A comparison between different robust optimum design approaches: Application to tuned mass dampers
This paper is focused on the comparison between different approaches in structural optimization. More precisely, the conventional deterministic optimum design, based on the assumption that the only source of uncertainty concerns the forcing input, is compared to robust single-objective and multi-obj...
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| Published in: | Probabilistic engineering mechanics Vol. 25; no. 1; pp. 108 - 118 |
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| Main Authors: | , , |
| Format: | Journal Article |
| Language: | English |
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Oxford
Elsevier Ltd
2010
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| ISSN: | 0266-8920, 1878-4275 |
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| Abstract | This paper is focused on the comparison between different approaches in structural optimization. More precisely, the conventional deterministic optimum design, based on the assumption that the only source of uncertainty concerns the forcing input, is compared to robust single-objective and multi-objective optimum design methods.
The analysis is developed by considering as case of study a single-degree-of-freedom system with uncertain parameters, subject to random vibrations and equipped with a tuned mass damper device (TMD). The optimization problem concerns the selection of TMD mechanical characteristics able to enlarge the efficiency of the strategy of vibration reduction.
Results demonstrate the importance of performing a robust optimum design and show that the multi-objective robust design methodology provides a significant improvement in performance stability, giving a better control of the design solution choice. |
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| AbstractList | This paper is focused on the comparison between different approaches in structural optimization. More precisely, the conventional deterministic optimum design, based on the assumption that the only source of uncertainty concerns the forcing input, is compared to robust single-objective and multi-objective optimum design methods. The analysis is developed by considering as case of study a single-degree-of-freedom system with uncertain parameters, subject to random vibrations and equipped with a tuned mass damper device (TMD). The optimization problem concerns the selection of TMD mechanical characteristics able to enlarge the efficiency of the strategy of vibration reduction. Results demonstrate the importance of performing a robust optimum design and show that the multi-objective robust design methodology provides a significant improvement in performance stability, giving a better control of the design solution choice. This paper is focused on the comparison between different approaches in structural optimization. More precisely, the conventional deterministic optimum design, based on the assumption that the only source of uncertainty concerns the forcing input, is compared to robust single-objective and multi-objective optimum design methods. The analysis is developed by considering as case of study a single-degree-of-freedom system with uncertain parameters, subject to random vibrations and equipped with a tuned mass damper device (TMD). The optimization problem concerns the selection of TMD mechanical characteristics able to enlarge the efficiency of the strategy of vibration reduction. Results demonstrate the importance of performing a robust optimum design and show that the multi-objective robust design methodology provides a significant improvement in performance stability, giving a better control of the design solution choice. |
| Author | Marano, Giuseppe Carlo Sgobba, Sara Greco, Rita |
| Author_xml | – sequence: 1 givenname: Giuseppe Carlo surname: Marano fullname: Marano, Giuseppe Carlo organization: Department of Environmental Engineering and Sustainable Development, Technical University of Bari, viale del Turismo 10 - 74100 Taranto, Italy – sequence: 2 givenname: Rita surname: Greco fullname: Greco, Rita organization: Department of Civil Engineering and Architecture, Technical University of Bari, via Orabona 4 - 70125 Bari, Italy – sequence: 3 givenname: Sara surname: Sgobba fullname: Sgobba, Sara email: s.sgobba@poliba.it organization: Department of Environmental Engineering and Sustainable Development, Technical University of Bari, viale del Turismo 10 - 74100 Taranto, Italy |
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| Keywords | Genetic algorithm Multi-objective optimization problem Tuned mass dampers Stochastic mechanics Lyapunov equation Robust design Probabilistic approach Multiobjective programming Lyapunov method Mechanical properties Control synthesis Vibration damper Modeling Tuning Optimization Spring mass system Engineering design Uncertain system Vibration control Reliability Deterministic approach Random vibration Structural analysis Lyapunov function |
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| SubjectTerms | Applied sciences Building technical equipments Buildings Buildings. Public works Dampers Design engineering Exact sciences and technology Expansion Fundamental areas of phenomenology (including applications) Genetic algorithm Lyapunov equation Multi-objective optimization problem Optimization Physics Probability theory Robust design Solid mechanics Stability Static elasticity (thermoelasticity...) Stochastic mechanics Strategy Structural and continuum mechanics Tuned mass dampers Vibration Vibration, mechanical wave, dynamic stability (aeroelasticity, vibration control...) |
| Title | A comparison between different robust optimum design approaches: Application to tuned mass dampers |
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