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Adaptive Response Surface Method Using Inherited Latin Hypercube Design Points

机译:使用继承的拉丁超立方体设计点的自适应响应面方法

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摘要

This paper addresses the difficulty of the previously developed Adaptive Response Surface Method (ARSM) for high-dimensional design problems. ARSM was developed to search for the global design optimum for computation-intensive design problems. This method utilizes Central Composite Design (CCD), which results in an exponentially increasing number of required design experiments. In addition, ARSM generates a complete new set of CCD points in a gradually reduced design space. These two factors greatly undermine the efficiency of ARSM. In this work, Latin Hypercube Design (LHD) is utilized to generate saturated design experiments. Because of the use of LHD, historical design experiments can be inherited in later iterations. As a result, ARSM only requires a limited number of design experiments even for high-dimensional design problems. The improved ARSM is tested using a group of standard test problems and then applied to an engineering design problem. In both testing and design application, significant improvement in the efficiency of ARSM is realized. The improved ARSM demonstrates strong potential to be a practical global optimization tool for computation-intensive design problems. Inheriting LHD points, as a general sampling strategy, can be integrated into other approximation-based design optimization methodologies.
机译:本文解决了先前开发的针对高维设计问题的自适应响应表面方法(ARSM)的难题。开发ARSM的目的是为计算密集型设计问题寻找全局最佳设计。这种方法利用了中央复合设计(CCD),这导致所需的设计实验数量成倍增加。此外,ARSM在逐渐减小的设计空间中生成了一套完整的CCD点。这两个因素极大地破坏了ARSM的效率。在这项工作中,拉丁超立方体设计(LHD)用于生成饱和的设计实验。由于使用了LHD,历史设计实验可以在以后的迭代中继承。结果,即使对于高维设计问题,ARSM仅需要有限数量的设计实验。使用一组标准测试问题对改进的ARSM进行测试,然后将其应用于工程设计问题。在测试和设计应用中,都可以显着提高ARSM的效率。改进的ARSM展示了强大的潜力,可以成为解决计算密集型设计问题的实用全局优化工具。作为一般采样策略,继承LHD点可以集成到其他基于近似的设计优化方法中。

著录项

  • 来源
    《Journal of Mechanical Design》 |2003年第2期|p.210-220|共11页
  • 作者

    G. Gary Wang;

  • 作者单位

    Dept. of Mech. and Indus.Engineering, University of Manitoba, Winnipeg, MB, Canada R3T 5V6;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械设计;
  • 关键词

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