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Optimal design of electromechanical actuators: a new method based on global optimization

机译:机电执行器的优化设计:一种基于全局优化的新方法

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The aim of this paper is to show the advantage of a deterministic global-optimization method in the optimal design of electromechanical actuators. The numerical methods classically used are founded either on nonlinear programming techniques (i.e., augmented Lagrangian, sequential quadratic programming) or on stochastic approaches which are more satisfactorily adapted to global optimum research (i.e., genetic algorithm, simulated annealing). However, the latter methods only guarantee reaching this global optimum with some probability. The present paper proposes a deterministic branch and bound algorithm associated with interval arithmetic which is then applied to the dimensioning of a slotless permanent magnet machine. The problem is formulated as a multiobjective-optimization problem with mixed variables. Original and unexpected results in this optimal design are obtained, and comparisons with previous works are presented.
机译:本文的目的是展示确定性全局优化方法在机电执行器的优化设计中的优势。传统上使用的数值方法是基于非线性编程技术(即增强拉格朗日方法,顺序二次编程)或基于更令人满意地适用于全局最优研究的随机方法(即遗传算法,模拟退火)。但是,后一种方法只能保证以一定概率达到此全局最优值。提出了一种与区间算法相关的确定性分支定界算法,并将其应用于无槽永磁电机的尺寸设计。该问题被表述为具有混合变量的多目标优化问题。在这种优化设计中获得了原始和出乎意料的结果,并与以前的工作进行了比较。

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