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- Rudi Goossens, Ignace Bogaert, Hendrik Rogier
- IEEE Transactions on Antennas and Propagation
- 2009

Spherical arrays are the answer to obtain an antenna array with isotropic properties. They are capable of receiving an electromagnetic wave with equal strength irrespective of the… (More)

- Ignace Bogaert
- SIAM J. Scientific Computing
- 2014

Gauss–Legendre quadrature rules are of considerable theoretical and practical interest because of their role in numerical integration and interpolation. In this paper, a series expansion for the… (More)

- Ignace Bogaert, J. F. W. Peeters, Femke Olyslager
- IEEE Transactions on Antennas and Propagation
- 2008

A novel method, called the nondirective stable plane wave multilevel fast multipole algorithm (NSPWMLFMA), is presented to evaluate the low-frequency (LF) interactions that cannot be handled by the… (More)

- Francesco P. Andriulli, Kristof Cools, Ignace Bogaert, Eric Michielssen
- IEEE Transactions on Antennas and Propagation
- 2013

All known integral equation techniques for simulating scattering and radiation from arbitrarily shaped, perfect electrically conducting objects suffer from one or more of the following shortcomings:… (More)

- Ignace Bogaert, Femke Olyslager
- J. Comput. Physics
- 2009

- B. Michiels, Jan Fostier, Ignace Bogaert, Daniël De Zutter
- IEEE Transactions on Antennas and Propagation
- 2013

Distributed-memory parallelization of the multilevel fast multipole algorithm (MLFMA) relies on the partitioning of the internal data structures of the MLFMA among the local memories of networked… (More)

[1] We present a multilevel fast multipole algorithm (MLFMA) implementation to numerically solve Maxwell’s equations for large two‐dimensional geometries illuminated by an arbitrary plane wave in… (More)

- B. Michiels, Jan Fostier, Ignace Bogaert, Daniël De Zutter
- IEEE Transactions on Antennas and Propagation
- 2015

Algorithmic improvements to the parallel, distributed-memory multilevel fast multipole algorithm (MLFMA) have resulted in implementations with favorable weak scaling properties. This allows for the… (More)

- Jürgen De Zaeytijd, Ignace Bogaert, Ann Franchois
- J. Comput. Physics
- 2008

Electromagnetic scattering problems involving inhomogeneous objects can be numerically solved by applying a Method of Moments discretization to the volume integral equation. For electrically large… (More)

- Ignace Bogaert, Kristof Cools, Francesco P. Andriulli, J. F. W. Peeters, Danieul De Zutter
- Proceedings of the 5th European Conference on…
- 2011

Recently, a novel discretization for the magnetic f eld integral equation (MFIE) was presented [1]. This discretization involves both Rao-Wilton-Glisson (RWG) basis functions and Buffa-Christiansen… (More)