首页> 外文会议>European Conference on Antennas and Propagation >COMPUTATIONS FOR VARIOUS EDGE CONFIGURATIONS WITH THE HYBRID FINITE ELEMENT - BOUNDARY INTEGRAL - MULTILEVEL FAST MULTIPOLE - UNIFORM GEOMETRICAL THEORY OF DIFFRACTION METHOD INCLUDING DOUBLE DIFFRACTION
【24h】

COMPUTATIONS FOR VARIOUS EDGE CONFIGURATIONS WITH THE HYBRID FINITE ELEMENT - BOUNDARY INTEGRAL - MULTILEVEL FAST MULTIPOLE - UNIFORM GEOMETRICAL THEORY OF DIFFRACTION METHOD INCLUDING DOUBLE DIFFRACTION

机译:具有混合有限元 - 边界积分 - 多级快速多极 - 均匀几何理论的各种边缘配置的计算,包括双衍射

获取原文

摘要

Recently, a powerful hybrid numerical method was introduced, combining the Finite Element Boundary Integral (FEBI) method and the Multilevel Fast Multipole Method (MLFMM) with the Uniform Geometrical Theory of Diffraction (UTD), in which single and multiple reflections on flat metallic objects, combined with single diffractions on straight metallic edges, were considered. In this contribution, the hybrid FEBI-MLFMM-UTD method is extended to double diffraction high-frequency fields on pairs of straight metallic edges, formulated with the hard and soft scalar diffraction coefficients of the UTD. The diffraction points on each pair of edges are determined by a three-dimensional parametric realization of the generalized Fermat's principle. The divergence factor of the double diffracted field is computed by multiplying the appropriate divergence factors of the single diffracted UTD fields on each edge for the particular case. Thereby, the ray caustic distance of the diffracted field at the second edge is determined by linear interpolation between the radii of curvature in the two principal planes of the incident astigmatic ray tube. Further, acceleration of the near-field computations in the postprocessing stage of the hybrid method is extended in each translation domain to ray optical contributions due to the presence of electrically large objects, according to the hybridization of MLFMM with UTD. The corresponding formulations, as well as numerical results are presented.
机译:近来,引入了强大的混合数值方法,将有限元边界积分(FEBI)方法与多级快速多极法(MLFMM)与衍射(UTD)的均匀几何理论相结合,其中单个和多重反射对平金属物体,考虑了直线金属边缘的单衍射。在这一贡献中,杂交FeBI-MLFMM-UTD方法延伸到直线金属边缘成对的双衍射高频场,配制成具有UTD的硬度和软标量衍射系数。每对边缘上的衍射点由通用的Fermat原理的三维参数实现确定。通过将单个衍射UTD字段的适当发散因子乘以特定情况来计算双衍射场的分歧因子。由此,第二边缘处的衍射场的射线刻度由入射散光射线管的两个主要平面中的曲率半径之间的线性插值确定。此外,根据MLFMM与UTD的杂交,在每个平移域中延伸到混合方法的后处理阶段中的近场计算,以在每个平移域中延伸到射线光学贡献。提出了相应的制剂以及数值结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号