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Enhanced Predictive Current Control of Three-Phase Grid-Tied Reversible Converters with Improved Switching Patterns

机译:具有改进开关模式的三相并网可逆转换器的增强预测电流控制

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A predictive current control strategy can realize flexible regulation of three-phase grid-tied converters based on system behaviour prediction and cost function minimization. However, when the predictive current control strategy with conventional switching patterns is adopted, the predicted duration time for voltage vectors turns out to be negative in some cases, especially under the conditions of bidirectional power flows and transient situations, leading to system performance deteriorations. This paper aims to clarify the real reason for this phenomenon under bidirectional power flows, i.e. , rectifier mode and inverter mode, and, furthermore, seeks to propose effective solutions. A detailed analysis of instantaneous current variations under different conditions was conducted. An enhanced predictive current control strategy with improved switching patterns was then proposed. An experimental platform was built based on a commercial converter produced by Danfoss, and moreover, relative experiments were carried out, confirming the superiority of the proposed scheme.
机译:基于系统行为预测和成本函数最小化的预测电流控制策略可以实现三相并网变流器的灵活调节。但是,当采用具有常规开关模式的预测电流控制策略时,在某些情况下,尤其是在双向潮流和瞬态情况下,电压矢量的预测持续时间会变为负值,从而导致系统性能下降。本文旨在弄清在双向功率流(即整流器模式和逆变器模式)下该现象的真正原因,并力求提出有效的解决方案。对不同条件下的瞬时电流变化进行了详细分析。然后提出了具有改进的开关模式的增强的预测电流控制策略。基于Danfoss生产的商用转换器构建了一个实验平台,并且进行了相关实验,证实了该方案的优越性。

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