998 resultados para Sistemas de comunicação em banda larga - Regulamentação
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Investiga os fatores da decisão de entrada e das estratégias de fornecimento de componentes dos fabricantes multinacionais de terminais móveis celulares no Brasil. Aponta considerações sobre os fundamentos da relação de custo e estratégia das decisões de suprimento das empresas multinacionais, bem como sobre implicações da decisão de fornecimento das multinacionais quanto à exploração das concessões de telefonia celular da Banda B a da estrutura de distribuição de terminais móveis celulares no país
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O telefone celular teve uma grande evolução nos últimos anos, o que antes era utilizado exclusivamente para transmissão de voz, hoje tem características avançadíssimas incluindo várias evoluções tecnológicas. Dentro deste aspecto, a inovação que o LTE (Long Term Evolution) vem demonstrando em suas características realmente se destacam em relação as tecnologias que a antecederam e representa grande evolução se comparada com as outras. Foi desenvolvida no âmbito do projeto 3GPP e (3rd Generation Partners Project) promovido pelo Instituto Europeu de Normalização na área de Telecomunicações ETSI (European Telecommunications Standard Institute). As operadoras que demonstram interesse em disponibilizar esta tecnologia buscam introduzir a flexibilidade do LTE para ir ao encontro dos objetivos de suas redes existentes, espectro e negócios para banda larga móvel e serviços multimídia. O LTE promete taxas de download de 326,4Mbps, taxas de upload de 86,4Mbps, RTT ( ROUND TRIP TIME ) menos de 10 mile segundos e raio das células podendo atingir até 100km. O sistema 4G (LTE) é um sistema integrado completamente baseado em IP, que é resultado de tecnologias conectadas por fios e sem fios disponibilizando um custo acessível, atendendo as exigências de uma rede de comunicação (Wireless), serviços de transferência de mensagens multimídias, conversa com vídeo, televisão móvel de alta definição, serviços mínimos como voz e dados entre outras vantagens. Desta forma, este estudo tem por objetivo analisar quais são as oportunidades e os desafios no mercado de telefonia móvel de Telecomunicações ao implantar o sistema de tecnologia LTE demonstrando o benefício dos fabricantes e operadoras no sentido econômico e tecnológico.
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Nesta tese realizamos três trabalhos que envolvem diferentes aspectos da espectroscopia resolvida no tempo. No primeiro discutimos brevemente a teoria e as principais técnicas para a caracterização de pulsos curtos. Analisamos detalhamente uma destas técnicas e propusemos modi cações que possibilitaram o barateamento dos custos da montagem e, além disso, introduziram novas características que sanaram alguns problemas que a montagem original apresentava e que também possibilitaram uma melhor caracterização da própria técnica. Descrevemos cuidadosamente as condições que devem ser satisfeitas pela geometria dos feixes e pelos componentes da montagem para obter uma caracterização correta dos pulsos curtos. Também apresentamos o procedimento de calibração do sistema. Pulsos com diferentes tempos e funções de fase foram caracterizados e os resultados foram validados por testes de con abilidade da informação recuperada. O trabalho seguinte foi o estudo da dinâmica molecular em líquidos puros e em misturas através da técnica efeito Kerr óptico resolvido no tempo, que é uma técnica do tipo bombeio e prova não ressonante, usando um sistema laser Ti:Sa ra com pulsos de 170 fs, centrados em 800 nm. As moléculas estudadas foram o dissulfeto de carbono (CS2), benzeno (C6H6), alilbenzeno (C9H10) e o poliestireno (PS). A teoria necessária para descrever os resultados medidos foi desenvolvida no regime temporal. O modelo de Debye para a relaxação difusiva da anisotropia orientacional descreve a componente de tempos longa, acima de um picosegundo. Partindo do Hamiltoniano de interação, desenvolvemos a teoria da função resposta linear, chegando a uma expressão para a relaxação da polarizabilidade anisotrópica, necessária para descrever os tempos curtos (subpicosegundos). Além disso, a passagem para o regime espectral utilizando somente dados experimentais, ou seja, sem a necessidade de levar em conta modelos especí cos, também foi discutida. Os resultados mostram que os tempos difusivos tanto nos líquidos puros quanto nas misturas seguem a equação de Debye-Stokes-Einstein que prevê um aumento deste tempo para viscosidades maiores. Os tempos curtos são analisados em termos da componente não difusiva da resposta espectral associada à dinâmica molecular. As alterações do espectro foram quanti cadas e a explicação para as mudanças observadas foi dada em termos das con gurações estruturais de interação que levam a uma alteração do potencial intermolecular dentro do qual as moléculas executam movimentos libracionais. Por último, investigamos a questão do modelamento de pulsos de luz incoerente. Para isto trabalhamos com um laser de corante banda larga sem elemento de seleção espectral intracavidade. A técnica utilizada foi o espalhamento forçado de luz ao qual foi acoplado um modelador composto por uma grade, uma lente e uma máscara que alterava a função de fase espectral relativa entre os feixes formadores da grade transiente na amostra de interesse. Realizamos uma análise detalhada desta montagem e obtivemos expressões para ajustar os dados medidos. Os resultados mostram que a função de correlação pode ser alterada de forma especí ca através da escolha de determinadas funções de fase espectrais.
