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Specialized predictive SVPWM current control of back-to-back converters for wind power generation systems

机译:用于风力发电系统的后倒回转换器的专用预测SVPWM电流控制

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This paper presents the specialized predictive SVPWM current control of back-to-back converters for large-scale wind turbine generator systems. The predictive SVPWM current control strategy in the inner loop is adopted to minimize the system delay and improve the current response so that the grid-side current harmonics can be sharply reduced. Besides, load current feed-forward compensation was added to reduce the dc-voltage ripples when the load was unexpectedly changed, so that dc bus voltage can be kept at a demand level during the regenerative feedback condition of the motor. Active and reactive current are controlled respectively in d-q rotating coordinate system and unity power factor rectifier can be achieved. The proposed switching algorithm can control the converter with wide input voltage and load current variations. For validation, the converter showed better and fast performance in both steady state and transient state than conventional SVPWM control methods. Simulation demonstrates the effectiveness of the proposed current control algorithm.
机译:本文介绍了用于大型风力涡轮发电机系统的后腰部转换器的专用预测SVPWM电流控制。采用内循环中的预测SVPWM电流控制策略来最小化系统延迟并提高电流响应,从而可以急剧降低电网侧电流谐波。此外,加入负载电流前馈补偿以减少当负载发生意外改变时的DC电压纹波,从而可以在电动机的再生反馈条件期间保持DC总线电压在需求水平。在D-Q旋转坐标系中分别控制主动和反应电流,可以实现单尺寸整流器。所提出的切换算法可以控制具有宽输入电压和负载电流变化的转换器。对于验证,转换器比传统的SVPWM控制方法在稳态和瞬态状态下表现出更好和快速的性能。仿真展示了所提出的电流控制算法的有效性。

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