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Direct model predictive control of five-level dual flying capacitor active neutral point clamped converters with modified sphere decoding

机译:具有改进球形解码的五级双飞电容器主动中性点夹紧转换器的直接模型预测控制

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The five-level dual-flying-capacitor active-neutral-point-clamped converter (5L-DFC-ANPC) is an interesting topology, particularly for high-power photovoltaic, wind power, automotive applications etc. For such topology, direct model predictive control (DMPC), which combines the objective realizations and modulation stages into one computational process, is an attractive method. However, the computational burden to solve the so-called “mixed-integer nonlinear optimization problem” of DMPC for this 5L-DFC-ANPC topology is very high, because of the great amount of the available switch combinations, particularly for longer prediction horizons. This work applies the modified sphere decoding method for PMSM drive systems with the 5L-DFC-ANPC topology, within the DMPC concept. The computational burden reduction is validated. The current harmonic distortions are seen evidently lower at two step predictions.
机译:五级双飞电容器主动中性点夹紧转换器(5L-DFC-ANPC)是一个有趣的拓扑,特别是对于这种拓扑的大功率光伏,风电,汽车应用等,直接模型预测将客观实现和调制阶段结合到一个计算过程中的控制(DMPC)是一种有吸引力的方法。然而,用于解决该5L-DFC-ANPC拓扑的DMPC所谓的“混合整数非线性优化问题”的计算负担非常高,因为可用开关组合的大量,特别是对于更长的预测视野。这项工作适用于DMPC概念中的5L-DFC-ANPC拓扑的PMSM驱动系统修改的球体解码方法。减少计算负担验证。在两个步骤预测下,目前的谐波扭曲显着降低。

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