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A space vector modulation based direct torque control scheme for a current source inverter fed induction motor drive

机译:基于空间矢量调制的电流源逆变器感应电动机驱动直接转矩控制方案

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Direct torque control (DTC) scheme is quite popular in a voltage source inverter fed induction motor (IM) drive. Considering a switching table based algorithm, the flux and torque are directly controlled by applied inverter voltage vectors. There is a direct relation between stator flux and applied inverter voltage vector, which is eventually the stator voltage vector. However, in a current source inverter (CSI) fed IM drive, there is no direct relation between the stator flux amplitude and the applied current vector. Further, filter capacitor in between the inverter and motor terminals decouples the motor from the CSI. Hence, it is quite difficult to realise a switching table based algorithm to control stator flux. This paper proposes a new scheme to control flux and torque directly. The torque angle is calculated based on the electromagnetic torque demand; the torque angle and the output of flux controller generate the reference current vector. The dc link current is decided by the magnitude of the reference current and the CSI is switched through space-vector pulse width modulation scheme based on the the position of the reference current vector. The whole scheme is simulated in MATLAB/Simulink platform. The results show torque and flux are controlled properly.
机译:直接转矩控制(DTC)方案在电压源逆变器供电的感应电动机(IM)驱动器中非常流行。考虑基于切换表的算法,磁通和转矩由施加的逆变器电压矢量直接控制。定子磁通和施加的逆变器电压矢量之间存在直接关系,该关系最终是定子电压矢量。但是,在采用电流源逆变器(CSI)的IM驱动器中,定子磁通幅度和施加的电流矢量之间没有直接关系。此外,逆变器和电动机端子之间的滤波电容器会将电动机与CSI分离。因此,很难实现基于切换表的算法来控制定子磁通。本文提出了一种直接控制磁通和转矩的新方案。扭矩角是根据电磁扭矩需求计算得出的;转矩角和磁通控制器的输出生成参考电流矢量。直流链路电流由参考电流的大小决定,并且基于参考电流矢量的位置通过空间矢量脉冲宽度调制方案切换CSI。整个方案在MATLAB / Simulink平台上进行了仿真。结果表明,转矩和磁通得到了适当的控制。

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