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A Variable-Size Local Domain Approach to Computer Model Validation in Design Optimization

机译:设计优化中计算机模型验证的可变局部域方法

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摘要

A common approach to the validation of simulation models focuses on validation throughout the entire design space. A more recent methodology validates designs as they are generated during a simulation-based optimization process. The latter method relies on validating the simulation model in a sequence of local domains. To improve its computational efficiency, this paper proposes an iterative process, where the size and shape of local domains at the current step are determined from a parametric bootstrap methodology involving maximum likelihood estimators of unknown model parameters from the previous step. Validation is carried out in the local domain at each step. The iterative process continues until the local domain does not change from iteration to iteration during the optimization process ensuring that a converged design optimum has been obtained. The proposed methodology is illustrated using a thermal, one-dimensional, linear heat conduction problem in a solid slab with heat flux boundary conditions
机译:验证仿真模型的常用方法集中于整个设计空间的验证。在基于仿真的优化过程中生成设计时,一种较新的方法可以验证这些设计。后一种方法依赖于在一系列局部域中验证仿真模型。为了提高其计算效率,本文提出了一个迭代过程,其中当前步骤中局部域的大小和形状是从参数自举方法中确定的,该方法涉及前一步中未知模型参数的最大似然估计。验证在每个步骤中在本地域中进行。迭代过程将继续进行,直到优化过程中局部域在迭代过程之间不会发生变化为止,以确保获得收敛的设计最优值。在具有热通量边界条件的固体平板中,使用热,一维,线性导热问题来说明所提出的方法

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