364 resultados para Courants à rectification entrante
Localização automática de pontos de controle em imagens aéreas baseada em cenas terrestres verticais
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Pós-graduação em Engenharia Mecânica - FEIS
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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This paper examines the historical role that Tesnière’s theory on the centrality of the verb exerted on some theoretical branches that study the way utterances are built in language. The main goal of this paper is to evaluate the impact that such a proposal had in changing the view of the clause being purely logical (a proposition) or purely syntactic (abstractly equated) to a view that embodies semantics and pragmatics to the syntactic organization of the utterance. A close examination of research dedicated to the grammatical and lexicographic description of Portuguese helps to illustrate the here proposed assessment and contributes to support the claim of the influence of Tesnière on current linguistic analyses.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
Quantitative end qualitative analysis of the electrical activity of rectus abdominis muscle portions
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The purpose of this study was to investigate the electrical behavior pattern of the Rectus abdominis muscle by qualitative and quantitative analysis of the electromyographic signal obtained from its superior, medium and inferior portions during dynamic and static activities. Ten voluntaries (aged X = 17.8 years, SD = 1.6) athletic males were studied without history of muscle skeletal disfunction. For the quantitative analysis the RMS (Root Mean Square) values obtained in the electromyographic signal during the isometric exercises were normalized and expressed in maximum voluntary isometric contraction percentages. For the qualitative analysis of the dynamic activity the electromyographic signal was processed by full-wave rectification, linear envelope and normalization (amplitude and time), so that the resulting curve of the processed signal was submitted to descriptive graphic analysis. The results of the quantitative study show that there is not a statistically significant difference among the portions of the muscle. Qualitative analysis demonstrated two aspects: the presence of a common activation electric pattern in the portions of Rectus abdominis muscle and the absence of significant difference in the inclination angles in the electrical activity curve during the isotonic exercises.
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Usually organic polymeric diodes are made with a semiconductor layer placed between two electrodes in a sandwich-like architecture, where the electrodes are deposited on the surfaces of a polymeric semiconductor film. This methodology leads to two main problems: i) the polymeric film top surface is rough and irregular, resulting in non-uniform electric field into the device; ii) during the deposition of metallic electrode in the top surface polymeric film, by thermal evaporation, occurs the diffusion of metal atoms into the polymeric film, changing the material electronic structure. Thus, the metal-semiconductor junction is not well defined, which is essential for the production of good quality Schottky diode, which exhibits ideality factor close to the unity and low turn-on voltage. In order to avoid these two problems, in the present research was proposed to manufacture an organic diode with the semiconductor polymeric layer deposited over bimetallic (gold and aluminum) interdigitated electrodes. The doping of the active layer was performed by immersing the device in hydrochloric acid solution with pH 2 during different times in order to promote different doping levels of the semiconductor polymer. Was verified that the proposed diode, which exhibits well-defined metal-semiconductor junction, operates as a Schottky diode, with good ideality factor, 10 ± 3, and low turn-on voltage, 1,2 ± 0,2 V, in comparison with conventional organic polymeric diodes. Contrasting with the ideality factor and turn-on voltage, the diode rectification ratio was obtained as 7, a value lower than the expected for a good organic diode. Was also showed that the diode characteristics were dependent on the semiconductor polymer doping level, and that the diode characteristics were optimized with doping promoted by immersion in the acid solution for times longer than 50 s. Furthermore, as was showed that the diodes properties are dependent on the semiconductor...
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Thermal treatment (thermal rectification) is a process in which technological properties of wood are modified using thermal energy, the result of Which is often value-added wood. Thermally treated wood takes on similar color shades to tropical woods and offers considerable resistance to destructive microorganisms and climate action, in addition to having high dimensional stability and low hygroscopicity. Wood samples of Eucalyptus grandis were subjected to various thermal treatments, as performed in presence (140 degrees C; 160 degrees C; 180 degrees C) or in absence of oxygen (160 degrees C; 180 degrees C; 200 degrees C) inside a thermal treatment chamber, and then studied as to their chemical characteristics. Increasing the maximum treatment temperatures led to a reduction in the holocellulose content of samples as a result of the degradation and volatilization of hemicelluloses, also leading to an increase in the relative lignin content. Except for glucose, all monosaccharide levels were found to decrease in samples after the thermal treatment at a maximum temperature of 200 degrees C. The thermal treatment above 160 degrees C led to increased levels of total extractives in the wood samples, probably ascribed to the emergence of low molecular weight substances as a result of thermal degradation. Overall, it was not possible to clearly determine the effect of presence or absence of oxygen in the air during thermal treatment on the chemical characteristics of the relevant wood samples.
