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Fine-tuning of algorithms using fractional experimental designs and local search

机译:使用分数实验设计和局部搜索对算法进行微调

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摘要

Researchers and practitioners frequently spend more time fine-tuning algorithms than designing and implementing them. This is particularly true when developing heuristics and metaheuristics, where the "right" choice of values for search parameters has a considerable effect on the performance of the procedure. When testing metaheuristics, performance typically is measured considering both the quality of the solutions obtained and the time needed to find them. In this paper, we describe the development of CALIBRA, a procedure that attempts to find the best values for up to five search parameters associated with a procedure under study. Because CALIBRA uses Taguchi's fractional factorial experimental designs coupled with a local search procedure, the best values found are not guaranteed to be optimal. We test CALIBRA on six existing heuristic-based procedures. These experiments show that CALIBRA is able to find parameter values that either match or improve the performance of the procedures resulting from using the parameter values suggested by their developers. The latest version of CALIBRA can be downloaded for free from the website that appears in the online supplement of this paper at http://or.pubs.informs.org/Pages.collect.html.
机译:与设计和实现算法相比,研究人员和从业人员通常花费更多时间进行算法微调。当开发启发式和元启发式时尤其如此,其中搜索参数值的“正确”选择对过程的性能有很大影响。在测试元启发法时,通常会同时考虑获得的解决方案的质量和找到它们所需的时间来衡量性能。在本文中,我们描述了CALIBRA的开发过程,该过程试图为与正在研究的过程相关的五个搜索参数寻找最佳值。由于CALIBRA使用Taguchi的分数阶乘实验设计以及本地搜索程序,因此无法保证找到的最佳值是最优的。我们在六个现有的基于启发式的过程上测试了CALIBRA。这些实验表明,CALIBRA能够找到与其开发人员建议的参数值匹配或提高的性能的参数值。可以从本文在线补充资料中位于http://or.pubs.informs.org/Pages.collect.html的网站免费下载最新版本的CALIBRA。

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