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FAST AND GLOBALLY CONVERGENT NONLINEAR SYSTEM MODEL FOR 3D MAGNETOSTRICTIVE SYSTEMS

机译:3D磁速系统的快速全局收敛非线性系统模型

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A globally convergent and fully coupled magnetomechanical model for 3D magnetostrictive systems is presented. In magne-tostrictive actuators, magnetic field and stress inputs generate magnetic flux density and strain. We refer to models that follow this scheme as direct models (no relation to the direct magnetomechanical effect). In certain design and control situations, inverse models are necessary in which the magnetic field and stress are found from specified magnetic flux density and strains. This inversion typically involves an iterative procedure, which may be prone to convergence issues. An inverse model approach is proposed for arbitrary magnetostrictive materials. The inversion requirement is a continuous and second order differentiable direct model for any chosen magnetostrictive material. The approach is globally convergent, which makes it ideal for use infinite element frameworks. The premise of the proposed iterative system model is to constitute a recursive correction formula based on second order approximations of a novel scalar error function which allows to achieve a faster convergence rate. A continuation approach is then used to achieve global convergence for arbitrary input parameters. To illustrate, Galfenol is chosen as the magnetostrictive material, and analytical derivations of the Jacobian and Hessian matrices are presented. Finally, the computational efficiency of the proposed approach is shown to compare favorably against existing models.
机译:提出了一种用于3D磁致伸缩系统的全局收敛和完全耦合的磁机械模型。在磁致伸缩执行器中,磁场和应力输入会产生磁通密度和应变。我们将遵循该方案的模型称为直接模型(与直接磁机械效应无关)。在某些设计和控制情况下,需要逆模型,在逆模型中,可以从指定的磁通密度和应变中找到磁场和应力。这种反转通常涉及迭代过程,这可能会导致收敛问题。提出了一种逆模型方法用于任意磁致伸缩材料。对于任何选择的磁致伸缩材料,反演要求是连续和二阶微分直接模型。该方法是全局收敛的,这使其成为使用无限元素框架的理想选择。提出的迭代系统模型的前提是基于一种新颖的标量误差函数的二阶逼近来构造一个递归校正公式,该公式可以实现更快的收敛速度。然后使用一种连续方法来实现任意输入参数的全局收敛。为了说明这一点,选择了Galfenol作为磁致伸缩材料,并给出了Jacobian和Hessian矩阵的解析推导。最终,所提出的方法的计算效率被证明与现有模型相比具有优势。

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