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Multi-vector Model Predictive Direct Power Control for Fault-tolerant Bidirectional AC/DC Converter

机译:用于容错双向AC / DC转换器的多向量模型预测直接电源控制

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So as to reduce the current harmonics and power ripple after bidirectional AC/DC converter bridge arm fault, a multi-vector model predictive fault-tolerant control method is proposed. First, the system of bidirectional AC/DC converter with a bridge arm fault is reconstructed. Then the operation mechanism of fault-tolerant converter structure and the relationship of voltage vectors are clarified. Second, the power prediction model under the converter fault-tolerant operation mode is established. Multiple voltage vectors are used in a switching cycle. The new synthetic vector is used to track the optimal vector. The switching order of each vector is fixed to realize switching frequency concentrate. Third, the simulation model is built. The results show that the bidirectional AC/DC converter can operate fault-tolerant operation after the bridge arm failure under the control strategy proposed and the output current harmonics and power ripples are reduced. The system has good steady-state and dynamic performance.
机译:以便在双向AC / DC转换器桥式断路器后减少电流谐波和功率纹波,提出了一种多向量模型预测容错控制方法。首先,重建具有桥梁臂断层的双向AC / DC转换器的系统。然后阐明了容错转换器结构的操作机制和电压矢量的关系。其次,建立了转换器容错操作模式下的功率预测模型。多个电压矢量用于切换周期。新的合成载体用于跟踪最佳载体。每个矢量的切换顺序是固定的,以实现切换频率集中。第三,建立了模拟模型。结果表明,双向AC / DC转换器可以在所提出的控制策略下桥臂故障后操作容错操作,并降低了输出电流谐波和功率纹波。该系统具有良好的稳态和动态性能。

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