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Antenas monopolo planar com patch em anel circular para sistemas UWBSilva, Bruna Alice Lima da 14 June 2010 (has links)
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Previous issue date: 2010-06-14 / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior / The microstrip antennas are largely used in wireless communication systems due to their low cost, weight, less complex construction and manufacturing, in addition to its
versatility. UWB systems have emerged as an alternative to wireless communications over short distances because they offer of higher capacity and lower multipath distortion than
other systems with the same purpose. Combining the advantages of microstrip antennas to the characteristics of UWB, it is possible to develop more and more smaller devices, with diverse geometries to operate satisfactorily in these systems. This paper aims to propose alternatives to microstrip antennas for UWB systems operate in the range between 3.1 and 10.6 GHz, with a patch on circular ring. Some techniques are analyzed and employed to increase the bandwidth of proposed antenna: the insertion of a parasitic elements and a rectangular slit in the displaced ground plane. For this, key issues are presented as the basic principles of UWB systems, the fundamental theory of antennas and microstrip antennas. The simulations and experimental characterization of constructed antennas are presented, as well as analysis of
parameters such as bandwidth and radiation pattern / As antenas de microfita s?o amplamente utilizadas nos sistemas de comunica??o sem fio devido ?s suas caracter?sticas de baixo custo, peso, menor complexidade de constru??o e fabrica??o, al?m de sua versatilidade. Os sistemas UWB surgiram como uma alternativa ?s comunica??es sem fio de curtas dist?ncias por oferecerem maior capacidade e menor distor??o por multipercurso que outros sistemas com a mesma finalidade. Aliando as vantagens das antenas de microfita ?s caracter?sticas do UWB ? poss?vel desenvolver dispositivos cada vez menores e com geometrias diversificadas para operar satisfatoriamente nesses sistemas. Este trabalho tem como objetivo propor alternativas de antenas de microfita para operar em sistemas UWB, na faixa entre 3,1 e 10,6 GHz, com patch em anel circular. S?o empregadas e analisadas algumas t?cnicas para aumentar a largura de banda das antenas propostas: a inser??o de elementos parasitas e de uma fenda retangular no plano terra deslocado. Para isto, s?o apresentados temas fundamentais como os princ?pios b?sicos dos sistemas UWB, a teoria fundamental de antenas e antenas de microfita. S?o apresentadas as simula??es e caracteriza??es experimentais das antenas constru?das, bem como uma an?lise de par?metros como a largura de banda e o diagrama de radia??o
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Nouvelles architectures d’antennes à éléments parasites pour la polarisation circulaire : Application à la conception d’une antenne en bande X pour nanosatellite / New architectures of antennas with parasitic elemen ts for circular polarization : Application for the design of an X-band antenna for Nano-SatelliteFouany, Jamil 10 December 2015 (has links)
Les investigations présentées dans ce mémoire de doctorat portent sur la synthèse d’antennes à éléments parasites à polarisation circulaire. Une stratégie de conception rapide et efficace est développée et mise en oeuvre pour synthétiser des diagrammes de rayonnement à multiples objectifs. Des éléments parasites peuvent ainsi être associés à d’autres antennes pour en améliorer les performances. Deux antennes ont été imaginées. Un premier démonstrateur d’AEP directive à polarisation circulaire et à bande élargie a été conçu. Ce démonstrateur qui se compose de l’association de 18 dipôles parasites avec une antenne spirale logarithmique a été fabriqué et mesuré. Un second prototype d’AEP a été inventé dans le cadre d’un projet spatiale «Antenne Isoflux Bande-X pour nano-satellite». L’antenne compacte a été développée pour supporter les débits de transmission des futures missions des plateformes Nano-Satellite « Cube-Sat ». Ce prototype associe une antenne patch avec une distribution de 12 dipôles parasites pour réaliser une couverture Isoflux en polarisation circulaire. Cette antenne a été mesurée sur sa plateforme d’accueil. / The investigations presented in this thesis propose the synthesis of circularly polarized antennas with parasitic elements. An innovative and effective strategy is developed and implemented to synthesize a multi-objective radiation patterns. Parasitic elements can also be associated with other antennas to improve the performances. Two antennas were suggested. The first one represents a wide band circularly polarized directive antenna with parasitic elements. This demonstrator consists of the combination of 18 parasitic dipoles with a logarithmic spiral antenna; this antenna was manufactured and measured. The second antenna is a part of a space project « Isoflux X-Band antenna for Nano-Satellite». This compact antenna has been developed to support transmission rates for future mission.
