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Implementation of Material Sensitivity Analysis for Determining Unknown Remanent Magnetization of a Ferromagnetic Thin Shell

机译:确定铁磁薄壳未知剩余磁化强度的材料敏感性分析的实现

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摘要

This paper deals with the numerical implementation of the material sensitivity analysis, which is used to efficiently determine an optimal magnetization distribution on a ship hull. A material sensitivity formula for the forward problem formulated in terms of the equivalent magnetic charge method is analytically derived. Then, the components of the adjoint system including the magnetic pseudo-source are thoroughly investigated in order to obtain the first-order gradient information of an objective function with respect to the magnetic charge. The formula facilitates applying the deterministic approach to searching for an optimal charge distribution and also it yields stable and reliable solutions to magnetostatic inverse problems in three dimensions. Finally, the proposed method has been successfully applied to a scale model ship and the predicted results on the underwater field disturbance due to the remanent magnetization of the hull have been compared to real measurements.
机译:本文涉及材料敏感性分析的数值实现,该方法用于有效确定船体上的最佳磁化强度分布。通过等效推导方法得出了针对正向问题的材料灵敏度公式。然后,彻底研究包括磁性伪源的伴随系统的组成,以获得关于磁电荷的目标函数的一阶梯度信息。该公式有助于将确定性方法应用于寻找最佳电荷分布,并且还可以针对三维静磁反问题提供稳定可靠的解决方案。最后,该方法已成功地应用于比例尺模型船,并且将船体剩余磁化强度对水下场干扰的预测结果与实际测量结果进行了比较。

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