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Finite-set model predictive control and DC-link capacitor voltages balancing for three-level NPC inverters

机译:三级NPC逆变器的有限模型预测控制和直流链路电容器电压平衡

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This paper presents a finite control set model predictive strategy for a three-phase, three-level Neutral-Point-Clamped (NPC) inverters with resistive-inductive load (RL-Load). This strategy allows for fast load current control while keeping the balance of the DC-link capacitor voltages. The system performance with a prediction horizon of one sample time and the dynamic response of the system with step change in the amplitude of the reference are investigated. The output currents and DC-link capacitor voltages are sampled and predicted for the next sampling time for each valid switching state of the inverter. The error between the predicted and reference current values and also the error between the capacitor voltages with respect to the reference value are obtained to minimize the cost function by choosing the appropriate state's switching signals and then applied to the converter. The simulation is carried out using MATLAB/Simulink with PSIM software. The co-simulation results show that the proposed control achieves high performance and high degree of robustness while balancing the DC-link capacitor voltages.
机译:本文提出了一种三相三电平中性点钳位(NPC)带有电感性负载(RL-Load)的逆变器的有限控制集模型预测策略。这种策略允许快速控制负载电流,同时保持直流母线电容器电压的平衡。研究了在一个采样时间的预测范围内的系统性能以及随着参考幅度的阶跃变化而产生的系统动态响应。对于逆变器的每个有效开关状态,将在下一个采样时间对输出电流和直流母线电容器电压进行采样和预测。通过选择适当状态的开关信号,获得了预测电流值和参考电流值之间的误差,以及电容器电压之间相对于参考值的误差,以最小化成本函数,然后将其应用于转换器。使用MATLAB / Simulink和PSIM软件进行仿真。协同仿真结果表明,所提出的控制在平衡直流母线电容器电压的同时实现了高性能和高鲁棒性。

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