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Speed sensorless direct torque control implementation in a current source inverter fed induction motor drive

机译:电流源逆变器供电感应电动机驱动器中的无速度传感器直接转矩控制实现

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In the paper one speed sensorless direct torque control (DTC) implementation in a current source inverter (CSI) fed induction motor drive is proposed. DTC of a CSI fed induction motor drive involves the direct control of the rotor flux linkage and the electromagnetic torque by applying the optimum current switching vectors. For sensorless control of the drive, an improved estimator is applied using stator voltages and currents. The stator current, voltage and resistance are not measured, but determined by a reconstruction from DC link measurements and the inverter switches states. This reduces the count of the sensors in the drive since the inputs for the flux estimator are reconstructed motor voltage and current obtained from the measured DC link values. An EMS offset estimator using simple technique based on the knowing states of the inverter switches compensates the offset of the pure integrator in the flux estimator. The angle of the rotor flux space vector, needed for the switching table, is determined from the referred rotor flux values and motor parameters used in the control algorithm are only the stator resistance and the transient inductance. Experiments are provided to confirm the performance of the proposed control algorithm.
机译:在本文中,提出了一种在电流源逆变器(CSI)供电的感应电动机驱动器中的无速度直接转矩控制(DTC)实现。 CSI馈电感应电动机驱动器的DTC通过应用最佳电流切换矢量来直接控制转子磁链和电磁转矩。对于驱动器的无传感器控制,使用定子电压和电流来应用改进的估算器。不会测量定子电流,电压和电阻,而是通过直流链路测量和逆变器开关状态的重建来确定定子电流,电压和电阻。由于用于通量估算器的输入是重构的电机电压和从测得的直流母线值获得的电流,因此这减少了驱动器中传感器的数量。基于逆变器开关的已知状态,使用简单技术的EMS偏移估算器补偿了通量估算器中纯积分器的偏移。切换表所需的转子磁通量空间矢量的角度由参考的转子磁通量值确定,控制算法中使用的电动机参数仅是定子电阻和瞬态电感。提供实验以确认所提出的控制算法的性能。

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