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In recent years, there was an increase of ancillary service loads, such as signaling systems, inspection robots, surveillance cameras, and other monitoring devices distributed along high-voltage transmission lines which require low-power dc voltage supplies. This paper investigates the use of the induced voltage in the shield wires of an overhead 525 kV transmission line as a primary power source. Since phase current variations throughout the day affect the induced voltage in the overhead ground wire, a step-down dc-dc converter is used after rectification of the ac voltage to provide a regulated dc output voltage. The initial encouraging results obtained indicate that this form of power supply can be a feasible and cost-effective alternative for feeding small ancillary service loads. The simulation results are validated by field measurements as well as the installation of a 200 W voltage stabilization system prototype.
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Thermal treatment (thermal rectification) is a process in which technological properties of wood are modified using thermal energy, the result of which is often value-added wood. Thermally treated wood takes on similar color shades to tropical woods and offers considerable resistance to destructive microorganisms and climate action, in addition to having high dimensional stability and low hygroscopicity. Wood samples of Eucalyptus grandis were subjected to various thermal treatments, as performed in presence (140ºC; 160ºC; 180ºC) or in absence of oxygen (160ºC; 180ºC; 200ºC) inside a thermal treatment chamber, and then studied as to their chemical characteristics. Increasing the maximum treatment temperatures led to a reduction in the holocellulose content of samples as a result of the degradation and volatilization of hemicelluloses, also leading to an increase in the relative lignin content. Except for glucose, all monosaccharide levels were found to decrease in samples after the thermal treatment at a maximum temperature of 200ºC. The thermal treatment above 160ºC led to increased levels of total extractives in the wood samples, probably ascribed to the emergence of low molecular weight substances as a result of thermal degradation. Overall, it was not possible to clearly determine the effect of presence or absence of oxygen in the air during thermal treatment on the chemical characteristics of the relevant wood samples.
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The present PhD thesis exploits the design skills I have been improving since my master thesis’ research. A brief description of the chapters’ content follows. Chapter 1: the simulation of a complete front–end is a very complex problem and, in particular, is the basis upon which the prediction of the overall performance of the system is possible. By means of a commercial EM simulation tool and a rigorous nonlinear/EM circuit co–simulation based on the Reciprocity Theorem, the above–mentioned prediction can be achieved and exploited for wireless links characterization. This will represent the theoretical basics of the entire present thesis and will be supported by two RF applications. Chapter 2: an extensive dissertation about Magneto–Dielectric (MD) materials will be presented, together with their peculiar characteristics as substrates for antenna miniaturization purposes. A designed and tested device for RF on–body applications will be described in detail. Finally, future research will be discussed. Chapter 3: this chapter will deal with the issue regarding the exploitation of renewable energy sources for low–energy consumption devices. Hence the problem related to the so–called energy harvesting will be tackled and a first attempt to deploy THz solar energy in an innovative way will be presented and discussed. Future research will be proposed as well. Chapter 4: graphene is a very promising material for devices to be exploited in the RF and THz frequency range for a wide range of engineering applications, including those ones marked as the main research goal of the present thesis. This chapter will present the results obtained during my research period at the National Institute for Research and Development in Microtechnologies (IMT) in Bucharest, Romania. It will concern the design and manufacturing of antennas and diodes made in graphene–based technology for detection/rectification purposes.
