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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
21

An?lise e projeto de superf?cies seletivas de frequ?ncia com elementos pr?-fractais para aplica??es em comunica??es indoor

N?brega, Clarissa de Lucena 09 April 2013 (has links)
Made available in DSpace on 2014-12-17T14:55:11Z (GMT). No. of bitstreams: 1 ClarissaLN_TESE.pdf: 4153617 bytes, checksum: 6a9b7ed40b1f66da758afee4efaf74e9 (MD5) Previous issue date: 2013-04-09 / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior / In this thesis, a frequency selective surface (FSS) consists of a two-dimensional periodic structure mounted on a dielectric substrate, which is capable of selecting signals in one or more frequency bands of interest. In search of better performance, more compact dimensions, low cost manufacturing, among other characteristics, these periodic structures have been continually optimized over time. Due to its spectral characteristics, which are similar to band-stop or band-pass filters, the FSSs have been studied and used in several applications for more than four decades. The design of an FSS with a periodic structure composed by pre-fractal elements facilitates the tuning of these spatial filters and the adjustment of its electromagnetic parameters, enabling a compact design which generally has a stable frequency response and superior performance relative to its euclidean counterpart. The unique properties of geometric fractals have shown to be useful, mainly in the production of antennas and frequency selective surfaces, enabling innovative solutions and commercial applications in microwave range. In recent applications, the FSSs modify the indoor propagation environments (emerging concept called wireless building ). In this context, the use of pre-fractal elements has also shown promising results, allowing a more effective filtering of more than one frequency band with a single-layer structure. This thesis approaches the design of FSSs using pre-fractal elements based on Vicsek, Peano and teragons geometries, which act as band-stop spatial filters. The transmission properties of the periodic surfaces are analyzed to design compact and efficient devices with stable frequency responses, applicable to microwave frequency range and suitable for use in indoor communications. The results are discussed in terms of the electromagnetic effect resulting from the variation of parameters such as: fractal iteration number (or fractal level), scale factor, fractal dimension and periodicity of FSS, according the pre-fractal element applied on the surface. The analysis of the fractal dimension s influence on the resonant properties of a FSS is a new contribution in relation to researches about microwave devices that use fractal geometry. Due to its own characteristics and the geometric shape of the Peano pre-fractal elements, the reconfiguration possibility of these structures is also investigated and discussed. This thesis also approaches, the construction of efficient selective filters with new configurations of teragons pre-fractal patches, proposed to control the WLAN coverage in indoor environments by rejecting the signals in the bands of 2.4~2.5 GHz (IEEE 802.11 b) and 5.0~6.0 GHz (IEEE 802.11a). The FSSs are initially analyzed through simulations performed by commercial software s: Ansoft DesignerTM and HFSSTM. The fractal design methodology is validated by experimental characterization of the built