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An Interactive Environment for Supporting the Transition from Simulation to Optimization

机译:支持从仿真到优化过渡的交互式环境

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Numerical simulation is a powerful tool in science and engineering, and it is also used for optimizing the design of products and experiments rather than only for reproducing the behavior of scientific and engineering systems. In order to reduce the number of simulation runs, the traditional "trial and error" approach for finding near-to-optimum design parameters is more and more replaced with efficient numerical optimization algorithms. Done by hand, the coupling of simulation and optimization software is tedious and error-prone. In this note we introduce a software environment called EFCOSS (Environment For Combining Optimization and Simulation Software) that facilitates and speeds up this task by doing much of the required work automatically. Our framework includes support for automatic differentiation providing the derivatives required by many optimization algorithms. We describe the process of integrating the widely used computational fluid dynamics package FLUENT and a MINPACK-1 least squares optimizer into EFCOSS and follow a sample session solving a data assimilation problem.
机译:数值模拟是科学和工程中的有力工具,它还用于优化产品和实验的设计,而不仅仅是用于再现科学和工程系统的行为。为了减少模拟运行的次数,用于寻找接近最佳设计参数的传统“试验与错误”方法越来越多地被高效的数值优化算法所取代。手工完成后,仿真和优化软件的耦合非常繁琐且容易出错。在本说明中,我们介绍了一个称为EFCOSS(优化与仿真软件组合的环境)的软件环境,该环境通过自动完成许多必需的工作来促进并加快此任务。我们的框架包括对自动微分的支持,可提供许多优化算法所需的导数。我们描述了将广泛使用的计算流体动力学软件包FLUENT和MINPACK-1最小二乘优化器集成到EFCOSS中的过程,并遵循一个示例会话来解决数据同化问题。

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