985 resultados para Função de transferência


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Este trabalho visa o uso da função de transferência, a qual relaciona distribuição de temperatura e fluxo de calor, na comparação no domínio freqüência, entre o modelo de difusão usual (parabólico) e um modelo ondulatório (hiperbólico) que inclue o efeito de propagação do calor não instantâneo, sendo avaliados os casos de meio semi-infinito e finito. Para o caso de meio semi-infinito, são determinadas as expressões para as características de amplitude e de fase, considerando tanto a abordagem parabólica quanto hiperbólica. É observada a relação entre estas duas abordagens, mostrando que a abordagem parabólica é uma caso particular da abordagem hiperbólica, podendo ser obtida através de um processo de limite envolvendo o tempo de relaxação r . Para o caso de meio finito, são determinadas as expressões para as caracteríısticas de amplitude de ambas as faces da placa unidimensional, considerando tanto a abordagem parabólica quanto hiperbólica. Estas expressões são transformadas para a forma adimensional quando então são deduzidas as expressões correspondentes das características de amplitude. Mais uma vez, todos os resultados para o caso parabólico podem ser determinados a partir dos resultados do caso hiperbólico, através de um processo de limite envolvendo o tempo de relaxação r São apresentados resultados numéricos referentes às características de amplitude, onde é apontada a existência de uma freqüência limite, acima da qual a diferença entre os dois modelos, do tipo parabólico ou hiperbólico, aumenta rapidamente. Também é apresentada uma forma alternativa de cálculo da distribuição de temperatura transiente que faz uso da função de transferência do sistema.

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Pós-graduação em Biologia Geral e Aplicada - IBB

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Pós-graduação em Engenharia Elétrica - FEIS

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Esse trabalho está baseado na investigação dos detectores de falhas aplicando classificadores de classe única. As falhas a serem detectadas são relativas ao estado de funcionamento de cada componente do circuito, especificamente de suas tolerâncias (falha paramétrica). Usando a função de transferência de cada um dos circuitos são gerados e analisados os sinais de saída com os componentes dentro e fora da tolerância. Uma função degrau é aplicada à entrada do circuito, o sinal de saída desse circuito passa por uma função diferenciadora e um filtro. O sinal de saída do filtro passa por um processo de redução de atributos e finalmente, o sinal segue simultaneamente para os classificadores multiclasse e classe única. Na análise são empregados ferramentas de reconhecimento de padrões e de classificação de classe única. Os classficadores multiclasse são capazes de classificar o sinal de saída do circuito em uma das classes de falha para o qual foram treinados. Eles apresentam um bom desempenho quando as classes de falha não possuem superposição e quando eles não são apresentados a classes de falhas para os quais não foram treinados. Comitê de classificadores de classe única podem classificar o sinal de saída em uma ou mais classes de falha e também podem classificá-lo em nenhuma classe. Eles apresentam desempenho comparável ao classificador multiclasse, mas também são capazes detectar casos de sobreposição de classes de falhas e indicar situações de falhas para os quais não foram treinados (falhas desconhecidas). Os resultados obtidos nesse trabalho mostraram que os classificadores de classe única, além de ser compatível com o desempenho do classificador multiclasse quando não há sobreposição, também detectou todas as sobreposições existentes sugerindo as possíveis falhas.

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Tese de doutoramento, Geologia (Geologia Económica e do Ambiente), Universidade de Lisboa, Faculdade de Ciências, 2014

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Tese de mestrado, Neurociências, Faculdade de Medicina, Universidade de Lisboa, 2015

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Dissertação para obtenção do grau de Mestre em Engenharia Electrotécnica Ramo Energia

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Neste estudo procurou-se analisar a elasticidade de transmissão de preços entre a indústria processadora de suco de laranja concentrado congelado e os produtores de laranja no Estado de São Paulo, no período de julho de 1973 a junho de 1992. A principal hipótese do estudo é que a elasticidade era menor do que um antes da safra 1986/87, passando a unitária a partir dessa safra, devido à introdução dos Contratos de Participação entre as indústrias e os produtores. De acordo com esses Contratos, o preço pago pelas indústrias brasileiras de suco de laranja aos produtores deve levar em conta as variações do preço internacional de suco..Essa hipótese foi estudada utilizando-se modelos auto-regressivos integrados de médias móveis (ARIMA) e de função de transferência. Obtiveram-se os resultados esperados, o que implica que os produtores de laranja tiveram ganhos após a introdução dos Contratos em 1986/87, devido às variações nos preços internacionais de suco de laranja concentrado congelado

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ABSTRACT Global Sugar market has changed considerably since 1970; the dramatic fluctuations in sugar prices have affected the sugar market worldwide. Therefore, new countries such as Brazil, India, China and Thailand start to invest intensively into this market. In the new scenario, Brazil became the main producer of sugar, as well as the main exporter one. The models considered in this study showed the influence of the main sugar producers and the worldwide stocks against the commodity price behaviour. Firstly, the study showed that ending-stocks have a higher impact in the sugar prices comparing to beginning-stocks, in this case, the main countries that contribute for stocks build-up were Brazil and India. Secondly, this study evaluated the impact of the largest sugar producers against the price, the models concluded that Brazil was the most significant country followed by China. Although the study showed Brazil as the main country which impacts stocks and sugar price; it is important to highlight that other countries are also important in the context to identify the main drivers for the supply and demand dynamics in order to evaluate price levels in response of the production and stocks.

