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Finite control set model predictive control scheme of four-switch three-phase rectifier with load current observer

机译:具有负载电流观测器的四开关三相整流器的有限控制集模型预测控制方案

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摘要

Three-phase rectifier is typically realized by six power switches. However, this rectifier is fault sensitive in power switches. To enable continued controllable operation, the grid phase with fault rectifier leg can be connected to center tap of the dc-link capacitors, known as the four-switch three-phase rectifier (FSTPR), using hardware reconfiguration. However, the symmetry of three-phase currents and reliable operation of the FSTPR cannot be retained due to the offset of the two-capacitor voltages. This paper proposes a finite control set model predictive control (FCS-MPC) to obtain the balanced three-phase current with the offset of two-capacitor voltages suppressed. The PI-Controller-free FCS-MPC with a second-order Luenberger observer is adopted to improve the dynamic performance of FSTPR. The performance of the proposed control scheme is illustrated by extensive simulation and experimental results. The comparison with the conventional voltage-oriented-control, which is based on PI controller and pulse width modulation (PWM), is also presented to show the superiority of the proposed FCS-MPC.
机译:三相整流器通常由六个电源开关实现。但是,该整流器在电源开关中对故障敏感。为了实现持续的可控操作,可以使用硬件重新配置将带有故障整流器分支的电网相连接到直流母线电容器的中心抽头,该电容器被称为四开关三相整流器(FSTPR)。但是,由于两个电容器电压的偏移,不能保持三相电流的对称性和FSTPR的可靠运行。本文提出了一种有限控制集模型预测控制(FCS-MPC),以在抑制两个电容器电压偏移的情况下获得平衡的三相电流。采用具有二阶Luenberger观测器的无PI控制器FCS-MPC来改善FSTPR的动态性能。大量的仿真和实验结果说明了所提出的控制方案的性能。与基于PI控制器和脉宽调制(PWM)的常规电压定向控制的比较也被提出,以显示所提出的FCS-MPC的优越性。

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