Vogt, AlexanderAlexanderVogtReuschel, TorstenTorstenReuschelBrüns, Heinz-DietrichHeinz-DietrichBrünsLe Borne, SabineSabineLe BorneSchuster, ChristianChristianSchuster2020-02-182020-02-182016-05-19IEEE Transactions on Antennas and Propagation 8 (64): 7473916 3670-3676 (2016-08-01)http://hdl.handle.net/11420/4956This communication adapts the formalism of hierarchical H) matrices to the direct solution process (LU decomposition) of the method of moments (MoM) in the frequency domain. A novel clustering approach based on physical constraints is presented and extended to treat dielectric bodies as well as arbitrary boundary conditions. Comparisons with other numerical methods are provided. The analyses show a considerable speedup of the computation times and a significant reduction of required memory compared with the traditional MoM solution process, especially for highly resonant structures where iterative solvers like the multilevel fast multipole algorithm show poor convergence.en0018-926XIEEE transactions on antennas and propagation2016836703676Boundary conditionsdirect solverhierarchical (H-) matricesintegral equationsmethod of moments (MoM)MathematikOn the Treatment of Arbitrary Boundary Conditions Using a Fast Direct H-Matrix Solver in MoMJournal Article10.1109/TAP.2016.2570803Other