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Effects of Numerical Formulation on Magnetic Field Computation Using Meshless Methods

机译:数值公式对无网格法磁场计算的影响

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Meshless methods have some advantages over their counterparts such as the finite-element method (FEM). However, existing meshless methods for computational electromagnetic fields are still not as efficient as FEM. In this paper, we compare two meshless methods of discretizing the computational domain of Poisson-like problems; namely, the point collocation and Galerkin methods (which use the strong and weak forms of the governing equation respectively), and their effects on the computational accuracy and efficiency of the magnetic fields. We also discuss methods of handling discontinuities at the material interface. We present several examples, which also provide a means to validate and evaluate both meshless methods. Exact solutions and/or FEM are used as a basis for comparison. In addition, we also verify the results by comparing computed magnetic forces against those measured experimentally.
机译:与无网格方法相比,无网格方法具有一些优势,例如有限元方法(FEM)。但是,现有的用于计算电磁场的无网格方法仍然不如FEM高效。在本文中,我们比较了两种离散化Poisson型问题计算域的无网格方法。即点配置和Galerkin方法(分别使用控制方程的强形式和弱形式),以及它们对磁场的计算精度和效率的影响。我们还将讨论在材料界面处处理不连续性的方法。我们提供了几个示例,这些示例还提供了一种方法来验证和评估这两种无网格方法。精确的解决方案和/或FEM用作比较的基础。此外,我们还通过将计算出的磁力与实验测得的磁力进行比较来验证结果。

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