Title: Construction of complex-valued wavelets and its applications to scattering problems
Authors: Leou, JL
Huang, JM
Jeng, SK
Li, HJ
電信工程研究所
Institute of Communications Engineering
Keywords: complex-valued wavelets;Daubechies polynomial;maximum-localized;minimum-localized;scattering
Issue Date: 1-Jun-2000
Abstract: This paper introduces the construction of a Family of complex-valued scaling functions and wavelets with symmetry/antisymmetry, compact support, and orthogonality from the Daubechies polynomial, and applies them to solve electromagnetic scattering problems. For simplicity, only two extreme cases in the family, maximum-localized complex-valued wavelets and minimum-localized complex-valued wavelets are investigated. Regularity of root location of the Daubechies polynomial in spectral Factorization are also presented to construct these two extreme genus of complex-valued wavelets. When wavelets are used as basis functions to solve electromagnetic scattering problems by the method of moment (MoM), they often lead to sparse matrix equations. We will compare the sparsity of MoM matrices by the real-valued Daubechies wavelets, minimum-localized complex-valued Daubechies and maximum-localized complex-valued Daubechies wavelets. Our research summarized in this paper shows that the wavelets with smaller signal width will result in a more sparse MoM matrix, especially when the scatterer is with many corners.
URI: http://hdl.handle.net/11536/30496
ISSN: 0916-8516
Journal: IEICE TRANSACTIONS ON COMMUNICATIONS
Volume: E83B
Issue: 6
Begin Page: 1298
End Page: 1307
Appears in Collections:Articles