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Exhaustive optimization method based on DOE and FEM applied on a SMES device

机译:基于DOE和FEM的穷举优化方法应用于SMES设备

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In this paper, an exhaustive optimization method based on design of experiments (DOE) and finite element method (FEM) was applied on a Superconducting Magnetic Energy Storage (SMES) device with modular toroid coil in order to optimize its storage capacity. Two geometric parameters defining the torus shape were chosen to maximize the stored magnetic energy related to the volume of the superconducting material: the coil inner diameter ratio and the coil thickness ratio. The optimization algorithm is based on 2-D FEM numerical experiments in order to calculate polynomial models of second order of the objective function using full factorial design with three levels per factor. The result is the global maximum and it is compared with previous solutions.
机译:本文将基于实验设计(DOE)和有限元方法(FEM)的穷举优化方法应用于具有模块化环形线圈的超导磁能存储(SMES)设备,以优化其存储容量。选择两个定义圆环形状的几何参数,以使与超导材料的体积有关的存储磁能最大化:线圈内径比和线圈厚度比。该优化算法基于二维有限元数值实验,以便使用每个因子三个级别的全因子设计来计算目标函数的二阶多项式模型。结果是全局最大值,并将其与以前的解决方案进行比较。

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