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Adaptive memory programming for constrained global optimization

机译:自适应内存编程,用于约束全局优化

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摘要

The problem of finding a global optimum of a constrained multimodal function has been the subject of intensive study in recent years. Several effective global optimization algorithms for constrained problems have been developed; among them, the multi-start procedures discussed in Ugray et al. [1] are the most effective. We present some new multi-start methods based on the framework of adaptive memory programming (AMP), which involve memory structures that are superimposed on a local optimizer. Computational comparisons involving widely used gradient-based local solvers, such as Conopt and OQNLP, are performed on a testbed of 41 problems that have been used to calibrate the performance of such methods. Our tests indicate that the new AMP procedures are competitive with the best performing existing ones.
机译:近年来,寻找受约束的多峰函数的全局最优问题一直是深入研究的课题。针对约束问题,已经开发了几种有效的全局优化算法。其中,Ugray等人讨论的多启动程序。 [1]是最有效的。我们提出了一些基于自适应内存编程(AMP)框架的新的多启动方法,这些方法涉及叠加在局部优化器上的内存结构。涉及广泛使用的基于梯度的局部求解器(例如Conopt和OQNLP)的计算比较是在41个问题的试验台上进行的,这些问题已用于校准此类方法的性能。我们的测试表明,新的AMP程序与性能最佳的现有AMP程序相比具有竞争力。

著录项

  • 来源
    《Computers & operations research》 |2010年第8期|1500-1509|共10页
  • 作者单位

    Information, Risk, and Operations Management Department, The University of Texas at Austin, USA;

    Departamento de Ciencias de la Computacion, Universidad Rey Juan Carlos, Spain;

    OptTek Systems, Inc., Boulder. CO 80302, USA;

    Leeds School of Business, University of Colorado at Boulder, USA;

    Departamento de Estadistica e Investigacion Operativa, Universidad de Valencia, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    tabu search; global optimization;

    机译:禁忌搜索;全局优化;

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