prototypes, using alternatively, different measurement setups, with commercial horn antennas and microstrip monopoles fabricated for low cost measurements / Nesta tese, uma superf?cie seletiva de frequ?ncia (FSS) consiste de uma estrutura peri?dica bidimensional montada sobre um substrato diel?trico, que ? capaz de selecionar sinais em uma ou mais faixas de frequ?ncias de interesse. Em busca da obten??o de um melhor desempenho, dimens?es mais compactas, baixo custo de fabrica??o, entre outras caracter?sticas, estas estruturas peri?dicas t?m sido continuamente otimizadas ao longo do tempo. Devido ?s suas caracter?sticas espectrais, que s?o similares as de filtros rejeita-faixa ou passa-faixa, as FSSs t?m sido estudadas e usadas em aplica??es diversas por mais de quatro d?cadas. O projeto de uma FSS com uma estrutura peri?dica composta de elementos pr?fractais facilita a sintonia destes filtros espaciais e o ajuste de seus par?metros eletromagn?ticos, possibilitando uma constru??o compacta, que, em geral, apresenta uma resposta est?vel em frequ?ncia e desempenho superior em rela??o ? sua contrapartida euclidiana. As propriedades ?nicas dos fractais geom?tricos t?m-se mostrado bastante ?teis, principalmente para a constru??o de antenas e superf?cies seletivas de frequ?ncia, permitindo solu??es inovadoras e aplica??es comerciais na faixa de micro-ondas. Em aplica??es mais recentes, as FSSs modificam os ambientes de propaga??o indoor (conceito emergente chamado de wireless building ). Neste contexto, o uso de elementos pr?-fractais tamb?m tem apresentado resultados promissores, tornando mais efetiva a filtragem de mais de uma faixa de frequ?ncias com uma estrutura de camada simples. Esta tese aborda o projeto de FSSs com elementos pr?-fractais baseados nas geometrias de Vicsek, Peano e dos ter?gonos, que funcionam como filtros espaciais do tipo rejeita-faixa. As propriedades de transmiss?o das superf?cies peri?dicas s?o analisadas para a concep??o de dispositivos eficientes, compactos e com respostas est?veis em frequ?ncia, aplic?veis na faixa de micro-ondas e adequados para utiliza??es em comunica??es indoor. Os resultados s?o discutidos em termos do efeito eletromagn?tico decorrente da varia??o de par?metros como, n?mero de itera??es fractais (ou n?vel do fractal), fator de escala, dimens?o fractal e periodicidade da FSS, de acordo com o elemento pr?-fractal utilizado. A an?lise da influ?ncia da dimens?o fractal sobre as propriedades de resson?ncia de uma FSS ? uma contribui??o nova no que diz respeito ?s pesquisas com dispositivos de micro-ondas que utilizam geometrias fractais. Devido ?s caracter?sticas pr?prias e a forma geom?trica dos elementos pr?-fractais de Peano, a possibilidade de reconfigura??o destas estruturas tamb?m ? investigada e discutida. Esta tese aborda ainda, a constru??o de filtros seletivos eficientes com novas configura??es de patches pr?-fractais do tipo ter?gonos, propostos para controle de cobertura WLAN em ambientes indoor, rejeitando os sinais nas faixas de 2,4~2,5 GHz (IEEE 802.11b) e 5,0~6,0 GHz (IEEE 802.11a). As FSSs s?o analisadas inicialmente por meio de simula??es executadas pelos programas comerciais Ansoft DesignerTM e HFSSTM. A metodologia de projeto ? validada atrav?s da caracteriza??o experimental dos prot?tipos constru?dos utilizando, alternativamente, diferentes setups de medi??o, com antenas corneta comerciais e monopolos de microfita de fabrica??o pr?pria para medi??es de baixo custo
22

