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Direct model predictive control of bidirectional quasi-Z-source inverters fed PMSM drives

机译:双向准Z源逆变器的直接模型预测控制FED PMSM驱动器

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This paper proposes a direct model predictive control (MPC) strategy to control the bidirectional quasi-Z-source inverter (BqZSI) driving a permanent magnet synchronous machine (PMSM) for electric vehicle applications. The dq machine currents are simultaneously controlled with the capacitor voltage and inductor current of the dc side. The physical model of the BqZSI with PMSM is first derived which encompasses different operating modes and states of the BqZSI. To examine the performance of the proposed control scheme at steady-state and transient operation, simulations based on MATLAB/Simulink are conducted. The results indicate that the proposed control scheme offers a very good steady-state performance as well as fast dynamic responses during transients.
机译:本文提出了一种直接模型预测控制(MPC)策略,用于控制驱动永磁同步机(PMSM)的双向准Z源逆变器(BQZSI)进行电动车辆应用。 DQ机器电流同时用DC侧的电容器电压和电感电流控制。首先导出具有PMSM的BQZSI的物理模型,其包含不同的操作模式和BQZSI的状态。为了在稳态和瞬态操作下检查所提出的控制方案的性能,进行了基于MATLAB / Simulink的模拟。结果表明,所提出的控制方案提供了非常好的稳态性能以及在瞬态期间的快速动态响应。

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