基于多矢量的恒定开关频率嵌套中性点导频变换器模型预测控制

Wei Luo;Mingli ZHOU
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引用次数: 0

摘要

针对具有经典模型预测控制(MPC)的五电平嵌套中性点导引(NNPP-5L)变换器开关频率不固定的问题,提出了一种针对具有恒定开关频率(CSF)的NNPP变换器的多矢量(MV)-MPC优化MPC。首先,建立了NNPP-5L的数学模型,然后基于优化后的MPC设计了一个无加权因子的成本函数,以选择四个最优电压矢量。接下来,根据成本函数计算四个最佳电压矢量的占空比时间,并使用调制器生成具有对称七段脉冲模式的最佳开关序列,以平衡电容器的电压。该策略提供了CSF和减少计算负担的优点,同时保持了NNPP-5L转换器MPC的动态响应。最后,通过仿真分析和实验结果验证了所提出的用于NNPP-5L转炉的MV-MPC的有效性和可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-Vector Based Model Predictive Control for Nested Neutral Point Piloted Converters With Constant Switching Frequency
To solve the problem that the switching frequency is not fixed for five-level nested neutral point piloted (NNPP- 5L) converter with classical model predictive control (MPC), an optimized MPC using a multi-vector (MV)-MPC for an NNPP converter with constant switching frequency (CSF) is proposed. First, the mathematical model of NNPP-5L is established, and then a cost function without weighting factors is designed based on the optimized MPC to select the four optimal voltage vectors. Next, the duty time of the four optimal voltage vectors is calculated from the cost function, and the optimal switching sequence with a symmetric seven-segment pulse pattern is generated using a modulator to balance the voltage of capacitors. This strategy offers the advantage of a CSF and computation burden reduced while maintaining the dynamic response of the MPC for NNPP-5L converter. Finally, the effectiveness and feasibility of the proposed MV-MPC for NNPP-5L converter have been validated by simulation analysis and experiment results.
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