首页> 外文会议>The proceedings of the eighth (2009) ISOPE ocean mining (amp; gas hydrates) symposium (ISOPE OMS-2009) >Method of Metamodel-based Multidisciplinary Design Optimization for Development of a Test Miner
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Method of Metamodel-based Multidisciplinary Design Optimization for Development of a Test Miner

机译:基于元模型的多学科设计优化方法开发矿工

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A deep-ocean test miner has not only coupled relationship between component systems, but also various design requirements of each system to accomplish the specified multi-tasks. To meet the multiobjectives of the complex system, multidisciplinary design optimization (MDO) is performed. Metamodels such as kriging model and response surface model are employed to reduce computational costs for MDO and to facilitate the automation and integration of component systems in a design framework. After verifying accuracies of metamodels, metamodel-based MDO for a deep-ocean test miner is formulated and performed. Finally, results and advantages of the proposed design methodology are discussed.
机译:一个深海测试矿工不仅具有组件系统之间的耦合关系,而且还具有每个系统的各种设计要求,以完成指定的多任务。为了满足复杂系统的多目标,执行了多学科设计优化(MDO)。使用诸如克里金模型和响应面模型之类的元模型来降低MDO的计算成本,并促进组件系统在设计框架中的自动化和集成。在验证了元模型的准确性之后,制定并执行了用于深海测试矿工的基于元模型的MDO。最后,讨论了所提出的设计方法的结果和优点。

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