936 resultados para Inverter multilivello ,Modulatori PWM ,Motore-asincrono ,Trifase ,Ponte-IGBT


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As pontes rodoviárias de concreto armado estão sujeitas à ações dinâmicas variáveis devido ao tráfego de veículos sobre o tabuleiro. Estas ações dinâmicas nem sempre são corretamente consideradas pelos projetistas. Deste modo, a correta consideração destes aspectos mostra-se de fundamental importância, de forma a se avaliar os esforços dinâmicos oriundos do tráfego de veículos sobre o tabuleiro. De acordo com este contexto, a ponte rodoviária investigada nesta dissertação é constituída por duas vigas longitudinais, três transversinas, sendo uma central e duas sobre os apoios, e por um tabuleiro em concreto armado. O modelo computacional, desenvolvido para a análise dinâmica da ponte, foi concebido com base no emprego de técnicas usuais de discretização através do método dos elementos finitos. Os veículos são representados a partir de sistemas do tipo "massa-mola-amortecedor". O tráfego destes veículos é considerado mediante a simulação de comboios semi-infinitos, deslocando-se com velocidade constante sobre a ponte. As técnicas para a contagem de ciclos de tensões e a aplicação das regras de dano acumulado foram analisadas através das curvas S-N de diversas normas e recomendações internacionais vigentes que versam sobre o tema. As conclusões deste trabalho de pesquisa se referem à análise da resposta dinâmica bem como da vida útil de serviço da obra de arte rodoviária de concreto armado investigada, quando submetida às ações dinâmicas provenientes do tráfego de veículos pesados sobre o tabuleiro.

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An experimental evaluation of small two-phase induction motor drives operating with different inverter topologies is described. Results show that a PWM-based four-switch inverter, having only low-side switches is attractive for high-speed low-cost applications where speeds greater than those that can be obtained using single phase induction motors are required.

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The paper describes a model for a 6-phase induction motor driven by an inverter operating in a 6-pulse (square wave) mode. The model is implemented and performance, in terms of torque, current, efficiency and pulsating torque, compared to the performance of a 3-phase motor (both sine and 6-pulse supplied). The models are verified experimentally, in particular the efficiency performance, and it is illustrated that the improvement in inverter efficiency when in 6-pulse operating mode may improve the performance of the overall system. © 2005 IEEE.

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this paper quantifies effects of using three different pulse width modulation (PWM) schemes on the losses in the inverter and induction motor of a 1 kW drive. Direct measurements of losses have been made with a calorimeter. Results show that for the inverter, discontinuous PWM excitation reduces losses by up to 15% compared to sine and symmetrical space vector PWM methods. However, at a low modulation index the greater harmonic content with discontinuous PWM increased motor losses by nearly 20%. This study demonstrates the importance of careful choice of modulation scheme to achieve high overall drive efficiency. © 2005 IEEE.

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This paper discusses the inverter ratings of Brushless Doubly-Fed Machine (BDFM) adjustable speed drive (ASD) or generator (ASG) systems. Based on the per phase equivalent circuit model, the ratings of the two inverters in a bidirectional converter are evaluated individually. An approach to minimise the total inverter rating is presented, taking into account power factor constraints of the power grid. The effects of speed deviation and control winding excitation on the inverter ratings are discussed. Predictions of inverter ratings are presented with experimental verification. A design example is also provided in which the total inverter rating is minimised for a practical BDFM based ASG system. © 2005 IEEE.

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This paper presents the application of advanced compact models of the IGBT and PIN diode to the full electrothermal system simulation of a hybrid electric vehicle converter using a look-up table of device losses. The Fourier-based solution model is used, which takes account of features such as local lifetime control and field-stop technology. Device and circuit parameters are extracted from experimental waveforms and device structural data. Matching of the switching waveforms and the resulting generation of the look-up table is presented. An example of the use of the look-up tables in simulation of inverter device temperatures is also given, for a hypothetical electric vehicle subjected to an urban driving cycle. © 2006 IEEE.