927 resultados para model-based autonomy


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Esta pesquisa trata de uma experiência vivida com os alunos do curso de Tecnologia em Análise e Desenvolvimento de Sistemas do Centro Federal de Educação Tecnológica do Pará - CEFET sobre o aprendizado de algoritmos e programação. O presente estudo justifica-se pela relevância em se discutir a prática do profissional da área de informática que atua na educação profissional superior com o ensino de algoritmos. Embora haja concepções acerca dos obstáculos relacionados ao tema, há a necessidade de se investigar as dificuldades e fatores que contribuem com a aprendizagem de algoritmos e consequentemente de programação. Assim este trabalho se propõe a responder a seguinte questão? É possível melhorar o processo ensino-aprendizagem de algoritmos através da pedagogia de projetos? Com base nas observações levantadas, propomos e colocamos em prática um modelo de ensino baseado nesta pedagogia, com o objetivo de potencializar a compreensão de algoritmos. A metodologia adotada utilizou a pesquisa-ação no sentido de investigação colaborativa de observação na ação. Os fundamentos teóricos basearam-se na teoria de aprendizagem significativa de David Ausubel, nas propostas facilitadoras dessa aprendizagem por Postman e Weingartner, Marco Antônio Moreira e no Construcionismo de Papert. De um modo geral foram constatadas boas impressões com desenvolvimento do projeto especialmente por termos observado nos alunos maior motivação com a atividade de programação percebida pela autonomia e reflexão nas etapas de desenvolvimento do projeto.

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O presente trabalho objetiva analisar as implicações do Programa “Excelência em Gestão Educacional” da Fundação Itaú Social na gestão da escola pública brasileira, em termos de orientações teórico- metodológicas contidas em documentos balizadores da parceria firmada. Para tanto, foi feita uma pesquisa documental que, por meio de análise de conteúdo, buscou analisar os documentos referentes a esse programa. As análises desenvolvidas mostraram que o modelo de gestão defendido pela Fundação Itaú para a educação brasileira é o das escolas charter americanas, escolas financiadas pelo setor público, mas administradas pelo setor privado. Tais escolas são apresentadas como tendo melhorado significativamente os índices educacionais nos EUA. No entanto, constatou-se que a realidade concreta não condiz com a apresentada pelo Programa Excelência em Gestão, pois o modelo de gestão baseada nos parâmetros do mercado, que associa conceitos como qualidade, participação, descentralização, autonomia e avaliação à ideia de gerenciamento de recursos com vista à produtividade do sistema educacional, não foi capaz de melhorar o sistema educacional americano. Muito pelo contrário, agravou ainda mais a crise da educação pública naquele País. No Brasil, já existem experiências nesse sentido e as análises sobre as escolas charter que foram implantadas em Pernambuco revelaram que as mesmas adotam na sua gestão padrões gerenciais trazidos do mundo empresarial. Assim, verificou-se a introdução de princípios de mercado como o da gestão gerencial, da definição de metas e resultados, expressos nos seus planejamentos estratégicos, da remuneração por mérito para os professores e a generalização dos testes de avaliação, dentre outros. Nesse contexto, a autonomia escolar é entendida como maior responsabilização dos professores e diretores pelo sucesso ou fracasso da escola, e, sobretudo do gestor, como liderança de todo o processo. Além disso, nessas escolas não existe autonomia pedagógica, pois o projeto pedagógico é elaborado de acordo com critérios de produtividade definidos previamente pelo órgão responsável pela implantação dessas escolas (PROCENTRO). A participação que se desenvolve nesse contexto não passa de um mero processo de colaboração, de mão única, de adesão, de obediência às decisões que são tomadas de cima para baixo. Fica claro que esse modelo de gestão e de escola não contribui para a democratização das relações de poder na escola e consequentemente para a formação da cidadania.

