首页> 外文期刊>Journal of power electronics >Fault-Tolerant Control for 5L-HNPC Inverter-Fed Induction Motor Drives with Finite Control Set Model Predictive Control Based on Hierarchical Optimization
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Fault-Tolerant Control for 5L-HNPC Inverter-Fed Induction Motor Drives with Finite Control Set Model Predictive Control Based on Hierarchical Optimization

机译:5L-HNPC逆变器馈电感应电机驱动器具有有限控制集模型预测控制的容错控制基于分层优化

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This paper proposes a fault-tolerant control strategy with finite control set model predictive control (FCS-MPC) based on hierarchical optimization for five-level H-bridge neutral-point-clamped (5L-HNPC) inverter-fed induction motor drives. Fault-tolerant operation is analyzed, and the fault-tolerant control algorithm is improved. Adopting FCS-MPC based on hierarchical optimization, where the voltage is used as the controlled objective, called model predictive voltage control (MPVC), the postfault controller is simplified as a two layer control. The first layer is the voltage jump limit, and the second layer is the voltage following control, which adopts the optimal control strategy to ensure the current following performance and uniqueness of the optimal solution. Finally, simulation and experimental results verify that 5L-HNPC inverter-fed induction motor drives have strong fault tolerant capability and that the FCS-MPVC based on hierarchical optimization is feasible.
机译:本文提出了一种具有有限控制集模型预测控制(FCS-MPC)的容错控制策略,其基于五级H桥中性点钳位(5L-HNPC)逆变器馈电电动机驱动器的分层优化。分析容错操作,提高了容错控制算法。采用基于分层优化的FCS-MPC,其中电压用作受控目标,称​​为模型预测电压控制(MPVC),后退控制器被简化为两层控制。第一层是电压跳跃限制,第二层是控制后的电压,采用最佳控制策略,以确保最佳解决方案的性能和唯一性。最后,仿真和实验结果验证了5L-HNPC逆变器馈电电动机驱动器具有强大的容错能力,并且基于分层优化的FCS-MPVC是可行的。

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