A unified ensemble of surrogates with global and local measures for global metamodelling
Surrogate models are widely used in engineering design and optimization to substitute computationally expensive simulations for efficient approximation of system behaviours. However, since actual system behaviours are usually not known a priori, it is very challenging to select the most appropriate...
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| Published in | Engineering optimization Vol. 53; no. 3; pp. 474 - 495 |
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| Main Authors | , , , , |
| Format | Journal Article |
| Language | English |
| Published |
Abingdon
Taylor & Francis
04.03.2021
Taylor & Francis Ltd |
| Subjects | |
| Online Access | Get full text |
| ISSN | 0305-215X 1026-745X 1029-0273 1029-0273 |
| DOI | 10.1080/0305215X.2020.1739280 |
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| Abstract | Surrogate models are widely used in engineering design and optimization to substitute computationally expensive simulations for efficient approximation of system behaviours. However, since actual system behaviours are usually not known a priori, it is very challenging to select the most appropriate surrogate model for a specific application. To tackle this, ensemble models that combine different surrogate models have been developed based on global measures and local measures respectively. This article proposes a novel ensemble of surrogates to take advantage of both global and local measures, and a unified strategy is conceived over the entire design space with proper trade-off between these two measures. The effectiveness of the proposed model is tested with 38 mathematical problems and an engineering optimization example. It is concluded that the proposed model has superior accuracy while keeping comparable robustness and efficiency with other ensemble models. The proposed model is also extended to non-uniform experimental design.z |
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| AbstractList | Surrogate models are widely used in engineering design and optimization to substitute computationally expensive simulations for efficient approximation of system behaviours. However, since actual system behaviours are usually not known a priori, it is very challenging to select the most appropriate surrogate model for a specific application. To tackle this, ensemble models that combine different surrogate models have been developed based on global measures and local measures respectively. This article proposes a novel ensemble of surrogates to take advantage of both global and local measures, and a unified strategy is conceived over the entire design space with proper trade-off between these two measures. The effectiveness of the proposed model is tested with 38 mathematical problems and an engineering optimization example. It is concluded that the proposed model has superior accuracy while keeping comparable robustness and efficiency with other ensemble models. The proposed model is also extended to non-uniform experimental design.z |
| Author | Qiu, Jiajia Zhang, Jian Wang, Xiaomei Yue, Xinxin Zhang, Muyu |
| Author_xml | – sequence: 1 givenname: Jian orcidid: 0000-0002-7497-0646 surname: Zhang fullname: Zhang, Jian email: jianzhang@ujs.edu.cn organization: Department of Mechanics and Engineering Science, Jiangsu University – sequence: 2 givenname: Xinxin orcidid: 0000-0003-0873-5231 surname: Yue fullname: Yue, Xinxin organization: Department of Mechanics and Engineering Science, Jiangsu University – sequence: 3 givenname: Jiajia surname: Qiu fullname: Qiu, Jiajia email: chewjia@163.com organization: Department of Mechanics and Engineering Science, Jiangsu University – sequence: 4 givenname: Muyu surname: Zhang fullname: Zhang, Muyu email: muyu@ujs.edu.cn organization: Department of Mechanics and Engineering Science, Jiangsu University – sequence: 5 givenname: Xiaomei surname: Wang fullname: Wang, Xiaomei organization: Department of Ocean Engineering, Tianjin University |
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| SubjectTerms | Design engineering Design of experiments Design optimization ensemble global measure local measure Mathematical problems Metamodels Model accuracy Model testing model updating Robustness (mathematics) Surrogate model |
| Title | A unified ensemble of surrogates with global and local measures for global metamodelling |
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