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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Scattering from a large body with cracks and cavities by the fast and accurate finite-element boundary-integral method
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Scattering from a large body with cracks and cavities by the fast and accurate finite-element boundary-integral method

机译:快速准确的有限元边界积分法从具有裂纹和孔洞的大物体上散射

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A large body with cracks and cavities is a typical structure widely existing in realistic targets. In this paper, a newly developed fast and accurate finite-element boundary-integral (FA-FE-BI) method is applied to compute scattering by this kind of scatterer. A thorough analysis on this FA-FE-BI numerical technique is presented, clearly demonstrating that this technique has computational complexity O(N log N) and memory requirement O(N) (N is the total number of surface unknowns). An inward-looking approach is employed as a preconditioner to speed up the rate of convergence of iterative solvers for this structure. Under these techniques, a powerful code is developed for this kind of scatterer whose accuracy, efficiency, and capability is well confirmed by various numerical results.
机译:具有裂缝和空腔的大物体是现实目标中广泛存在的典型结构。本文将一种新近开发的快速,精确的有限元边界积分法(FA-FE-BI)应用于这种散射体的散射计算。对此FA-FE-BI数值技术进行了全面分析,清楚地表明该技术具有计算复杂度O(N log N)和内存需求O(N)(N是表面未知数的总数)。采用内向型方法作为前提,以加快此结构的迭代求解器的收敛速度。在这些技术的帮助下,为这种散射体开发了强大的代码,其准确性,效率和功能已通过各种数值结果得到了很好的证实。

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