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Conception de systèmes antennaires MIMO multi-standards LTE pour les nœuds relais / Design of LTE MIMO antenna systems dedicated to relay nodesSadaoui, Lamia 13 December 2018 (has links)
Pour déployer la quatrième génération de téléphonie 4G/LTE ou « LTE advanced », les opérateurs mobiles sont confrontés à de fortes contraintes : d’une part assurer une bonne couverture géographique mais aussi une excellente qualité de service. Ceci nécessite une ingénierie du réseau qui dépasse largement ce qui a été mis en place pour les réseaux GSM ou 3G. L’industrie des télécoms a créé pour cela le concept de « small cells » ou petites cellules qui viennent en renfort des « macrocells » ou grosses cellules. Cette thèse cherche à apporter une solution à cette problématique à travers notamment le développement d'antennes pour « smart cells ». Cette étude, supportée par le projet FUI NETCOM, doit permettre aux opérateurs d’étendre la couverture et la capacité de leurs réseaux à moindre coût tout en préservant la qualité de service. Pour cela, l’objectif plus précis de cette thèse est de concevoir un système multi-antennaire multistandard MIMO (Multiple-Input Multiple-Output) dédié à des noeuds relais pour le déploiement de la quatrième génération de téléphonie LTE. Cette conception doit être compatible avec 3 bandes de fréquences du LTE : (700-900 MHz) pour les bandes LTE 700 et LTE 800, (1710-1880 MHz) pour les bandes GSM 1800 / LTE 1800 et la dernière (2500-2690 MHz) pour le LTE 2600. Pour cela, nous avons étudié tout d’abord un système à 4 accès mono-bande, en nous concentrant uniquement sur la bande basse de 700 à 900 MHz. Dans une seconde étude, nous avons cherché à couvrir les deux autres bandes supérieures en nous servant d’éléments parasites pour constituer un système MIMO à 4 accès tri-bande. Nous avons ensuite étudié l’influence de l’environnement proche du système antennaire, avec la présence d’un radiateur métallique. Un problème important et fréquent dans les systèmes multi-antennes étant le couplage, nous avons également étudié et réalisé une technique de découplage. Celle-ci servira à isoler les éléments rayonnants à espacement réduit, conçus pour nos trois bandes LTE. / To deploy the fourth generation called 4G/LTE or "LTE advanced", mobile operators face strong constraints: they must ensure a good geographic coverage but also an excellent quality of service. This requires new methods that go far beyond what has been implemented for GSM or 3G networks. The telecom industry has created the concept of "small cells" that reinforce the "macrocells" deployed by the operators. This thesis tries to provide a solution to this problem and more particularly through the development of antennas for a product called "smart cell". This study, supported by the FUI project NETCOM, should enable mobile operators to extend the coverage and capacity of their networks at a lower cost while maintaining a good quality of service. To do that, the aim of this thesis more particularly is the design of a multi-band multi-antennas MIMO system (Multiple-Input Multiple-Output) dedicated to relay nodes for the deployment of the fourth generation 4G/LTE or "LTE advanced". The antenna design considers the coverage of the three LTE operating frequency bands and must be compatible with them. The (700-900 MHz) frequency band is used for the LTE 700 and LTE 800 bands, (1710-1880 MHz) for the GSM 1800/LTE 1800 bands and the last (2500-2690 MHz) for the LTE 2600 bands. In our first study, a reference system with 4 access was studied in simulation and measured, for only the low band 700-900 MHz. In a second study, we tried to cover the other two higher bands to have a tri-band system using the parasitic elements to get a three-band MIMO system with 4 access. We studied then, the influence of the environment close to the antenna system, with the presence of a metallic radiator. As we often encounter a frequent problem in multi-antenna systems which is the coupling problem between the different access of a multi antenna system, so we have studied and realized a decoupling technique. This technique was used to enhance the isolation between the different access.
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Optimalizace modelu odrušovacího filtru / Optimization of EMI filter CircuitrySurovec, Vojtěch January 2011 (has links)
In introduction of work, I presented the state of the art of measuring insertion loss of the EMI filter and the description of individual methods of measuring is also included. After that I dealt with global optimization methods and some of them I theoretically described. Mainly PSO method was studied carefully, and the principle of optimization in details are presented in the thesis, because this method was used for optimization of the filters parameters in the thesis. Next part of work deals with theoretical and mathematical expression of insertion loss of the EMI filters. Due to the mathematical expression of the insertion loss, the values of parasitic elements of given filter have been optimized in different measuring systems. This optimization was applied on synthetic data. By this step the functionality of optimization was proved and also the fitness function has been tuned and optimised. The last part of thesis works with optimization on measured data of given filters. I found out inaccuracy in mathematical expression of given model of EMI filter, therefore it was necessary to come up with the new filter model. The accuracy increases by using the new filter model. In next step the new model was enlarged by new spurious components.
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Modely odrušovacích filtrů / Models of EMC filtersKejík, Zdeněk January 2009 (has links)
Basic problems of the EMI mains filter is explained in the introduction of this thesis. These problems appear during the measurement of insertion loss of filters and by design of EMI mains filter. The important problem is uncertainly of the terminating impedances. Eventualities measurement insertion loss of EMI mains filter and motivation of creation filter models are shown. The following part of this project shows the electronic components, from which are realized the EMI mains filter. Parasitic properties of these real devices are also discussed. The circuitry of EMI mains filter is described by the Modified Nodal Voltage Method. The optimization method called Participle Swarm Optimization is introduced, too. Basic principle and terminology are mentioned. The third part of this project is focused on the own filter and spurious components. Influence of own filter and spurious filters components on insertion loss curve are showed. Magnetic factor coefficient k is searched by the optimization method PSO. The last part of this thesis deals with creation of the alternative circuits with spurious filters components. The performances of the alternative circuits were compared with the measured data for symmetrical and asymmetrical measurement setup. The breakages in the insertion loss curve were used for determining the spurious components.
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