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Automatic Differentiation for sensitivity calculation in electromagnetism: Application for optimization of a linear actuator

机译:电磁灵敏度计算的自动微分:线性致动器优化的应用

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Automatic Differentiation (AD) is introduced as a powerful technique to compute derivatives of functions given in the form of computer programs in high level programming languages such FORTRAN, C or C++. The paper applies AD to compute error-free gradients of sizing models describing electromagnetic devices. Then, the obtained gradients are exploited by optimization algorithms. The goal is to find the device geometry that minimizes an objective function by respecting some additional constrained parameters and performances. When algorithms are used for model formulation, evaluating their derivatives becomes a complicated task. The paper proposes a model of a linear actuator dealing with implicit equations solved by numerical methods.
机译:引入自动求差(AD)是一项强大的技术,可用于以高级程序设计语言(例如FORTRAN,C或C ++)计算以计算机程序形式给出的函数的导数。本文将AD用于计算描述电磁设备的尺寸模型的无误差梯度。然后,通过优化算法利用获得的梯度。目的是通过考虑一些其他受约束的参数和性能来找到使目标函数最小化的设备几何形状。当使用算法进行模型制定时,评估其导数成为一项复杂的任务。本文提出了一种线性执行器模型,该模型处理通过数值方法求解的隐式方程。

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