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Finite Control-Set Model Predictive Control (FCS-MPC) of Nested Neutral Point-Clamped (NNPC) Converter

机译:嵌套中性点钳位(NNPC)转换器的有限控制集模型预测控制(FCS-MPC)

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摘要

This paper proposes a model predictive control (MPC) strategy for a nested neutral point-clamped (NNPC) converter to control output currents and voltages of flying capacitors. The NNPC converter is a four-level converter topology for medium-voltage applications with interesting properties such as operating over a wide range of voltages (2.4–7.2 KV) without the need for connecting power semiconductor in series, high quality output voltage, less number of components compared to other classical four-level topologies. A discrete-time model of the converter is presented and all the control objectives are formulated in terms of the switching states. During each sampling interval, the predicted variables are assessed by the cost function and the best switching state which gives minimum value for the cost function is selected and applied to the converter gating terminals. The performances of the NNPC converter and predictive control scheme are verified through MATLAB/Simulink simulations and their feasibility is evaluated experimentally.
机译:本文为嵌套中性点钳位(NNPC)转换器提出了一种模型预测控制(MPC)策略,以控制飞跨电容器的输出电流和电压。 NNPC转换器是适用于中压应用的四电平转换器拓扑结构,具有有趣的特性,例如可以在宽范围的电压(2.4–7.2 KV)下工作,而无需串联功率半导体,高质量的输出电压,数量较少与其他经典的四层拓扑相比,组件数量更多。给出了转换器的离散时间模型,并根据开关状态制定了所有控制目标。在每个采样间隔内,通过成本函数评估预测变量,并选择给出成本函数最小值的最佳开关状态,并将其应用于转换器选通端子。通过MATLAB / Simulink仿真验证了NNPC转换器的性能和预测控制方案,并通过实验评估了其可行性。

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