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Esta dissertação tem como objetivo explorar como o governo do Estado de São Paulo pode utilizar a tecnologia para aproximar o Estado dos cidadãos por meio de aplicativos móveis. A intensificação do uso dos dispositivos móveis pela população brasileira e a recente ampliação do uso de m-government como esforço na busca da melhoria da prestação de serviços ao cidadão pelo Estado de São Paulo nas duas últimas décadas configuram o cenário em que foi estabelecido o Termo de Referência da Subsecretaria de Tecnologia e Serviços ao Cidadão, da Secretaria de Governo do Estado de São Paulo. Neste trabalho, houve a integração de métodos de pesquisa de diferentes naturezas: revisão da literatura, entrevistas semi-estruturadas com atores influentes na formulação das políticas públicas, avaliação da política de aplicativos móveis do Governo do Estado de São Paulo e dos próprios aplicativos, benchmarking de experiências internacionais e diagnóstico analítico da situação atual. Foram identificados como pontos fortes a importância da existência de uma subsecretaria próxima ao Governador, a criação de um aplicativo central que facilita o conhecimento dos aplicativos do governo existentes e a existência de uma empresa pública de processamento de dados com competência para desenvolver serviços e aplicativos. Como desafios foram identificados a estratégia de comunicação e divulgação dos aplicativos, ausência de legislação sobre m-government e a falta de uma política pública e planejamento estratégico consistente para orientar melhorias e alcance de resultados com rapidez e eficiência. Recomenda-se, principalmente: 1) que a Subsecretaria de Tecnologia e Serviços ao Cidadão atue como órgão central para além de emitir as diretrizes de e-goverment, também emanar as de m-government, 2) que o foco governamental seja na orientação do serviço ao cidadão e não primordialmente ao desenvolvimento de aplicativos e 3) a formulação e implementação de uma política clara para a difusão de m-government que seja passível de ser entendida e replicada por todos os atores governamentais e permeie todos os órgãos da administração direta e indireta, não se restringindo às áreas de TI. A abordagem de m-government ainda é incipiente no Brasil, necessitando de novos estudos acadêmicos complementares para consolidação de massa crítica sobre o tema. Este assunto receberá atenção e investimentos governamentais nos próximos anos. Conclui-se que o Estado de São Paulo está em uma boa direção, mas para avançar com efetividade os gestores estaduais devem se apropriar das melhores práticas da experiência internacional em m-government, havendo um longo caminho para melhorar o relacionamento entre o Estado e os cidadãos com o uso de aplicativos móveis, com a abordagem de um governo único para um cidadão único.
