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Predictive flux and torque control of induction motor drive under post-fault operation of three-phase voltage inverter

机译:三相电压逆变器后故障操作下感应电机驱动的预测磁通量和扭矩控制

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In this paper a direct finite-state predictive flux and torque control of an induction motor drive system fed by four-switch three-phase voltage inverter was discussed. This specific inverter topology can be used after faulty inverter leg isolation from an electric motor under single IGBTs open-circuit faults. To overcome a significant problem related to the four-switch inverter topology, namely capacitor voltage unbalance in DC-link, a solution based on the voltages measurement was developed. In the proposed approach, depending on a motor drive operation point, in order to achieve a high drive performance a weighting factor of a cost function term related to capacitor voltages balance is adapted. To confirm the proposed method, simulation results were presented under a wide range working conditions of an induction motor drive system.
机译:本文讨论了通过四开关三相电压逆变器供给的进一步电动机驱动系统的直接有限状态预测磁通和扭矩控制。这种特定的逆变器拓扑可以在单个IGBT开路故障下从电动机的故障逆变腿隔离后使用。为了克服与四开关逆变器拓扑相关的重要问题,即DC-Link中的电容电压不平衡,开发了基于电压测量的解决方案。在所提出的方法中,根据电动机驱动操作点,为了实现高驱动性能,其适于与电容器电压平衡相关的成本函数术语的加权因子。为了确认所提出的方法,仿真结果在感应电动机驱动系统的宽范围工作条件下呈现。

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