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Adaptation of the penalty function method to genetic algorithm in electromagnetic devices designing

机译:惩罚函数法在电磁器件设计中对遗传算法的适应

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Purpose The purpose of this paper is to elaborate the effective method of adaptation of the external penalty function to the genetic algorithm. Design/methodology/approach In the case of solving the optimization tasks with constraints using the external penalty function, the penalty term has a larger value than the primary objective function. The sigmoidal transformation is introduced to solve this problem. A new method of determining the value of the penalty coefficient in subsequent iterations associated with the changing penalty has been proposed. The proposed approach has been applied to the optimization of an electromagnetic linear actuator, and the mathematical model of the devices contains equations of the magnetic field, by taking into account the nonlinearity of ferromagnetic material. Findings The proposed new approach of the penalty function method consists in the reduction of the external penalty function in successive penalty iterations instead of its increase as it is in the classical method. In addition, the method of normalization of constraints during the formulation of optimization problem has a significant impact on the obtained results of optimization calculations. Originality/value The proposed approach can be applied to solve constrained optimization tasks in designing of electromagnetic devices.
机译:目的本文的目的是阐述使外部惩罚函数适应遗传算法的有效方法。设计/方法/方法在使用外部惩罚函数解决具有约束的优化任务的情况下,惩罚项的值大于主要目标函数的值。提出了S形变换来解决这个问题。提出了一种在与变化的惩罚相关联的后续迭代中确定惩罚系数的值的新方法。所提出的方法已经应用于电磁线性致动器的优化,并且装​​置的数学模型通过考虑铁磁材料的非线性来包含磁场方程。结果提出的惩罚函数方法的新方法包括在连续惩罚迭代中减少外部惩罚函数,而不是像传统方法那样增加外部惩罚函数。另外,在优化问题的制定过程中约束的归一化方法对获得的优化计算结果有重大影响。独创性/价值所提出的方法可用于解决电磁设备设计中的约束优化任务。

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