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Hybrid Model Predictive Control of ANPC Converters With Decoupled Low-Frequency and High-Frequency Cells

机译:具有去耦低频和高频电池的ANPC转换器的混合模型预测控制

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Active-neutral-point-clamped (ANPC) converters can be decomposed into a low-frequency cell (LFC) and a high-frequency cell (HFC), and fundamental-frequency operation of the LFC is becoming popular. However, balancing the dc-link voltage and three flying capacitor voltages while maintaining very fast control of the output current is always a challenging task, especially when the flying capacitor is small. This article proposes a hybrid model predictive control (MPC) to guarantee the fundamental-frequency operation of the LFC and achieve the fixed-switching frequency operation of the HFC. In the hybrid MPC, the classical MPC regulates the LFC, whereas the duty-cycle-optimized MPC regulates the HFC. The capacitor voltage balance is achieved by adjusting the duty cycles to avoid the weighting factor tuning process. The proposed MPC features a fixed switching frequency and improves the steady-state performance while guaranteeing the fundamental-frequency operation of the LFC. Simulation and experimental results on a five-level ANPC are presented to validate the advantages of the proposed hybrid MPC method over the classical MPC.
机译:主动中性点钳位(ANPC)转换器可以分解成低频电池(LFC)和高频电池(HFC),并且LFC的基本频率操作变得流行。然而,平衡DC-Link电压和三个飞行电容器电压,同时保持输出电流的非常快速控制始终是一个具有挑战性的任务,特别是当飞行电容器很小时。本文提出了混合模型预测控制(MPC),以保证LFC的基本频率操作并实现HFC的固定切换频率操作。在混合MPC中,经典MPC调节LFC,而占空比优化的MPC调节HFC。通过调整占空比来实现电容器电压平衡以避免加权因子调谐过程。所提出的MPC具有固定的开关频率,并在保证LFC的基本频率操作的同时提高稳态性能。提出了在五级ANPC上的模拟和实验结果,以验证提出的混合MPC方法在经典MPC上的优点。

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