离散化
多边形网格
基函数
伽辽金法
四面体
基础(线性代数)
数学
矩量法(概率论)
有限元法
应用数学
计算机科学
算法
数学分析
几何学
物理
统计
估计员
热力学
作者
Zhiyong Zeng,Cai‐Cheng Lu
标识
DOI:10.1109/tap.2006.875277
摘要
The hybrid volume and surface integral equation approach is applied to solve electromagnetic scattering and radiation problems involving conducting and/or dielectric objects. To flexibly and accurately model the complex structures and reduce the number of unknowns, mixed mesh scheme is developed to discretize the object. In this scheme, the triangles and quadrangles are used to discretize the conducting part of the object, and the tetrahedrons, hexahedrons, prisms and pyramids are used to model the dielectric volumes of the scatterer. Numerical results showed the solution accuracies from the mixed element meshes are of the same level compared with the single element meshes, but uses much less number of unknowns. This leads to flexibility for mesh generating and reduces the use of computing resources.
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