North American Power Symposium 2010 2010
DOI: 10.1109/naps.2010.5619960
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A predictive power control for wind energy

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Cited by 16 publications
(36 citation statements)
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“…To validate the simulation results, the SMC strategy is also applied to a DSP TMS320F2812 platform. The digital implementation of the controller are made by using an zero-order-holder discretization and delay is neglected due the fact the frequency of the system is slower than the frequency of the digital implementation [10].The rotor windings are fed by a three-phase voltage source inverter with with insulatedgate bipolar transistors (IGBTs) and the DFIG is driven by a DC motor. The rotor voltage commands are modulated by using symmetrical space vector PWM and the switching frequency is 5 kHz.…”
Section: Simulation and Experimental Resultsmentioning
confidence: 99%
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“…To validate the simulation results, the SMC strategy is also applied to a DSP TMS320F2812 platform. The digital implementation of the controller are made by using an zero-order-holder discretization and delay is neglected due the fact the frequency of the system is slower than the frequency of the digital implementation [10].The rotor windings are fed by a three-phase voltage source inverter with with insulatedgate bipolar transistors (IGBTs) and the DFIG is driven by a DC motor. The rotor voltage commands are modulated by using symmetrical space vector PWM and the switching frequency is 5 kHz.…”
Section: Simulation and Experimental Resultsmentioning
confidence: 99%
“…The proposed strategy uses the sliding mode controller and the stator-flux-oriented control to regulate the rotor currents and the active and reactive power based on (9) and (10).…”
Section: Smc Applied To the Dfig Power Controlmentioning
confidence: 99%
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“…Small scale wind farms can be integrated into power distribution networks to meet local demands. Because of high variability and intermittency, wind farm operations become a great challenge to power systems [4].…”
Section: Communication Systems For Grid Integration Of Wind Farmsmentioning
confidence: 99%
“…O Model Based Predictive Control (MBPC) é uma abordagem de controle que utiliza um modelo do sistema para calcular o comportamento futuro, obtendo-se uma lei de controle a partir dessa característica [12]. Na literatura existem diversas técnicas de controle preditivo aplicado ao DFIG, como controle preditivo generalizado, que usa a função de transferência como modelo [13], [14], MBPCs com modelos não lineares [15], [16], controle preditivo em tempo continuo [17], MBPC com matriz de conversão direta [18], MBPC com controle direto de potência [19], [20], finite control set MBPC [21] e com controle preditivo baseado no modelo em espaço de estados [22], [23]. Dentre os controladores preditivos, modelo em espaço de estados tem a vantagem de ter um baixo custo computacional, quando comparado os modelos não lineares, sua capacidade de lidar diretamente com as componentes de acoplamento e a componente relativa ao fluxo [22].…”
Section: Introductionunclassified