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Solution Convergence in Exterior Electromagnetic Boundary Value Problems and Its Dependence on the Numerical Methods-a Review

机译:外部电磁边值问题的解收敛性及其对数值方法的依赖-综述

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In numerical solution of electromagnetic problems, boundary conditions play an essential role to ensure the uniqueness of the solution. The problem may be solved by a variety of methods, such as the integral or differential equation methods, a modal expansion method, or some random application of boundary conditions on the object. In any case, the application of boundary conditions is used to determine the unknown field quantity of the formulation to be used for determining the entire solution in the desired space. The convergence of the solution, therefore, depends on the selection of the unknown and the method used for its determination. However, in exterior boundary value problems the field quantities of interest are at far distances from the boundaries, where the field behaviors are dependent on the entire boundary of the object. Thus, the behaviour of the far field vectors is different from those on the boundary. This problem is investigated here by means of simple scattering by conducting objects having simple, as well as, complex shapes. It is shown that, while the convergence of the solution for determining the boundary fields can be slow, or difficult to obtain, depending on the shape of the object, the convergence of the far field solution is usually more rapid. In particular, the convergence of the far field is mostly dependent on the size of the object, rather than its shape.
机译:在电磁问题的数值解中,边界条件对于确保解的唯一性起着至关重要的作用。该问题可以通过多种方法来解决,例如积分或微分方程法,模态展开法或在对象上随机施加边界条件。在任何情况下,边界条件的应用都可用于确定要用于确定所需空间中整个解决方案的制剂的未知场量。因此,解决方案的收敛性取决于未知数的选择及其确定方法。但是,在外部边界值问题中,感兴趣的场量离边界很远,而场的行为取决于对象的整个边界。因此,远场矢量的行为不同于边界上的行为。在此,通过对具有简单以及复杂形状的物体进行简单散射来研究该问题。结果表明,根据物体的形状,用于确定边界场的解的收敛可能较慢或难以获得,而远场解的收敛通常会更快。特别地,远场的会聚主要取决于物体的大小,而不是其形状。

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