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

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The development of self-adaptive software (SaS) has specific characteristics compared to traditional one, since it allows that changes to be incorporated at runtime. Automated processes have been used as a feasible solution to conduct the software adaptation at runtime. In parallel, reference model has been used to aggregate knowledge and architectural artifacts, since capture the systems essence of specific domains. However, there is currently no reference model based on reflection for the development of SaS. Thus, the main contribution of this paper is to present a reference model based on reflection for development of SaS that have a need to adapt at runtime. To present the applicability of this model, a case study was conducted and good perspective to efficiently contribute to the area of SaS has been obtained.

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This study aimed to determine the optimal intake of lysine and threonine for broiler breeder hens. Two experiments were conducted to evaluate the responses of birds to digestible lysine (Lys) and threonine (Thr). Eight treatments were assessed in both experiments, with six replicates of eight birds in the Lys experiment and ten birds in the Thr experiment. The dietary levels of Lys and Thr were obtained by a dilution technique. The experimental period was ten weeks for each amino acid studied, which included six weeks of adaptation and four weeks of data collection. The amino acid intake, egg mass and body weight were adjusted using a Reading model. Based on the model coefficients, the cost of the synthetic amino acids sources and the price of fertile eggs determined the intake of each amino acid to maximize. The minimum intake of Lys and Thr reduced egg production by 40 and 30%, respectively, the weight of the eggs decreased by 12 and 9% with the same intake of Lys and Thr, respectively. The models generated by predicting Lys and Thr intake were as follows: Lys=11 x E+31 x W and Thr=9.5 x E+32 x W, where E=egg mass, g/bird per day, and W=body weight, kg/bird. Based on the models, 3 kg birds with an egg mass production of 50 g/day require 643 mg/bird per day of Lys and 569 mg/bird per day of Thr. The optimum economic intake was calculated at 954 and 834 mg/bird per day for Lys and Thr, respectively, reflecting a dietary concentration of 0.636% Lys and 0.556% Thr for a feed intake of 150 g/bird per day. (C) 2015 Elsevier B.V. All rights reserved.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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We explore the problem of budgeted machine learning, in which the learning algorithm has free access to the training examples’ labels but has to pay for each attribute that is specified. This learning model is appropriate in many areas, including medical applications. We present new algorithms for choosing which attributes to purchase of which examples in the budgeted learning model based on algorithms for the multi-armed bandit problem. All of our approaches outperformed the current state of the art. Furthermore, we present a new means for selecting an example to purchase after the attribute is selected, instead of selecting an example uniformly at random, which is typically done. Our new example selection method improved performance of all the algorithms we tested, both ours and those in the literature.

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This paper introduces a skewed log-Birnbaum-Saunders regression model based on the skewed sinh-normal distribution proposed by Leiva et al. [A skewed sinh-normal distribution and its properties and application to air pollution, Comm. Statist. Theory Methods 39 (2010), pp. 426-443]. Some influence methods, such as the local influence and generalized leverage, are presented. Additionally, we derived the normal curvatures of local influence under some perturbation schemes. An empirical application to a real data set is presented in order to illustrate the usefulness of the proposed model.

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Model predictive control (MPC) applications in the process industry usually deal with process systems that show time delays (dead times) between the system inputs and outputs. Also, in many industrial applications of MPC, integrating outputs resulting from liquid level control or recycle streams need to be considered as controlled outputs. Conventional MPC packages can be applied to time-delay systems but stability of the closed loop system will depend on the tuning parameters of the controller and cannot be guaranteed even in the nominal case. In this work, a state space model based on the analytical step response model is extended to the case of integrating time systems with time delays. This model is applied to the development of two versions of a nominally stable MPC, which is designed to the practical scenario in which one has targets for some of the inputs and/or outputs that may be unreachable and zone control (or interval tracking) for the remaining outputs. The controller is tested through simulation of a multivariable industrial reactor system. (C) 2012 Elsevier Ltd. All rights reserved.

