994 resultados para Electric motor drives


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Dissertação de mestrado integrado em Engenharia Eletrónica Industrial e de Computadores

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Dissertação de mestrado integrado em Engenharia Eletrónica Industrial e de Computadores

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Dissertação de mestrado em Património e Turismo Cultural

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Dissertação de mestrado integrado em Engenharia Mecânica

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This paper presents the main operation modes for an electric vehicle (EV) battery charger framed in smart grids and smart homes, i.e., are discussed the present-day and are proposed new operation modes that can represent an asset towards EV adoption. Besides the well-known grid to vehicle (G2V) and vehicle to grid (V2G), this paper proposes two new operation modes: Home-to-vehicle (H2V), where the EV battery charger current is controlled according to the current consumption of the electrical appliances of the home (this operation mode is combined with the G2V and V2G); Vehicle-for-grid (V4G), where the EV battery charger is used for compensating current harmonics or reactive power, simultaneously with the G2V and V2G operation modes. The vehicle-to-home (V2H) operation mode, where the EV can operate as a power source in isolated systems or as an off-line uninterruptible power supply to feed priority appliances of the home during power outages of the electrical grid is presented in this paper framed with the other operation modes. These five operation modes were validated through experimental results using a developed 3.6 kW bidirectional EV battery charger prototype, which was specially designed for these operation modes. The paper describes the developed EV battery charger prototype, detailing the power theory and the voltage and current control strategies used in the control system. The paper presents experimental results for the various operation modes, both in steady-state and during transients.

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The relationship between estimated and real motor competences was analyzed for several tasks. Participants were 303 children (160 boys and 143 girls), which had between 6 and 10 years of age (M=8.63, SD=1.16). None of the children presented developmental difficulties or learning disabilities, and all attended age-appropriate classes. Children were divided into three groups according to their age: group 1 (N= 102; age range: 6.48-8.01 years); group 2 (N= 101; age range: 8.02-9.22 years); and group 3 (N=100; age range: 9.24-10.93 years). Children were asked to predict their maximum distance for a locomotor, a manipulative, and a balance task, prior to performing those tasks. Children’s estimations were compared with their real performance to determine their accuracy. Children had, in general, a tendency to overestimate their performance (standing long jump: 56.11%, kicking: 63.37%, throwing: 73.60%, and Walking Backwards (WB) on a balance beam: 45.21%), and older children tended to be more accurate, except for the manipulative tasks. Furthermore, the relationship between estimation and real performance in children with different levels of motor coordination (Köperkoordinationstest für Kinder, KTK) was analyzed. The 75 children with the highest score comprised the Highest Motor Coordination (HMC) group, and the 78 children with the lowest score were placed in the Lowest Motor Coordination (LMC) group. There was a tendency for LMC and HMC children to overestimate their skills at all tasks, except for the HMC group at the WB task. Children with the HMC level tended to be more accurate when predicting their motor performance; however, differences in absolute percent error were only significant for the throwing and WB tasks. In conclusion, children display a tendency to overestimate their performance independently of their motor coordination level and task. This fact may be determinant to the development of their motor competences, since they are more likely to engage and persist in motor tasks, but it might also increase the occurrence of unintended injuries.

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El presente trabajo contempla el estudio del comportamiento termomecánico de un motor monopropelente, cuyo funcionamiento se basa en la descomposición catalítica del combustible, produciendo la gasificación del mismo, con su consecuente generación de calor. Estos gases, al ser conducidos convenientemente a través de una tobera con el fin de generar su apropiada expansión, producirán la acción deseada. Un diseño erróneo del sistema de alimentación podría producir el acortamiento de la vida útil del catalizador, la degradación de los sellos de la válvula, vaporizaciones indeseadas del propelente, etc.El objetivo que se persigue es construir un modelo computacional que permita visualizar el comportamiento conjunto de los diversos fenómenos, la influencia de los diversos componentes y su interacción, a fin de identificar los elementos críticos, y poder así tomar acciones correctivas u operar sobre aspectos de diseño del sistema para un mejor acondicionamiento del combustible. Para la aplicación del método, se modelizarán cada uno de los fenómenos que gobiernan el comportamiento del sistema y se les codificará en lenguaje de programación, prestando especial atención al comportamiento del fluido tanto en régimen estable como durante los transitorios. Una vez validado el programa se correrán simulaciones para determinar la influencia de los parámetros básicos de diseño sobre los procesos termomecánicos mediante un análisis de sensitividad, a fin de mitigar los posibles efectos adversos. Sin embargo, durante la ejecución de proyectos de ingeniería de este tipo, una de las cuestiones de mayor importancia es el uso racional de materiales. Una adecuada utilización de los mismos tiene diversas ventajas, dentro de las cuales podemos citar como a las de mayor relevancia a: (i) mejor aprovechamiento de las capacidades de los materiales, (ii) elementos estructurales de menor tamaño, lo que genera una economía de espacio, (iii) menor costo económico y financiero del proyecto y (iv) menor impacto ambiental. En este sentido, una de las maneras más difundidas para el uso racional de materiales es, utilizar materiales con propiedades constitutivas que se adapten mejor a las características del proyecto en desarrollo. Sin embargo, cuando se está frente a la imposibilidad de cambiar de material o mejorar las propiedades existentes, es importante comenzar a utilizar otras metodologías que permitan un mejor aprovechamiento del mismo. Aquí surge naturalmente la necesidad de introducir cambios en la forma de los componentes estructurales que integran el proyecto ejecutivo. Para realizar una adecuada optimización de los componentes estructurales, es necesario previamente definir cual o cuales van a ser las características a optimizar y como van a ser medidas esas características durante el proceso de análisis. Por lo tanto, se propone aplicar el análisis de sensibilidad topológica para problemas termo-mecánicos para optimizar los componentes estructurales del motor.

