Titre : |
Contribution à la modélisation de structures et dispositifs passifs microondes basée sur l’utilisation de différentes techniques d’optimisation : Application aux filtres en guides d’ondes rectangulaires métalliques |
Type de document : |
texte imprimé |
Auteurs : |
Islem Bouchachi, Auteur ; Mohamed Lahdi Riabi, Directeur de thèse |
Editeur : |
جامعة الإخوة منتوري قسنطينة |
Année de publication : |
2017 |
Importance : |
124 f. |
Format : |
30 cm. |
Note générale : |
2 copies imprimées disponibles
|
Langues : |
Français (fre) |
Catégories : |
Français - Anglais Electronique
|
Tags : |
Filtre Guide d’ondes Matrice de couplage Raccordement modal Méthode de segmentation Techniques d’optimisation Waveguide Coupling matrix Mode-matching Segmentation method Optimization
techniques |
Index. décimale : |
621 Electronique |
Résumé : |
In this work, we proposed a method for the synthesis of hollow waveguides filters. It consists
of a combination of several calculations, simulations and optimizations techniques classified
in a defined order to result in band-pass filters. It is a question of:
First, to generate the coupling matrix starting from the filter specifications. Deduce the
equivalent circuit and then convert it into a microwave structure, which consists of replacing
the resonators and inverters of the circuit by resonant cavities and couplers. Once the circuit
has been converted to a microwave structure, we need an analysis method to ensure the right
conversion. For this, we used the segmentation method, which consists in fragmenting the
structure into several basic elements (junction, bend and T-junction). Each element is
analyzed separately using the mode-matching method, and then the structure is assimilated to
a network made up of these basic elements. Since the final result requires optimization
because it does not correspond perfectly to the specifications of the structure to be
synthesized, we have studied and used three optimization techniques: genetic algorithms,
particle swarm optimization and neural networks.
To validate our synthesis method, we have successfully applied it to the synthesis of the
Tchebychev, Dual-mode, and generalized Tchebychev band-pass filters. |
Diplôme : |
Doctorat en sciences |
En ligne : |
../theses/electronique/BOU7118.pdf |
Format de la ressource électronique : |
pdf |
Permalink : |
index.php?lvl=notice_display&id=10483 |
Contribution à la modélisation de structures et dispositifs passifs microondes basée sur l’utilisation de différentes techniques d’optimisation : Application aux filtres en guides d’ondes rectangulaires métalliques [texte imprimé] / Islem Bouchachi, Auteur ; Mohamed Lahdi Riabi, Directeur de thèse . - جامعة الإخوة منتوري قسنطينة, 2017 . - 124 f. ; 30 cm. 2 copies imprimées disponibles
Langues : Français ( fre)
Catégories : |
Français - Anglais Electronique
|
Tags : |
Filtre Guide d’ondes Matrice de couplage Raccordement modal Méthode de segmentation Techniques d’optimisation Waveguide Coupling matrix Mode-matching Segmentation method Optimization
techniques |
Index. décimale : |
621 Electronique |
Résumé : |
In this work, we proposed a method for the synthesis of hollow waveguides filters. It consists
of a combination of several calculations, simulations and optimizations techniques classified
in a defined order to result in band-pass filters. It is a question of:
First, to generate the coupling matrix starting from the filter specifications. Deduce the
equivalent circuit and then convert it into a microwave structure, which consists of replacing
the resonators and inverters of the circuit by resonant cavities and couplers. Once the circuit
has been converted to a microwave structure, we need an analysis method to ensure the right
conversion. For this, we used the segmentation method, which consists in fragmenting the
structure into several basic elements (junction, bend and T-junction). Each element is
analyzed separately using the mode-matching method, and then the structure is assimilated to
a network made up of these basic elements. Since the final result requires optimization
because it does not correspond perfectly to the specifications of the structure to be
synthesized, we have studied and used three optimization techniques: genetic algorithms,
particle swarm optimization and neural networks.
To validate our synthesis method, we have successfully applied it to the synthesis of the
Tchebychev, Dual-mode, and generalized Tchebychev band-pass filters. |
Diplôme : |
Doctorat en sciences |
En ligne : |
../theses/electronique/BOU7118.pdf |
Format de la ressource électronique : |
pdf |
Permalink : |
index.php?lvl=notice_display&id=10483 |
|