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Semisupervised learning is a machine learning approach that is able to employ both labeled and unlabeled samples in the training process. In this paper, we propose a semisupervised data classification model based on a combined random-preferential walk of particles in a network (graph) constructed from the input dataset. The particles of the same class cooperate among themselves, while the particles of different classes compete with each other to propagate class labels to the whole network. A rigorous model definition is provided via a nonlinear stochastic dynamical system and a mathematical analysis of its behavior is carried out. A numerical validation presented in this paper confirms the theoretical predictions. An interesting feature brought by the competitive-cooperative mechanism is that the proposed model can achieve good classification rates while exhibiting low computational complexity order in comparison to other network-based semisupervised algorithms. Computer simulations conducted on synthetic and real-world datasets reveal the effectiveness of the model.

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Reinforced concrete beam elements are submitted to applicable loads along their life cycle that cause shear and torsion. These elements may be subject to only shear, pure torsion or both, torsion and shear combined. The Brazilian Standard Code ABNT NBR 6118:2007 [1] fixes conditions to calculate the transverse reinforcement area in beam reinforced concrete elements, using two design models, based on the strut and tie analogy model, first studied by Mörsch [2]. The strut angle θ (theta) can be considered constant and equal to 45º (Model I), or varying between 30º and 45º (Model II). In the case of transversal ties (stirrups), the variation of angle α (alpha) is between 45º and 90º. When the equilibrium torsion is required, a resistant model based on space truss with hollow section is considered. The space truss admits an inclination angle θ between 30º and 45º, in accordance with beam elements subjected to shear. This paper presents a theoretical study of models I and II for combined shear and torsion, in which ranges the geometry and intensity of action in reinforced concrete beams, aimed to verify the consumption of transverse reinforcement in accordance with the calculation model adopted As the strut angle on model II ranges from 30º to 45º, transverse reinforcement area (Asw) decreases, and total reinforcement area, which includes longitudinal torsion reinforcement (Asℓ), increases. It appears that, when considering model II with strut angle above 40º, under shear only, transverse reinforcement area increases 22% compared to values obtained using model I.

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The viscoelasticity of mammalian lung is determined by the mechanical properties and structural regulation of the airway smooth muscle (ASM). The exposure to polluted air may deteriorate these properties with harmful consequences to individual health. Formaldehyde (FA) is an important indoor pollutant found among volatile organic compounds. This pollutant permeates through the smooth muscle tissue forming covalent bonds between proteins in the extracellular matrix and intracellular protein structure changing mechanical properties of ASM and inducing asthma symptoms, such as airway hyperresponsiveness, even at low concentrations. In the experimental scenario, the mechanical effect of FA is the stiffening of the tissue, but the mechanism behind this effect is not fully understood. Thus, the aim of this study is to reproduce the mechanical behavior of the ASM, such as contraction and stretching, under FA action or not. For this, it was created a two-dimensional viscoelastic network model based on Voronoi tessellation solved using Runge-Kutta method of fourth order. The equilibrium configuration was reached when the forces in different parts of the network were equal. This model simulates the mechanical behavior of ASM through of a network of dashpots and springs. This dashpot-spring mechanical coupling mimics the composition of the actomyosin machinery of ASM through the contraction of springs to a minimum length. We hypothesized that formation of covalent bonds, due to the FA action, can be represented in the model by a simple change in the elastic constant of the springs, while the action of methacholine (MCh) reduce the equilibrium length of the spring. A sigmoid curve of tension as a function of MCh doses was obtained, showing increased tension when the muscle strip was exposed to FA. Our simulations suggest that FA, at a concentration of 0.1 ppm, can affect the elastic properties of the smooth muscle ¯bers by a factor of 120%. We also analyze the dynamic mechanical properties, observing the viscous and elastic behavior of the network. Finally, the proposed model, although simple, incorporates the phenomenology of both MCh and FA and reproduces experimental results observed with in vitro exposure of smooth muscle to FA. Thus, this new mechanical approach incorporates several well know features of the contractile system of the cells in a tissue level model. The model can also be used in different biological scales.