Design of combined robust controller for a pneumatic servo actuator system with uncertainty
In this paper the position control design of a pneumatic servo actuator system using a combined H-inf /QFT technique is presented. First, an H-inf controller is designed to assure robust stability for the system. Particle swarm optimization (PSO) algorithm is used to tune the weighting functions. Th...
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my.upm.eprints.233072018-10-17T08:16:07Z http://psasir.upm.edu.my/id/eprint/23307/ Design of combined robust controller for a pneumatic servo actuator system with uncertainty Mohd Noor, Samsul Bahari Ali, Hazem Ibrahim Marhaban, Mohammad Hamiruce In this paper the position control design of a pneumatic servo actuator system using a combined H-inf /QFT technique is presented. First, an H-inf controller is designed to assure robust stability for the system. Particle swarm optimization (PSO) algorithm is used to tune the weighting functions. This method is used to find the optimal values of weighting functions parameters that lead to obtain an optimal H-inf-controller by minimizing the infinity norm of the transfer function of the nominal closed loop system. The quantitative feedback theory (QFT) is used to enhance the closed loop system performance. A multiplicative unstructured model extracted from the parametric uncertainty is used for control design. Finally, the simulation results are presented and compared with previous work. Academic Journals 2011 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/23307/1/23307.pdf Mohd Noor, Samsul Bahari and Ali, Hazem Ibrahim and Marhaban, Mohammad Hamiruce (2011) Design of combined robust controller for a pneumatic servo actuator system with uncertainty. Scientific Research and Essays, 6 (4). art. no. 12A16B424199. pp. 949-965. ISSN 1992-2248 https://academicjournals.org/journal/SRE/article-abstract/12A16B424199 10.5897/SRE10.1081 |
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In this paper the position control design of a pneumatic servo actuator system using a combined H-inf /QFT technique is presented. First, an H-inf controller is designed to assure robust stability for the system. Particle swarm optimization (PSO) algorithm is used to tune the weighting functions. This method is used to find the optimal values of weighting functions parameters that lead to obtain an optimal H-inf-controller by minimizing the infinity norm of the transfer function of the nominal closed loop system. The quantitative feedback theory (QFT) is used to enhance the closed loop system performance. A multiplicative unstructured model extracted from the parametric uncertainty is used for control design. Finally, the simulation results are presented and compared with previous work. |
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Article |
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Mohd Noor, Samsul Bahari Ali, Hazem Ibrahim Marhaban, Mohammad Hamiruce |
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Mohd Noor, Samsul Bahari Ali, Hazem Ibrahim Marhaban, Mohammad Hamiruce Design of combined robust controller for a pneumatic servo actuator system with uncertainty |
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Mohd Noor, Samsul Bahari Ali, Hazem Ibrahim Marhaban, Mohammad Hamiruce |
author_sort |
Mohd Noor, Samsul Bahari |
title |
Design of combined robust controller for a pneumatic servo actuator system with uncertainty |
title_short |
Design of combined robust controller for a pneumatic servo actuator system with uncertainty |
title_full |
Design of combined robust controller for a pneumatic servo actuator system with uncertainty |
title_fullStr |
Design of combined robust controller for a pneumatic servo actuator system with uncertainty |
title_full_unstemmed |
Design of combined robust controller for a pneumatic servo actuator system with uncertainty |
title_sort |
design of combined robust controller for a pneumatic servo actuator system with uncertainty |
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Academic Journals |
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2011 |
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http://psasir.upm.edu.my/id/eprint/23307/1/23307.pdf http://psasir.upm.edu.my/id/eprint/23307/ https://academicjournals.org/journal/SRE/article-abstract/12A16B424199 |
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