Estudo emp?rico de an?lise da compatibilidade de aplica??es Android com diferentes vers?es da API da plataforma

Ara?jo, Adorilson Bezerra de 14 February 2017 (has links)
Submitted by Automa??o e Estat?stica (sst@bczm.ufrn.br) on 2017-09-04T20:48:36Z No. of bitstreams: 1 AdorilsonBezerraDeAraujo_DISSERT.pdf: 1520413 bytes, checksum: c9a4bb003f34cd8b94eb21679d5d37e0 (MD5) / Approved for entry into archive by Arlan Eloi Leite Silva (eloihistoriador@yahoo.com.br) on 2017-09-06T20:51:39Z (GMT) No. of bitstreams: 1 AdorilsonBezerraDeAraujo_DISSERT.pdf: 1520413 bytes, checksum: c9a4bb003f34cd8b94eb21679d5d37e0 (MD5) / Made available in DSpace on 2017-09-06T20:51:39Z (GMT). No. of bitstreams: 1 AdorilsonBezerraDeAraujo_DISSERT.pdf: 1520413 bytes, checksum: c9a4bb003f34cd8b94eb21679d5d37e0 (MD5) Previous issue date: 2017-02-14 / A plataforma Android ? atualmente a mais popular para o desenvolvimento de aplica??es m?veis, ocupando mais de 80% do mercado de sistemas operacionais para dispositivos m?veis, criando uma demanda por customiza??es de aplica??es para lidar com diferentes dispositivos, tais como, tamanho de tela, poder de processamento e mem?ria dispon?vel, idiomas e necessidades espec?ficas dos usu?rios. J? foram disponibilizadas 23 novas vers?es da plataforma Android desde o seu lan?amento. De forma a permitir a execu??o com sucesso das aplica??es em diferentes dispositivos, ? fundamental oferecer suporte ?s m?ltiplas vers?es da API (Application Programming Interface). Esta disserta??o de mestrado tem como objetivo: analisar, caracterizar e comparar t?cnicas utilizadas por aplica??es Android para oferecer suporte a m?ltiplas vers?es da API. Em especial, o trabalho busca: (i) identificar na literatura quais as t?cnicas indicadas para suporte ?s m?ltiplas vers?es da API Android; (ii) analisar aplica??es reais para quantificar o uso dessas t?cnicas; e (iii) comparar as caracter?sticas e consequ?ncias do uso de tais t?cnicas. Um estudo emp?rico foi conduzido para atingir tal objetivo, no qual foram analisadas 25 aplica??es Android populares. Os resultados do estudo mostram que existem tr?s t?cnicas para prover suporte ?ss m?ltiplas vers?es da API: i) pacote de compatibilidade, variabilidades de granularidade grossa da API que envolvam um conjunto de classes; ii) re-implementa??o de recurso, para situa??es pontuais e granularidade grossa em n?vel de classe ou quando o recurso n?o est? dispon?vel em pacote de compatibilidade; e iii) uso expl?cito da nova API, variabilidades de granularidade fina da API que envolva a chamada de m?todos espec?ficos. Atrav?s da an?lise de 25 aplica??es identificamos que pacote de compatibilidade foi utilizada por 23 aplica??es, re-implementa??o de recurso por 14 e uso expl?cito da nova API por 22. A API de fragmentos cont?m os elementos mais comuns dentre os lan?ados em vers?es superiores da plataforma que s?o usados pelas aplica??es durante sua evolu??o, sendo referenciados por 68% delas. No geral, as aplica??es poderiam aumentar o seu mercado em potencial com adapta??es de, em m?dia, 15 trechos de c?digo, por outro lado, os desenvolvedores das aplica??es t?m se preocupado em evitar c?digo-morto em fun??o da API da plataforma.Na an?lise de 7 aplica??es, 4 delas continham c?digo-morto, mas os quais em geral n?o representam mais do que 0,1% do seu c?digo total. / Android is currently the most popular platformfor the development of mobile applications, representing more than 80% of the operating systems market for mobile devices. This causes demands for application customizations to handle different devices such as screen size, processing power and available memory, languages, and specific user needs. Twenty-three new versions of Android platformhave been released since its first release. In order to enable the successful execution of applications on different devices, it is essential to support multiple versions of the Application Programming Interface (API). This dissertation aims to analyze, characterize and compare techniques used by Android applications to support multiple versions of the API. In particular, the work seeks: (i) to identify the used techniques to support multiple versions of the Android API in the literature; (ii) to analyze real applications to quantify the usage of these techniques; and (iii) to compare the characteristics and consequences of using such techniques. An empirical study, in which 25 popular Android apps were analyzed, was conducted to achieve this goal. The results of the study show that there are three techniques to support multiple versions of the API: i) compatibility package, that adrresses API coarse granularity variabilities involving a set of classes; ii) re-implementation of resource used for specific situations and coarse granularity at class level or when resource is not available in compatibility package; and iii)explicit use of the new API that allows implementing fine grained variabilities of the API that involves calling of specific methods. Through the analysis of 25 applications, we have identified that compatibility package was used by 23 applications, re-implementation of resource was used by 14 applications and the explicit usage of the new API was used by 22 applications. The API fragments contains the most common elements among those released in higher versions of the platformthat are used by applications during their evolution, and it is referenced by 68% of them. In general, applications could increase their potential market with adaptations of, on average, 15 code snippets. On the other hand, application developers have been worried about how avoiding dead code based on platform API. In the analysis of 7 applications, 4 of them contained dead code, but it did not represent more than 0.1% of total code.

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