A multi-objective memetic algorithm for RBDO and robust design
Product design optimization under model or input variable uncertainty is commonly required, in which robustness and reliability are two important attributes of the design. In structure design, it is critical to maintain the design feasibility (or reliability); while at the same time, to counter manu...
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| Published in: | 2010 Proceedings - Annual Reliability and Maintainability Symposium (RAMS) pp. 1 - 6 |
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| Main Authors: | , |
| Format: | Conference Proceeding |
| Language: | English |
| Published: |
IEEE
01.01.2010
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| Subjects: | |
| ISBN: | 9781424451029, 1424451027 |
| ISSN: | 0149-144X |
| Online Access: | Get full text |
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| Abstract | Product design optimization under model or input variable uncertainty is commonly required, in which robustness and reliability are two important attributes of the design. In structure design, it is critical to maintain the design feasibility (or reliability); while at the same time, to counter manufacturing variations, robust design is employed in order to obtain high product quality. It is necessary, therefore, to establish a multi-objective optimization problem that combines both robustness and reliability considerations, where the product's performance variation and the performance function are simultaneously optimized, subject to probabilistic constraints for design feasibility. Based on the idea of the reliability index and the Most Probable Point (MPP), probabilistic constraints are converted into deterministic constraints. Then an efficient Multi-Objective Memetic Algorithm (MOMA) is presented to minimize robustness and performance value, subject to deterministic constraints. A classical I-beam example with probabilistic constraints illustrating the MOMA concept and applicability is proposed in the paper, the result is a Pareto frontier of robustness and performance value. |
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| AbstractList | Product design optimization under model or input variable uncertainty is commonly required, in which robustness and reliability are two important attributes of the design. In structure design, it is critical to maintain the design feasibility (or reliability); while at the same time, to counter manufacturing variations, robust design is employed in order to obtain high product quality. It is necessary, therefore, to establish a multi-objective optimization problem that combines both robustness and reliability considerations, where the product's performance variation and the performance function are simultaneously optimized, subject to probabilistic constraints for design feasibility. Based on the idea of the reliability index and the Most Probable Point (MPP), probabilistic constraints are converted into deterministic constraints. Then an efficient Multi-Objective Memetic Algorithm (MOMA) is presented to minimize robustness and performance value, subject to deterministic constraints. A classical I-beam example with probabilistic constraints illustrating the MOMA concept and applicability is proposed in the paper, the result is a Pareto frontier of robustness and performance value. |
| Author | Xiaotian Zhuang Rong Pan |
| Author_xml | – sequence: 1 surname: Xiaotian Zhuang fullname: Xiaotian Zhuang email: Xiaotian.Zhuang@asu.edu organization: Arizona State Univ., Tempe, AZ, USA – sequence: 2 surname: Rong Pan fullname: Rong Pan email: Rong.Pan@asu.edu organization: Arizona State Univ., Tempe, AZ, USA |
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| Snippet | Product design optimization under model or input variable uncertainty is commonly required, in which robustness and reliability are two important attributes of... |
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| SubjectTerms | Algorithm design and analysis Constraint optimization Counting circuits Design optimization Input variables Maintenance Manufacturing Memetic Algorithm Multi-Objective Optimization Product design Reliability-Based Design Optimization Robust Design Robustness Uncertainty |
| Title | A multi-objective memetic algorithm for RBDO and robust design |
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