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Over the last decades, the digital inclusion public policies have significantly invested in the purchase of hardwares and softwares in order to offer technology to the Brazilian public teaching institutions, specifically computers and broadband Internet. However, the teachers education to handle these artefacts is put away, even though there is some demand from the information society. With that, this dissertation chooses as an object of study the digital literacy practices performed by 38 (thirty-eight) teachers in initial and continuous education by means of the extension course Literacies and technologies: portuguese language teaching and cyberculture demands. In this direction, we aim at investigating the digital literacy practices of developing teachers in three specific moments: before, while and after this extension action with the intent to (i) delineate the digital literacy practices performed by the collaborators before the formative action; (ii) to narrate the literacy events made possible by the extension course; (iii) to investigate the contributions of the education course to the collaborators teaching practice. We sought theoretical contributions in the literacy studies (BAYNHAM, 1995; KLEIMAN, 1995; HAMILTON; BARTON; IVANIC, 2000), specifically when it comes to digital literacy (COPE, KALANTZIS, 2000; BUZATO, 2001, 2007, 2009; SNYDER, 2002, 2008; LANKSHEAR & KNOBEL, 2002, 2008) and teacher education (PERRENOUD, 2000; SILVA, 2001). Methodologically, this virtual ethnography study (KOZINETS, 1997; HINE, 2000) is inserted into the field of Applied Linguistics and adopts a quali-quantitative research approach (NUNAN, 1992; DÖRNYEI, 2006). The data analysis permitted to evidentiate that (i) before the course, the digital literacy practices focused on the personal and academic dimensions of their realities at the expense of the professional dimension; (ii) during the extension action, the teachers collaboratively took part in the hybrid study sessions, which had a pedagogical focus on the use of ICTs, accomplishing the use of digital literacy practices - unknown before that; (iii) after the course, the attitude of the collaborator teachers concerning the use of ICTs on their regular professional basis had changed, once those teachers started to effectively make use of them, promoting social visibility to what was produced in the school. We also observed that teachers in initial education acted as more experienced peers in collaborative learning process, offering support scaffolding (VYGOTSKY, 1978; BRUNER, 1985) to teachers in continuous education. This occurred because of the undergraduates actualize digital literacy practices were more sophisticated, besides the fact being integrate generation Y (PRENSKY, 2001)
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This dissertation describes the use of new Technologies of the Areas of Telecommunications, Networks and Industrial Automation for increase of the Operational Safety and obtaining of Operational Improvements in the Platforms Petroliferous Offshore. The presented solution represents the junction of several modules of these areas, making possible the Supervision and Contrai of the Platforms Petroliferous Offshore starting from an Station Onshore, in way similar to a remote contral, by virtue of the visualization possibility and audition of the operational area through cameras and microphones, looking the operator of the system to be "present" in the platform. This way, it diminishes the embarked people's need, increasing the Operational Safety. As consequence, we have the obtaining of Operational Improvements, by virtue of the use of a digital link of large band it releases multi-service. In this link traffic simultaneously digital signs of data (Ethernet Network), telephony (Phone VoIP), image and sound
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This work presents the development of new microwaves structures, filters and high gain antenna, through the cascading of frequency selective surfaces, which uses fractals Dürer and Minkowski patches as elements, addition of an element obtained from the combination of the other two simple the cross dipole and the square spiral. Frequency selective surfaces (FSS) includes a large area of Telecommunications and have been widely used due to its low cost, low weight and ability to integrate with others microwaves circuits. They re especially important in several applications, such as airplane, antennas systems, radomes, rockets, missiles, etc. FSS applications in high frequency ranges have been investigated, as well as applications of cascading structures or multi-layer, and active FSS. In this work, we present results for simulated and measured transmission characteristics of cascaded structures (multilayer), aiming to investigate the behavior of the operation in terms of bandwidth, one of the major problems presented by frequency selective surfaces. Comparisons are made with simulated results, obtained using commercial software such as Ansoft DesignerTM v3 and measured results in the laboratory. Finally, some suggestions are presented for future works on this subject
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The frequency selective surfaces, or FSS (Frequency Selective Surfaces), are structures consisting of periodic arrays of conductive elements, called patches, which are usually very thin and they are printed on dielectric layers, or by openings perforated on very thin metallic surfaces, for applications in bands of microwave and millimeter waves. These structures are often used in aircraft, missiles, satellites, radomes, antennae reflector, high gain antennas and microwave ovens, for example. The use of these structures has as main objective filter frequency bands that can be broadcast or rejection, depending on the specificity of the required application. In turn, the modern communication systems such as GSM (Global System for Mobile Communications), RFID (Radio Frequency Identification), Bluetooth, Wi-Fi and WiMAX, whose services are highly demanded by society, have required the development of antennas having, as its main features, and low cost profile, and reduced dimensions and weight. In this context, the microstrip antenna is presented as an excellent choice for communications systems today, because (in addition to meeting the requirements mentioned intrinsically) planar structures are easy to manufacture and integration with other components in microwave circuits. Consequently, the analysis and synthesis of these devices mainly, due to the high possibility of shapes, size and frequency of its elements has been carried out by full-wave models, such as the finite element method, the method of moments and finite difference time domain. However, these methods require an accurate despite great computational effort. In this context, computational intelligence (CI) has been used successfully in the design and optimization of microwave planar structures, as an auxiliary tool and very appropriate, given the complexity of the geometry of the antennas and the FSS considered. The computational intelligence is inspired by natural phenomena such as learning, perception and decision, using techniques such as artificial neural networks, fuzzy logic, fractal geometry and evolutionary computation. This work makes a study of application of computational intelligence using meta-heuristics such as genetic algorithms and swarm intelligence optimization of antennas and frequency selective surfaces. Genetic algorithms are computational search methods based on the theory of natural selection proposed by Darwin and genetics used to solve complex problems, eg, problems where the search space grows with the size of the problem. The particle swarm optimization characteristics including the use of intelligence collectively being applied to optimization problems in many areas of research. The main objective of this work is the use of computational intelligence, the analysis and synthesis of antennas and FSS. We considered the structures of a microstrip planar monopole, ring type, and a cross-dipole FSS. We developed algorithms and optimization results obtained for optimized geometries of antennas and FSS considered. To validate results were designed, constructed and measured several prototypes. The measured results showed excellent agreement with the simulated. Moreover, the results obtained in this study were compared to those simulated using a commercial software has been also observed an excellent agreement. Specifically, the efficiency of techniques used were CI evidenced by simulated and measured, aiming at optimizing the bandwidth of an antenna for wideband operation or UWB (Ultra Wideband), using a genetic algorithm and optimizing the bandwidth, by specifying the length of the air gap between two frequency selective surfaces, using an optimization algorithm particle swarm
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The microstrip antennas are in constant evidence in current researches due to several advantages that it presents. Fractal geometry coupled with good performance and convenience of the planar structures are an excellent combination for design and analysis of structures with ever smaller features and multi-resonant and broadband. This geometry has been applied in such patch microstrip antennas to reduce its size and highlight its multi-band behavior. Compared with the conventional microstrip antennas, the quasifractal patch antennas have lower frequencies of resonance, enabling the manufacture of more compact antennas. The aim of this work is the design of quasi-fractal patch antennas through the use of Koch and Minkowski fractal curves applied to radiating and nonradiating antenna s edges of conventional rectangular patch fed by microstrip inset-fed line, initially designed for the frequency of 2.45 GHz. The inset-fed technique is investigated for the impedance matching of fractal antennas, which are fed through lines of microstrip. The efficiency of this technique is investigated experimentally and compared with simulations carried out by commercial software Ansoft Designer used for precise analysis of the electromagnetic behavior of antennas by the method of moments and the neural model proposed. In this dissertation a study of literature on theory of microstrip antennas is done, the same study is performed on the fractal geometry, giving more emphasis to its various forms, techniques for generation of fractals and its applicability. This work also presents a study on artificial neural networks, showing the types/architecture of networks used and their characteristics as well as the training algorithms that were used for their implementation. The equations of settings of the parameters for networks used in this study were derived from the gradient method. It will also be carried out research with emphasis on miniaturization of the proposed new structures, showing how an antenna designed with contours fractals is capable of a miniaturized antenna conventional rectangular patch. The study also consists of a modeling through artificial neural networks of the various parameters of the electromagnetic near-fractal antennas. The presented results demonstrate the excellent capacity of modeling techniques for neural microstrip antennas and all algorithms used in this work in achieving the proposed models were implemented in commercial software simulation of Matlab 7. In order to validate the results, several prototypes of antennas were built, measured on a vector network analyzer and simulated in software for comparison
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The exponential growth in the applications of radio frequency (RF) is accompanied by great challenges as more efficient use of spectrum as in the design of new architectures for multi-standard receivers or software defined radio (SDR) . The key challenge in designing architecture of the software defined radio is the implementation of a wide-band receiver, reconfigurable, low cost, low power consumption, higher level of integration and flexibility. As a new solution of SDR design, a direct demodulator architecture, based on fiveport technology, or multi-port demodulator, has been proposed. However, the use of the five-port as a direct-conversion receiver requires an I/Q calibration (or regeneration) procedure in order to generate the in-phase (I) and quadrature (Q) components of the transmitted baseband signal. In this work, we propose to evaluate the performance of a blind calibration technique without additional knowledge about training or pilot sequences of the transmitted signal based on independent component analysis for the regeneration of I/Q five-port downconversion, by exploiting the information on the statistical properties of the three output signals
