Adaptive Machine Tool System Regulation

Least effort controller design procedures, for multivariable, machine tool models, are considered. The employment of these regulators for adaptive system analysis is proposed. An approximate relationship between the nonlinear, stochastic process system dynamics and the linear, mid-range model is emp...

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محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: Whalley, R. (author)
مؤلفون آخرون: Abdul-Ameer, A. (author), Ebrahimi, M. (author), El-Shalabi, S. (author)
منشور في: 2009
الوصول للمادة أونلاين:https://bspace.buid.ac.ae/handle/1234/3771
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author Whalley, R.
author2 Abdul-Ameer, A.
Ebrahimi, M.
El-Shalabi, S.
author2_role author
author
author
author_facet Whalley, R.
Abdul-Ameer, A.
Ebrahimi, M.
El-Shalabi, S.
author_role author
dc.creator.none.fl_str_mv Whalley, R.
Abdul-Ameer, A.
Ebrahimi, M.
El-Shalabi, S.
dc.date.none.fl_str_mv 2009
2026-01-28T04:31:58Z
dc.identifier.none.fl_str_mv https://bspace.buid.ac.ae/handle/1234/3771
dc.language.none.fl_str_mv en
dc.title.none.fl_str_mv Adaptive Machine Tool System Regulation
dc.type.none.fl_str_mv Article
description Least effort controller design procedures, for multivariable, machine tool models, are considered. The employment of these regulators for adaptive system analysis is proposed. An approximate relationship between the nonlinear, stochastic process system dynamics and the linear, mid-range model is employed. Model-reference, adaptive, multivariable control is advocated with the model–system error vector augmenting the actuator signals, during the system transient. The amplitude of the model-system uncertainty and the guarantee of closed-loop stability are established as mandatory performance requirements. To illustrate the theoretical procedures outlined, a nonlinear, distributed-lumped parameter model is employed, in a machine tool system application study. An adaptive model-reference control strategy is formulated using a simple, analytical representation for the system. The response of the adaptive system, following input and cutting load disturbances, is computed and the effectiveness of this form of controller is commented upon.
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oai_identifier_str oai:bspace.buid.ac.ae:1234/3771
publishDate 2009
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spelling Adaptive Machine Tool System RegulationWhalley, R.Abdul-Ameer, A.Ebrahimi, M.El-Shalabi, S.Least effort controller design procedures, for multivariable, machine tool models, are considered. The employment of these regulators for adaptive system analysis is proposed. An approximate relationship between the nonlinear, stochastic process system dynamics and the linear, mid-range model is employed. Model-reference, adaptive, multivariable control is advocated with the model–system error vector augmenting the actuator signals, during the system transient. The amplitude of the model-system uncertainty and the guarantee of closed-loop stability are established as mandatory performance requirements. To illustrate the theoretical procedures outlined, a nonlinear, distributed-lumped parameter model is employed, in a machine tool system application study. An adaptive model-reference control strategy is formulated using a simple, analytical representation for the system. The response of the adaptive system, following input and cutting load disturbances, is computed and the effectiveness of this form of controller is commented upon.2026-01-28T04:31:58Z2009Articlehttps://bspace.buid.ac.ae/handle/1234/3771enoai:bspace.buid.ac.ae:1234/37712026-01-28T04:31:59Z
spellingShingle Adaptive Machine Tool System Regulation
Whalley, R.
title Adaptive Machine Tool System Regulation
title_full Adaptive Machine Tool System Regulation
title_fullStr Adaptive Machine Tool System Regulation
title_full_unstemmed Adaptive Machine Tool System Regulation
title_short Adaptive Machine Tool System Regulation
title_sort Adaptive Machine Tool System Regulation
url https://bspace.buid.ac.ae/handle/1234/3771