已收录 268921 条政策
 政策提纲
  • 暂无提纲
Optimization of reactor network design problem using Jumping Gene Adaptation of Differential Evolution
[摘要] Detailed working principle of jumping gene adaptation of differential evolution (DE-JGa) is presented. The performance of the DE-JGa algorithm is compared with the performance of differential evolution (DE) and modified DE (MDE) by applying these algorithms on industrial problems. In this study Reactor network design (RND) problem is solved using DE, MDE, and DE-JGa algorithms: These industrial processes are highly nonlinear and complex with reference to optimal operating conditions with many equality and inequality constraints. Extensive computational comparisons have been made for all the chemical engineering problems considered. The results obtained in the present study show that DE-JGa algorithm outperforms the other algorithms (DE and MDE). Several comparisons are made among the algorithms with regard to the number of function evaluations (NFE)/CPU- time required to find the global optimum. The standard deviation and the variance values obtained using DE-JGa, DE and MDE algorithms also show that the DE-JGa algorithm gives consistent set of results for the majority of the test problems and the industrial real world problems.
[发布日期]  [发布机构] Petroleum and Chemical Engineering Department, Sultan Qaboos University, Muscat; PC 123, Oman^1;Birla Institute of Technology and Science, Pilani, India^2
[效力级别] 化学 [学科分类] 
[关键词] Computational comparisons;Differential Evolution;Industrial processs;Inequality constraint;Optimal operating conditions;Optimization of reactors;Real-world problem;Standard deviation [时效性] 
   浏览次数:38      统一登录查看全文      激活码登录查看全文