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This thesis investigates the challenges of establishing the electric vehicle (EV) in Ireland and how the Irish government and industry are trying to meet them. It further seeks to provide information on Irish consumers’ attitudes towards the electric vehicle and their willingness to purchase it. The review of the literature showed that the Irish government is investing significant funds in trying to establish the market for the electric vehicle and position itself as a world leader in adopting the electric vehicle. The EV will also have an important role to play in how Ireland meets its targets for CO2 reductions towards 2020. Climate change and use of fossil fuels are driving the need for increased use of renewable energy and increased energy independence while reducing the greenhouse gas emissions that are the leading cause of climate change. The transport sector is almost completely dependent on the use of fossil fuel and resultantly is one of the largest sources of these GHG emissions. These issues are leading to the design and production of more energy efficient and environmentally friendly vehicles. The ultimate goal is to achieve a zero emissions vehicle. The electric vehicle is presently the only vehicle being mass produced that has the potential to be zero emissions. There are however issues that customers may not be willing to overlook such as the lower range of the vehicle and the length of time it takes to recharge. Vehicle cost is also an important issue that customers may not overlook. Knowing what the consumer’s attitudes are towards the EV and their willingness to purchase them is important as these new vehicles begin to appear in the showrooms. The consumers will be vital to how successful this market becomes. Using an online questionnaire methodology, in a sample of 118 consumers, the major conclusion to be drawn from the research is that the vehicle price, the convenience to recharge and vehicle range were the three most essential issues for the consumers if they were purchasing an EV. The success of the electric vehicle market may depend on what measures are taken to overcome them.

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The results of investigations of the influence of aerosol pollution of atmosphere in Tbilisi (the capital of the Georgia, city with the greatest level of air pollution) on the total air electric conductivity in Dusheti (the small city, located in 40-45 km to the north of Tbilisi) are represented.

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Magdeburg, Univ., Fak. für Humanwiss., Diss., 2013

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Hermann Rottengruber; Wilfried Henze; Tommy Luft (Hrsg.) und 54 Mitautoren

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Magdeburg, Univ., Fak. für Naturwiss., Diss., 2014

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Here we examine major anatomical characteristics of Corydoras aff. paleatus (Jenyns, 1842) post-hatching development, in parallel with its neurobehavioral evolution. Eleutheroembryonic phase, 4.3-8.8 days post-fertilization (dpf); 4.3-6.4 mm standard length (SL) encompasses from hatching to transition to exogenous feeding. Protopterygiolarval phase (8.9-10.9 dpf; 6.5-6.7 mm SL) goes from feeding transition to the commencement of unpaired fin differentiation, which marks the start of pterygiolarval phase (11-33 dpf; 6.8-10.7 mm SL) defined by appearance of lepidotrichia in the dorsal part of the median finfold. This phase ends with the full detachment and differentiation of unpaired fins, events signaling the commencement of the juvenile period (34-60 dpf; 10.8-18.0 mm SL). Eleutheroembryonic phase focuses on hiding and differentiation of mechanosensory, chemosensory and central neural systems, crucial for supplying the larval period with efficient escape and nutrient detection-capture neurocircuits. Protopterygiolarval priorities include visual development and respiratory, digestive and hydrodynamic efficiencies. Pterygiolarval priorities change towards higher swimming efficacy, including carangiform and vertical swimming, necessary for the high social interaction typical of this species. At the end of the protopterygiolarval phase, simple resting and foraging aggregations are seen. Resting and foraging shoals grow in complexity and participant number during pterygiolarval phase, but particularly during juvenile period.