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The progressing cavity pump artificial lift system, PCP, is a main lift system used in oil production industry. As this artificial lift application grows the knowledge of it s dynamics behavior, the application of automatic control and the developing of equipment selection design specialist systems are more useful. This work presents tools for dynamic analysis, control technics and a specialist system for selecting lift equipments for this artificial lift technology. The PCP artificial lift system consists of a progressing cavity pump installed downhole in the production tubing edge. The pump consists of two parts, a stator and a rotor, and is set in motion by the rotation of the rotor transmitted through a rod string installed in the tubing. The surface equipment generates and transmits the rotation to the rod string. First, is presented the developing of a complete mathematical dynamic model of PCP system. This model is simplified for use in several conditions, including steady state for sizing PCP equipments, like pump, rod string and drive head. This model is used to implement a computer simulator able to help in system analysis and to operates as a well with a controller and allows testing and developing of control algorithms. The next developing applies control technics to PCP system to optimize pumping velocity to achieve productivity and durability of downhole components. The mathematical model is linearized to apply conventional control technics including observability and controllability of the system and develop design rules for PI controller. Stability conditions are stated for operation point of the system. A fuzzy rule-based control system are developed from a PI controller using a inference machine based on Mandami operators. The fuzzy logic is applied to develop a specialist system that selects PCP equipments too. The developed technics to simulate and the linearized model was used in an actual well where a control system is installed. This control system consists of a pump intake pressure sensor, an industrial controller and a variable speed drive. The PI control was applied and fuzzy controller was applied to optimize simulated and actual well operation and the results was compared. The simulated and actual open loop response was compared to validate simulation. A case study was accomplished to validate equipment selection specialist system

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In this work, a performance analysis of transmission schemes employing turbo trellis coded modulation. In general, the performance analysis of such schemes is guided by evaluating the error probability of these schemes. The exact evaluation of this probability is very complex and inefficient from the computational point of view, a widely used alternative is the use of union bound of error probability, because of its easy implementation and computational produce bounds that converge quickly. Since it is the union bound, it should use to expurge some elements of distance spectrum to obtain a tight bound. The main contribution of this work is that the listing proposal is carried out from the puncturing at the level of symbol rather than bit-level as in most works of literature. The main reason for using the symbol level puncturing lies in the fact that the enummerating function of the turbo scheme is obtained directly from complex sequences of signals through the trellis and not indirectly from the binary sequences that require further binary to complex mapping, as proposed by previous works. Thus, algorithms can be applied through matrix from the adjacency matrix, which is obtained by calculating the distances of the complex sequences of the trellis. This work also presents two matrix algorithms for state reduction and the evaluation of the transfer function of this. The results presented in comparisons of the bounds obtained using the proposed technique with some turbo codes of the literature corroborate the proposition of this paper that the expurgated bounds obtained are quite tight and matrix algorithms are easily implemented in any programming software language

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Postsurgical complication of hypertension may occur in cardiac patients. To decrease the chances of complication it is necessary to reduce elevated blood pressure as soon as possible. Continuous infusion of vasodilator drugs, such as sodium nitroprusside (Nipride), would quickly lower the blood pressure in most patients. However, each patient has a different sensitivity to infusion of Nipride. The parameters and the time delays of the system are initially unknown. Moreover, the parameters of the transfer function associated with a particular patient are time varying. the objective of the study is to develop a procedure for blood pressure control i the presence of uncertainty of parameters and considerable time delays. So, a methodology was developed multi-model, and for each such model a Preditive Controller can be a priori designed. An adaptive mechanism is then needed for deciding which controller should be dominant for a given plant

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The treatment of wastewaters contaminated with oil is of great practical interest and it is fundamental in environmental issues. A relevant process, which has been studied on continuous treatment of contaminated water with oil, is the equipment denominated MDIF® (a mixer-settler based on phase inversion). An important variable during the operation of MDIF® is the water-solvent interface level in the separation section. The control of this level is essential both to avoid the dragging of the solvent during the water removal and improve the extraction efficiency of the oil by the solvent. The measurement of oil-water interface level (in line) is still a hard task. There are few sensors able to measure oil-water interface level in a reliable way. In the case of lab scale systems, there are no interface sensors with compatible dimensions. The objective of this work was to implement a level control system to the organic solvent/water interface level on the equipment MDIF®. The detection of the interface level is based on the acquisition and treatment of images obtained dynamically through a standard camera (webcam). The control strategy was developed to operate in feedback mode, where the level measure obtained by image detection is compared to the desired level and an action is taken on a control valve according to an implemented PID law. A control and data acquisition program was developed in Fortran to accomplish the following tasks: image acquisition; water-solvent interface identification; to perform decisions and send control signals; and to record data in files. Some experimental runs in open-loop were carried out using the MDIF® and random pulse disturbances were applied on the input variable (water outlet flow). The responses of interface level permitted the process identification by transfer models. From these models, the parameters for a PID controller were tuned by direct synthesis and tests in closed-loop were performed. Preliminary results for the feedback loop demonstrated that the sensor and the control strategy developed in this work were suitable for the control of organic solvent-water interface level

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)