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An improved flexible tolerance method for solving nonlinear constrained optimization problems:Application in mass integration

机译:一种解决非线性约束优化问题的改进柔性容差方法:在质量积分中的应用

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摘要

This paper proposes the use of the flexible tolerance method (FTM) modified with adaptive Nelder–Mead param-eters and barrier to solve constrained optimization problems. The problems used to analyze the performance of the methods were taken from G-Suite functions, and the methods with the best performance were applied in mass integration problems. Four methods were proposed:(1) flexible tolerance method (FTM) using adaptive parameters (FTMA), (2) flexible tolerance method with scaling (FTMS) and with adaptive parameters (FTMAS), (3) FTMS including the barrier modification (MFTMS) and (4) MFTMS hybridized with PSO (MFTMS-PSO). The success rates of these methods were 100% (MFTMS), 85% (MFTMS-PSO), 40% (FTMAS) and 30% (FTMA). Numerical experiments indicated that the MFTMS could efficiently and reliably improve the accuracy of global optima. In mass integration, the method was able, from current process situation, to reach the optimum process configuration that includes integration issues, which was not possible using FTM in its standard formulation. The hybridization of FTMS with PSO (without barrier), FTMS-PSO, was also able to solve mass integration problems efficiently.
机译:本文提出使用经自适应Nelder-Mead参数和障碍修改的柔性公差方法(FTM)来解决约束优化问题。从G-Suite函数中提取了用于分析方法性能的问题,并将性能最佳的方法应用于大规模积分问题。提出了四种方法:(1)使用自适应参数(FTMA)的柔性公差方法(FTM),(2)带有缩放(FTMS)和自适应参数(FTMAS)的柔性公差方法,(3)包括势垒修改的FTMS(MFTMS) )和(4)与PSO杂交的MFTMS(MFTMS-PSO)。这些方法的成功率分别为100%(MFTMS),85%(MFTMS-PSO),40%(FTMAS)和30%(FTMA)。数值实验表明,MFTMS可以有效,可靠地提高全局最优解的精度。在大规模集成中,该方法从当前的过程情况出发,能够达到包括集成问题在内的最佳过程配置,而在其标准配方中使用FTM是不可能的。 FTMS与PSO(无障碍)的混合,即FTMS-PSO,也能够有效解决大规模集成问题。

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  • 来源
    《中国化学工程学报(英文版)》 |2017年第5期|617-631|共15页
  • 作者单位

    Chemical Engineering Graduate Program, Federal University of S?o Carlos, S?o Carlos, Brazil;

    Department of Chemical Engineering, Rod. Washington Luiz, Km 235-SP 310, S?o Carlos/SP, 13565-905, Brazil;

    Department of Chemical Engineering, Rod. Washington Luiz, Km 235-SP 310, S?o Carlos/SP, 13565-905, Brazil;

    Department of Chemical Engineering, Federal University of S?o Carlos, S?o Carlos, Brazil;

    Department of Chemical Engineering, Rod. Washington Luiz, Km 235-SP 310, S?o Carlos/SP, 13565-905, Brazil;

    Department of Chemical Engineering, Federal University of S?o Carlos, S?o Carlos, Brazil;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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