGE PublishingMeasurement + Control0020-29402019-06-015210.1177/0020294019836121Robust and adaptive control design of a drilling rig during the operating modesAmir Nobahar Sadeghi0Kutluk Bilge Arıkan1Mehmet Efe Özbek2Besim Baranoğlu3Electrical and Electronics Engineering Department, Atilim University, Ankara, TurkeyMechanical Engineering Department, TED University, Ankara, TurkeyElectrical and Electronics Engineering Department, Atilim University, Ankara, TurkeyManufacturing Engineering Department, Atilim University, Ankara, TurkeyOil well drilling towers have different operating modes during a real operation, like drilling, tripping, and reaming. Each mode involves certain external disturbances and uncertainties. In this study, using the nonlinear model for the modes of the operation, robust and/or adaptive control systems are designed based on the models. These control strategies include five types of controllers: cascaded proportional–integral–derivative, active disturbance rejection controller, loop shaping, feedback error learning, and sliding mode controller. The study presents the design process of these controllers and evaluates the performances of the proposed control systems to track the reference signal and reject the uncertain forces including the parametric uncertainties and the external disturbances. This comparison is based on the mathematical performance measures and energy consumption. In addition, three architectures are presented to control the weight on bit during drilling process, and also to maintain a preset constant weight on bit, two control approaches are designed and presented.https://doi.org/10.1177/0020294019836121
collection DOAJ
language English
format Article
sources DOAJ
author Amir Nobahar Sadeghi
Kutluk Bilge Arıkan
Mehmet Efe Özbek
Besim Baranoğlu
spellingShingle Amir Nobahar Sadeghi
Kutluk Bilge Arıkan
Mehmet Efe Özbek
Besim Baranoğlu
Robust and adaptive control design of a drilling rig during the operating modes
Measurement + Control
author_facet Amir Nobahar Sadeghi
Kutluk Bilge Arıkan
Mehmet Efe Özbek
Besim Baranoğlu
author_sort Amir Nobahar Sadeghi
title Robust and adaptive control design of a drilling rig during the operating modes
title_short Robust and adaptive control design of a drilling rig during the operating modes
title_full Robust and adaptive control design of a drilling rig during the operating modes
title_fullStr Robust and adaptive control design of a drilling rig during the operating modes
title_full_unstemmed Robust and adaptive control design of a drilling rig during the operating modes
title_sort robust and adaptive control design of a drilling rig during the operating modes
publisher SAGE Publishing
series Measurement + Control
issn 0020-2940
publishDate 2019-06-01
description Oil well drilling towers have different operating modes during a real operation, like drilling, tripping, and reaming. Each mode involves certain external disturbances and uncertainties. In this study, using the nonlinear model for the modes of the operation, robust and/or adaptive control systems are designed based on the models. These control strategies include five types of controllers: cascaded proportional–integral–derivative, active disturbance rejection controller, loop shaping, feedback error learning, and sliding mode controller. The study presents the design process of these controllers and evaluates the performances of the proposed control systems to track the reference signal and reject the uncertain forces including the parametric uncertainties and the external disturbances. This comparison is based on the mathematical performance measures and energy consumption. In addition, three architectures are presented to control the weight on bit during drilling process, and also to maintain a preset constant weight on bit, two control approaches are designed and presented.
url https://doi.org/10.1177/0020294019836121
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AT mehmetefeozbek robustandadaptivecontroldesignofadrillingrigduringtheoperatingmodes
AT besimbaranoglu robustandadaptivecontroldesignofadrillingrigduringtheoperatingmodes
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