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求解复杂多目标优化问题MOEA/D-GEP算法 被引量:9
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作者 张冬梅 龚小胜 +1 位作者 戴光明 彭雷 《华中科技大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第4期33-36,共4页
针对复杂多目标优化问题,提出一种基于演化建模的MOEA/D(基于分解的多目标遗传算法)求解算法(MOEA/D-GEP).该算法利用MOEA/D算法思想分解多目标优化问题,对分解后得到的可行解用基于模拟退火的GEP算法建模,从中选取预测值较好的点进入... 针对复杂多目标优化问题,提出一种基于演化建模的MOEA/D(基于分解的多目标遗传算法)求解算法(MOEA/D-GEP).该算法利用MOEA/D算法思想分解多目标优化问题,对分解后得到的可行解用基于模拟退火的GEP算法建模,从中选取预测值较好的点进入下一次真实适应值的计算.采用国际公认的ZDT,DTLZ等测试函数进行实验验证,并与MOEA/D-EGO演化多目标优化算法进行了比较.实验结果表明:该算法在IGD性能指标上有较好的表现,说明将演化建模技术引入MOEA/D算法提高了种群个体分布模型的精度,降低了求解复杂多目标优化问题的计算成本. 展开更多
关键词 复杂多目标优化问题 全局优化算法 基于表达式编程 演化多目标优化 MOEA/D-GEP
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The Game Theoretical Approach for Multi-phase Complex Systems in Chemical Engineering 被引量:7
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作者 LI Yan MU Yifen +1 位作者 YUAN Shuo GUO Lei 《Journal of Systems Science & Complexity》 SCIE EI CSCD 2017年第1期4-19,共16页
This paper explores the application of noncooperative game theory together with the concept of Nash equilibrium to the investigation of some basic problems on multi-scale structure, especially the meso-scale structure... This paper explores the application of noncooperative game theory together with the concept of Nash equilibrium to the investigation of some basic problems on multi-scale structure, especially the meso-scale structure in the multi-phase complex systems in chemical engineering. The basis of this work is the energy-minimization-multi-scale (EMMS) model proposed by Li and Kwauk (1994) and Li, et al. (2013) which identifies the multi-scale structure as a result of 'compromise-in-competition between dominant mechanisms' and tries to solve a multi-objective optimization problem. However, the existing methods often integrate it into a problem of single objective optimization, which does not clearly reflect the 'compromise-in-competition' mechanism and causes heavy computation burden as well as uncertainty in choosing suitable weighting factors. This paper will formulate the compromise in competition mechanism in EMMS model as a noncooperative game with constraints, and will describe the desired stable system state as a generalized Nash equilibrium. Then the authors will investigate the game theoretical approach for two typical systems in chemical engineering, the gas-solid fluidiza- tion (GSF) system and turbulent flow in pipe. Two different cases for generalized Nash equilibrinm in such systems will be well defined and distinguished. The generalize Nash equilibrium will be solved accurately for the GSF system and a feasible method will be given for turbulent flow in pipe. These results coincide with the existing computational results and show the feasibility of this approach, which overcomes the disadvantages of the existing methods and provides deep insight into the mechanisms of multi-scale structure in the multi-phase complex systems in chemical engineering. 展开更多
关键词 Game theory gas-solid fluidization generalized Nash equilibrium multi-phase complexsystems turbulent flow.
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