首页> 外文会议>ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference 2007 >APPROXIMATED UNIMODAL REGION ELIMINATION BASED GLOBAL OPTIMIZATION METHOD FOR ENGINEERING DESIGN
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APPROXIMATED UNIMODAL REGION ELIMINATION BASED GLOBAL OPTIMIZATION METHOD FOR ENGINEERING DESIGN

机译:基于近似统一态区域消除的工程设计全局优化方法

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Computer analysis and simulation based design optimization requires more computationally efficient global optimization tools. In this work, a new global optimization algorithm based on design experiments, region elimination and response surface model, namely Approximated Unimodal Region Elimination Method (AUREM), is introduced. The approach divides the field of interest into several unimodal regions using design experiment data; identify and rank the regions that most likely contain the global minimum; form a response surface model with additional design experiment data over the most promising region; identify its minimum, remove this processed region, and move to the next most promising region. By avoiding redundant searches, the approach identifies the global optimum with reduced number of objective function evaluations and computation effort. The new algorithm was tested using a variety of benchmark global optimization problems and compared with several widely used global optimization algorithms. The experiments results present comparable search accuracy and superior computation efficiency, making the new algorithm an ideal tool for computer analysis and simulation black-box based global design optimization.
机译:基于计算机分析和仿真的设计优化需要更多计算有效的全局优化工具。在这项工作中,介绍了一种基于设计实验,区域消除和响应面模型的新的全局优化算法,即近似单峰区域消除方法(AUREM)。该方法使用设计实验数据将感兴趣的领域划分为几个单峰区域。确定并排序最有可能包含全局最小值的区域;在最有前途的区域内使用其他设计实验数据形成响应面模型;确定其最小值,删除该已处理区域,然后移至下一个最有希望的区域。通过避免重复搜索,该方法可以减少目标函数评估和计算工作量,从而确定全局最优值。使用各种基准全局优化问题对新算法进行了测试,并与几种广泛使用的全局优化算法进行了比较。实验结果显示了可比的搜索精度和出色的计算效率,使新算法成为计算机分析和基于黑匣子的全局设计优化的理想工具。

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