摘要
时域有限差分(FDTD)中采用环路法(CP)进行复杂金属细缝结构建模,可突破细缝结构对空间步长的约束而大大减少计算资源的消耗。提出CP-FDTD在大规模并行化平台的建模方法,通过对工程金属细缝结构自动建模以及对CP算法的自动适配,实现CP-FDTD的并行化处理。利用所开发的并行CP-FDTD算法分析了开不同工程细缝金属腔在0.05~3.00GHz内的电磁屏蔽效能,结果表明所开发的具有金属细缝建模功能的并行化CP-FDTD自动适配处理技术,与加密网格的传统FDTD(fine-FDTD)计算结果吻合良好,且计算效率显著提升。
The contour path (CP) based modeling of thin slots in finite-difference time-domain (FDTD) simulation of complex structures breaks the constraint that the mesh size should be less than the smallest dimension of thin slots to get more accurate results,and therefore greatly reduce the consumption of computing resources.A large-scale parallelization platform JASMIN based modeling method of CP-FDTD is proposed in this paper.The thin slots can be automatically modeled and adaptively allocated in the proposed parallelized CP-FDTD algorithm.The electromagnetic shielding effectiveness (SE) of the metal cavity with different thin slots commonly used in industry is analyzed at the frequency range of 0.05 GHz to 3.00 GHz using the proposed parallel CP-FDTD algorithm.Results show that the SEs predicted using the developed parallel CP-FDTD are in good agreement with those obtained using finely meshed FDTD (fine-FDTD).Moreover,the computational efficiency is significantly improved.
作者
李俊辛
刘强
闫丽萍
赵翔
孟雪松
周海京
Li Junxin;Liu Qiang;Yan Liping;Zhao Xiang;Meng Xuesong;Zhou Haijing(Department of Electronic and Information Engineering,Sichuan University,Chengdu 610065,China;Institute of Applied Physics and Computational Mathematics,Beijing 100088,China)
出处
《强激光与粒子束》
EI
CAS
CSCD
北大核心
2019年第5期38-44,共7页
High Power Laser and Particle Beams
基金
国家自然科学基金项目(61877041)
关键词
并行化
细缝
环路法
时域有限差分法
屏蔽效能
parallelization
thin slot
contour path
finite-difference time-domain
shielding effectiveness