Robust-Optimal Active Vibration Control for the Uncertain Flexible Mechanical Systems Possessing Integrity via Genetic Algorithm

碩士 === 國立高雄應用科技大學 === 機械與精密工程研究所 === 94 === In this paper, a robust-optimal control approach is proposed to treat the vibration control (or active vibration suppression) problem of flexible mechanical systems under mode truncation, linear time varying parameter uncertainties in both the controlled a...

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Main Authors: Chien-Jyh Chen, 陳建志
Other Authors: Shinn-Horng Chen
Format: Others
Language:zh-TW
Published: 2006
Online Access:http://ndltd.ncl.edu.tw/handle/12277254924011793691
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spelling ndltd-TW-094KUAS06930152016-06-01T04:14:44Z http://ndltd.ncl.edu.tw/handle/12277254924011793691 Robust-Optimal Active Vibration Control for the Uncertain Flexible Mechanical Systems Possessing Integrity via Genetic Algorithm 具有完整性設計之不確定撓性機械系統的強健-最佳主動式振動控制 Chien-Jyh Chen 陳建志 碩士 國立高雄應用科技大學 機械與精密工程研究所 94 In this paper, a robust-optimal control approach is proposed to treat the vibration control (or active vibration suppression) problem of flexible mechanical systems under mode truncation, linear time varying parameter uncertainties in both the controlled and residual parts, feedback gain perturbations, estimator gain perturbations and partial actuator failures. A sufficient condition is proposed to ensure that the flexible mechanical systems with time-varying structured parameter uncertainties are asymptotically stable against partial actuator failures. Systems which have such a property are said to be possess integrity, and this is an inherent property of MIMO systems. Based on the robust stability constraint and the minimization of a defined performance, a hybrid Taguchi-genetic algorithm (HTGA) is applied to solve the optimal state feedback controller and observer design problem of uncertain flexible mechanical systems. A design example of a flexible rotor system is given to demonstrate the applicability of the proposed approach. It’s shown that the proposed approach can obtain satisfactory results. Shinn-Horng Chen 陳信宏 2006 學位論文 ; thesis 48 zh-TW
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description 碩士 === 國立高雄應用科技大學 === 機械與精密工程研究所 === 94 === In this paper, a robust-optimal control approach is proposed to treat the vibration control (or active vibration suppression) problem of flexible mechanical systems under mode truncation, linear time varying parameter uncertainties in both the controlled and residual parts, feedback gain perturbations, estimator gain perturbations and partial actuator failures. A sufficient condition is proposed to ensure that the flexible mechanical systems with time-varying structured parameter uncertainties are asymptotically stable against partial actuator failures. Systems which have such a property are said to be possess integrity, and this is an inherent property of MIMO systems. Based on the robust stability constraint and the minimization of a defined performance, a hybrid Taguchi-genetic algorithm (HTGA) is applied to solve the optimal state feedback controller and observer design problem of uncertain flexible mechanical systems. A design example of a flexible rotor system is given to demonstrate the applicability of the proposed approach. It’s shown that the proposed approach can obtain satisfactory results.
author2 Shinn-Horng Chen
author_facet Shinn-Horng Chen
Chien-Jyh Chen
陳建志
author Chien-Jyh Chen
陳建志
spellingShingle Chien-Jyh Chen
陳建志
Robust-Optimal Active Vibration Control for the Uncertain Flexible Mechanical Systems Possessing Integrity via Genetic Algorithm
author_sort Chien-Jyh Chen
title Robust-Optimal Active Vibration Control for the Uncertain Flexible Mechanical Systems Possessing Integrity via Genetic Algorithm
title_short Robust-Optimal Active Vibration Control for the Uncertain Flexible Mechanical Systems Possessing Integrity via Genetic Algorithm
title_full Robust-Optimal Active Vibration Control for the Uncertain Flexible Mechanical Systems Possessing Integrity via Genetic Algorithm
title_fullStr Robust-Optimal Active Vibration Control for the Uncertain Flexible Mechanical Systems Possessing Integrity via Genetic Algorithm
title_full_unstemmed Robust-Optimal Active Vibration Control for the Uncertain Flexible Mechanical Systems Possessing Integrity via Genetic Algorithm
title_sort robust-optimal active vibration control for the uncertain flexible mechanical systems possessing integrity via genetic algorithm
publishDate 2006
url http://ndltd.ncl.edu.tw/handle/12277254924011793691
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