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Cost function-based modulation scheme of model predictive control for VIENNA rectifier

机译:基于成本函数的VIENNA整流器模型预测控制调制方案

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摘要

Finite control set model predictive control (FCS-MPC) has been widely used in the control of grid-connected converters with the advantages of fast dynamics, multi-objective control, and easy implement. However, the conventional FCS-MPC bears with variable switching frequency, high current ripple and computational burden. An improved current model predictive with the cost function-based modulation scheme (CFM-MPC) is proposed for a three-phase three-level VIENNA rectifier to improve the power quality. First, the mathematical model and voltage vector are given according to the principle of deadbeat control. Then, the voltage vector of different voltage vectors are selected according to the location of the voltage vector reference, and the switching action time of the selected are directly calculated by the inversely proportional with cost function value of the selected vectors. It remains the merits of both the conventional MPC and space vector pulse width modulation schemes to track the optimum voltage vector without increasing the computational burden. Finally, a comparative study with the proposed CFM-MPC and conventional FCS-MPC has been conducted to verify the superiority of the proposed scheme. The results show the proposed CFM-MPC has the advantages of lower power ripple, fixed switching frequency, lower total harmonic distortion and neutral point potential balance.
机译:有限控制集模型预测控制(FCS-MPC)具有快速动态,多目标控制和易于实现的优点,已广泛用于并网变流器的控制中。然而,传统的FCS-MPC具有可变的开关频率,高的电流纹波和计算负担。针对三相三电平VIENNA整流器,提出了一种基于成本函数的调制方案(CFM-MPC)的预测电流模型,以改善电能质量。首先,根据无差拍控制原理给出数学模型和电压矢量。然后,根据电压矢量参考的位置选择不同电压矢量的电压矢量,并通过与所选择矢量的成本函数值成反比来直接计算所选择的开关动作时间。在不增加计算负担的情况下,跟踪最佳电压矢量仍然是常规MPC和空间矢量脉冲宽度调制方案的优点。最后,与提出的CFM-MPC和传统的FCS-MPC进行了比较研究,以验证提出的方案的优越性。结果表明,提出的CFM-MPC具有较低的电源纹波,固定的开关频率,较低的总谐波失真和中性点电势平衡的优点。

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