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A comparative study of different control techniques for an induction motor fed by a Z-source inverter for electric vehicles

机译:电动车辆Z源逆变器供给的电磁电动机不同控制技术的对比研究

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This paper presents a comparative study of the most significant control methods (scalar control (V/F), indirect field oriented control (IFOC) and direct torque control (DTC)) for an induction motor fed by a Z-source inverter (ZSI) for automotive applications. The three control techniques are implemented using PWM voltage modulation. The comparison is based on various criteria including: the motor dynamic performance, the speed and torque ripples, the ac current harmonic content, the control algorithm implementation complexity, the ZSI performance and the overall system efficiency. The study is done by MATLAB simulation of a 15 kW induction motor fed by a high performance Z-source inverter. The simulation results indicates that, the IFOC seems to be the best control techniques suitable for controlling an induction motor fed by a ZSI for automotive applications. In addition, this paper proves that, all control methods used for the voltage source inverter (VSI) can be applied for the ZSI and gaining its advantages.
机译:本文提出了对由Z源逆变器(ZSI)供给的感应电动机(ZSI)提供的最重要控制方法(标量控制(V / F),间接场取向控制(IFOC)和直扭矩控制(DTC))的比较研究用于汽车应用。使用PWM电压调制来实现三种控制技术。比较基于各种标准,包括:电机动态性能,速度和扭矩波纹,交流电流谐波含量,控制算法实现复杂性,ZSI性能和整体系统效率。该研究由Matlab模拟通过高性能Z源逆变器供给的15千瓦感应电机进行。仿真结果表明,IFOC似乎是适合于控制由ZSI供给汽车应用的感应电动机的最佳控制技术。此外,本文证明,用于电压源逆变器(VSI)的所有控制方法都可以应用于ZSI并获得其优点。

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