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Boundary Element Solution of Electromagnetic Fields for Non-Perfect Conductors at Low Frequencies and Thin Skin Depths

机译:低频和薄肤质非完美导体电磁场边界元件

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摘要

A novel boundary element formulation for solving problems involving eddy currents in the thin skin depth approximation is developed. It is assumed that the time-harmonic magnetic field outside the scatterers can be described using the quasistatic approximation. A two-term asymptotic expansion with respect to a small parameter characterizing the skin depth is derived for the magnetic and electric fields outside and inside the scatterer, which can be extended to higher order terms if needed. The introduction of a special surface operator (the inverse surface gradient) allows the reduction of the computational complexity of the solution. A method to compute this operator is developed. The obtained formulation operates only with scalar quantities and requires the computation of surface integral operators that are customary in boundary element (method of moments) solutions to the Laplace equation. The formulation can be accelerated using the fast multipole method. The resulting method is much faster than solving the vector Maxwell equations. The obtained solutions are compared with the Mie solution for scattering from a sphere, and the error of the solution is studied. Computations for much more complex shapes of different topologies, including for magnetic and electric field cages used in testing, are also performed and discussed.
机译:开发了一种用于解决涉及薄肤质深度近似涡流的问题的新型边界元件。假设可以使用Quasistatic近似来描述散射体外部的时间谐波磁场。对于表征皮肤深度的小参数的双渐近膨胀是用于散射体外部和散射体的磁场和电场的小参数,其可以在需要时扩展到更高阶项。引入特殊表面操作员(逆表面梯度)允许降低解决方案的计算复杂性。开发了计算该操作员的方法。所获得的制剂仅采用标量批量操作,并且需要计算在Laplace方程中的边界元件(矩)解决方案的边界元素(方法的方法)中常用的表面积分算子。可以使用快速的多极方法加速制剂。得到的方法比求解矢量麦克斯韦方程要快得多。将所得溶液与用于从球体散射的MIE溶液进行比较,研究溶液的误差。还执行并讨论了用于测试中使用的磁性和电场笼的更复杂的不同拓扑形状的计算。

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