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La mobilitazione di polveri radioattive nel caso di un incidente di perdita di vuoto (LOVA) all’interno di ITER (International Thermonuclear Experimental Reactor), è uno dei problemi di sicurezza che si sono posti durante la costruzione di tale reattore. Le polveri vengono generate dalla continua erosione da parte del plasma del materiale di contenimento. Ciò porta ad un accumulo delle stesse all’interno della camera di vuoto. Nel caso di un incidente LOVA il rilascio di tali polveri in atmosfera rappresenta un rischio per la salute di lavoratori e della popolazione circostante. Per raccogliere dati su tale tipo di incidente è stata costruita presso il laboratorio dell’università di Tor Vergata una piccola facility, STARDUST, in cui sono stati eseguiti vari esperimenti con delle condizioni iniziali simili a quelle presenti all’interno di ITER. Uno di questi esperimenti in particolare simula la rottura della camera di vuoto mediante l’ingresso di aria in STARDUST, inizialmente posto a 100 Pa, con un rateo di pressurizzazione di 300 Pa s−1. All’interno del serbatoio sono presenti delle polveri che, in differente percentuale, vengono portate in sospensione dal flusso di fluido entrante. In particolare le polveri sono composte da tungsteno (W), acciaio inossidabile (SS – 316 ) e carbonio ( C ). Scopo del presente lavoro è quello di riprodurre il campo di velocità che si genera all’interno di STARDUST nel caso dell’esperimento appena descritto e valutare il moto delle particelle portate in sospensione e la loro successiva deposizione. Ciò viene fatto mediante l’utilizzo di una geometria bidimensionale creata con Salome. Su tale geometria sono costruite differenti mesh strutturate in base al tipo di simulazione che si vuole implementare. Quest’ultima viene poi esportata nel solutore utilizzato, Code_Saturne. Le simulazioni eseguite possono essere suddivise in tre categorie principali. Nella prima (Mesh A) si è cercato di riprodurre i risultati numerici presentati dagli autori della parte sperimentale, che hanno utilizzato il software commerciale Fluent. Nella seconda si è riprodotto il campo di velocità interno a STARUDST sulla base dei dati sperimentali in possesso. Infine nell’ultima parte delle simulazioni si è riprodotto il moto delle particelle sospese all’interno del fluido in STARDUST, valutandone la deposizione. Il moto del fluido pressurizzante è stato considerato come compressibile. Il regime di moto è stato considerato turbolento viste le elevate velocità che provocavano elevati valori del numero di Reynolds per l’aria. I modelli con cui si è trattata la turbolenza sono stati di tre tipi. Il campo di velocità ottenuto è stato leggermente differente nei tre casi e si è proceduto ad un confronto per valutare le cause che hanno portato a tali differenze. Il moto delle particelle è stato trattato mediante l’utilizzo del modello di tracciamento lagrangiano delle particelle implementato in Code_Saturne. Differenti simulazioni sono state eseguite per tenere in considerazione i vari modelli di turbolenza adottati. Si è dunque proceduto ad analizzare similitudini e differenze dei risultati ottenuti.
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Studio, analisi ed implementazione di algoritmi esistenti per la correzione di distorsioni in immagini, con introduzione delle semplificazioni necessarie per la sua realizzazione in dispositivi embedded. Introduzione di nuovi metodi di semplificazione. Calibrazione di una telecamera o un sistema di telecamere stereo con lenti wide angle o fisheye tramite opencv.
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Various factors, including maturity, have been shown to influence peripheral nerve excitability measures, but little is known about differences in these properties between axons with different stimulation thresholds. Multiple nerve excitability tests were performed on the caudal motor axons of immature and mature female rats, recording from tail muscles at three target compound muscle action potential (CMAP) levels: 10%, 40% ("standard" level), and 60% of the maximum CMAP amplitude. Compared to lower target levels, axons at high target levels have the following characteristics: lower strength-duration time constant, less threshold reduction during depolarizing currents and greater threshold increase to hyperpolarizing currents, most notably to long hyperpolarizing currents in mature rats. Threshold-dependent effects on peripheral nerve excitability properties depend on the maturation stage, especially inward rectification (Ih), which becomes inversely related to threshold level. Performing nerve excitability tests at different target levels is useful in understanding the variation in membrane properties between different axons within a nerve. Because of the threshold effects on nerve excitability and the possibility of increased variability between axons and altered electric recruitment order in disease conditions, excitability parameters measured only at the "standard" target level should be interpreted with caution, especially the responses to hyperpolarizing currents.