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Orthogonal Multiobjective Chemical Reaction Optimization Approach for the Brushless DC Motor Design

机译:正交多目标化学反应优化方法的无刷直流电动机设计

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The optimal design of a brushless direct-current motor (BLDCM) is a prevalent and practical issue in the field of magnetics. A major problem is to design a BLDCM so that it operates optimally in the sense of producing maximum efficiency with minimal material cost. Using the sizing model, a novel orthogonal multiobjective chemical reaction optimization (OMOCRO) algorithm is proposed to solve this problem. Chemical reaction optimization is a newly proposed heuristic algorithm, inspired by the interactions between molecules during chemical reactions. In our proposed OMOCRO, we employ a Pareto ranking scheme to deal with multiobjective optimization problems, and orthogonal experimental design is used in the initialization stage. Comparative experiments with nondominated sorting genetic algorithm and multiobjective particle swarm approach demonstrate that our proposed method is more competitive in handling complex optimization problems.
机译:无刷直流电动机(BLDCM)的优化设计是磁性领域中普遍存在的实用问题。一个主要问题是设计BLDCM,使其在以最小的材料成本产生最大效率的意义上达到最佳运行。利用该模型,提出了一种新颖的正交多目标化学反应优化算法(OMOCRO)来解决该问题。化学反应优化是一种新提出的启发式算法,其灵感来自化学反应过程中分子之间的相互作用。在我们提出的OMOCRO中,我们采用帕累托排序方案来解决多目标优化问题,并且在初始化阶段使用正交实验设计。与非支配排序遗传算法和多目标粒子群方法的比较实验表明,我们提出的方法在处理复杂的优化问题上更具竞争力。

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