Title :
Novel Compact Model for the Radiation Pattern of UWB Antennas Using Vector Spherical and Slepian Decomposition
Author :
Dullaert, Wouter ; Rogier, Hendrik
Author_Institution :
Dept. of Inf. Technol., Ghent Univ., Ghent, Belgium
Abstract :
A new compact model is described for the 3D radiation pattern of an ultrawideband antenna, using a vector spherical and Slepian decomposition. Vector spherical modes are known to provide a good basis for the angular dependency of the radiation pattern. This paper is the first to extend such a model to also incorporate the frequency dependency of a radiation pattern. This is achieved by using a Slepian mode expansion. It is shown that this model requires considerably less coefficients than traditional sampling to accurately describe a frequency-dependent 3D radiation pattern. Also, generating the Slepian modes is computationally more efficient than comparable techniques, such as the singularity expansion method (SEM). The coefficients can then directly be used to efficiently calculate performance measures such as the antenna fidelity factor for all angles (??,??) without reconstructing the radiation pattern, or to reduce the noise contribution.
Keywords :
antenna radiation patterns; ultra wideband antennas; Slepian decomposition; Slepian mode expansion; UWB antenna; angular dependency; antenna fidelity factor; compact model; frequency dependency; radiation pattern; ultrawideband antenna; vector spherical; Antenna measurements; Antenna radiation patterns; Bandwidth; FCC; Frequency; Pulse measurements; Pulse modulation; Space vector pulse width modulation; Ultra wideband antennas; Ultra wideband technology; Antenna radiation patterns; discrete prolate spheroidal sequences (DPSS); fidelity factor; modeling; spherical modes; ultrawideband (UWB) antennas; ultrawideband (UWB) radiation;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2009.2037700