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior
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Recently, planar antennas have been studied due to their characteristics as well as the advantages that they offers when compared with another types of antennas. In the mobile communications area, the need for this kind of antennas have became each time bigger due to the intense increase of the mobile communications this sector. That needs of antennas which operate in multifrequency and wide bandwidth. The microstrip antennas presents narrow bandwidth due the loss in the dielectric generated by radiation. Another limitation is the radiation pattern degradation due the generation of surface waves in the substrate. In this work some used techniques to minimize the disadvantages (previously mentioned) of the use of microstrip antennas are presented, those are: substrates with PBG material - Photonic Bandgap, multilayer antennas and with stacked patches. The developed analysis in this work used the TTL - Transverse Transmission Line method in the domain of Fourier transform, that uses a component of propagation in the y direction (transverse to the direction real of propagation z), treating the general equations of electric and magnetic field as functions of Ey and Hy. One of the advantages of this method is the simplification of the field equations. therefore the amount of equations lesser must the fields in directions x and z be in function of components Ey and Hy. It will be presented an brief study of the main theories that explain the superconductivity phenomenon. The BCS theory. London Equations and Two Fluids model will be the theories that will give support the application of the superconductors in the microfita antennas. The inclusion of the superconductor patch is made using the resistive complex contour condition. This work has as objective the application of the TTL method to microstrip structures with single and multilayers of rectangular patches, to obtaining the resonance frequency and radiation pattern of each structure
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This work presents a theoretical and numerical analysis of structures using frequency selective surfaces applied on patch antennas. The FDTD method is used to determine the time domain reflected fields. Applications of frequency selective surfaces and patch antennas cover a wide area of telecommunications, especially mobile communications, filters and WB antennas. scattering parameters are obteained from Fourier Transformer of transmited and reflected fields in time domain. The PML are used as absorbing boundary condition, allowing the determination of the fields with a small interference of reflections from discretized limit space. Rectangular patches are considered on dielectric layer and fed by microstrip line. Frequency selective surfaces with periodic and quasi-periodic structures are analyzed on both sides of antenna. A literature review of the use of frequency selective surfaces in patch antennas are also performed. Numerical results are also compared with measured results for return loss of analyzed structures. It is also presented suggestions of continuity to this work
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Recently, planar antennas have attracted interest due to its characteristics as well as the advantages they offer compared to other types of antennas. In the area of mobile communications the need for such antennas has become increasingly intense due to development, which requires antennas that operate in multifrequency and broadband. The microstrip antennas have narrow bandwidth due to losses in the dielectric caused by irradiation. Another limitation is the radiation pattern degradation due to generation of surface waves in the substrate. Some techniques are being developed to minimize this bandwidth limitation, as is the case in the study of type materials PBG - Photonic Band Gap, to compose the dielectric material. The analysis developed in this work were performed with use of the method LTT - Transverse Transmission Line, in the field of Fourier transform that uses a component propagating in the y direction (transerve real direction of propagation z), thus treating the general equations of the fields electric and magnetic fields as a functions of y E and Hy . This work has as main objective the method LTT structures resonator line slot with four layers of material photonic PBG, for obtaining the complex resonant frequency and efficiency of this structure. PBG theory is applied to obtain the relative permittivity for the substrate biases sep compounds photonic material. Numerical-computational results in graph form in two dimensions for all the analysis are presented for the proposed structures that have photonic materials, as substrates
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The modern society depends on an efficient communications system able to of transmitting and receiving information with a higher speed and reliability every time. The need for ever more efficient devices raises optimization techniques of microstrip devices, such as techniques to increase bandwidth: thicker substrates and substrate structures with EBG (Electromagnetic Band Gap) and PBG (Photonic Band Gap). This work has how aims the study of the application of PBG materials on substrates of planar structures in microstrip, more precisely in directional quadrature couplers and in rat-race and impedance of transformers. A study of the planar structures in microstrip and substrates EBG is presented. The PBG substrates can be used to optimize the radiation through the air, thus reducing the occurrence of surface waves and the resulting diffraction edge responsible for degradation of radiation pattern. Through specific programs in FORTRAN Power Station obtained the frequencies and couplings for each structure. Are used the program PACMO - Computer Aided Design in Microwave. Results are obtained of the frequency and coupling devices, ranging the frequency band used (cellular communication and Wimax systems) and the permittivity of the substrate, comparing the results of conventional material and PBG materials in the s and p polarizations.