the National Natural Science Foundation of China (60431010, 60601008);New Century 0Excellent Talent Support Plan of China (NCET-05-0805);the International Joint Research Project(607048);in part by the "973" Programs(61360, 2008CB317110);Research Founding (9110A03010708DZ0235);Young Doctor Discipline Platform of UESTC
This paper introduces the research work on the extension of multilevel fast multipole algorithm (MLFMA) to 3D complex structures including coating object, thin dielectric sheet, composite dielectric and conductor, c...
the National Natural Science Foundation of China (60431010, 60601008);the New CenturyExcellent Talent Support Plan of China (NCET-05-0805);the International Joint Research Project ("111" Project)(b07048);the"973" Programs 61360(2008CB317110);Young Doctor Displine Platform University of Electronic Science and Technology of China.
As the fastest integral equation solver to date, the multilevel fast multipole algorithm (MLFMA) has been applied successfully to solve electromagnetic scattering and radiation from 3D electrically large objects. Bu...
This work is supported by the National Natural Science Foundation of China (No.60431010, No.60601008), New Century Excellent Talent Support Plan of China (No.NCET-05-0805), 2006' Young Doctor Discipline Platform of UESTC.
In this paper, a Local multilevel fast multipole algorithm (LMLFMA) is proposed to further speed up the efficiency of MLFMA in Conjugate gradient (CG) iteration. In the LMLFMA, only the local interactions between ...