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Sensorless DTC Drive of Induction Motor Using 3-Level Inverter

机译:使用三电平逆变器的感应电动机的无传感器DTC驱动

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This paper presents a novel switching table based Direct Torque Control (DTC) of induction machine modified for the 3-level inverter. Due to its large number of voltage vectors, torque and flux ripples can be reduced by distinguishing small and large torque and flux errors and choosing different switching vectors for each case. This work also introduces two sensor-less DTC systems: the adaptive flux observer and the Model Reference Adaptive System (MRAS). Based on the dynamic model of the induction machine, the adaptive flux observer estimates the rotor flux and speed according to adaptation laws that must ensure the stability of the system. In another hand, the MRAS technique consists on minimizing the error obtained from the comparison of two of rotor flux models, one based on voltage and current and the other based on current and rotor speed, using an adaptive mechanism. The proposed schemes were verified by simulation under Matlab/Simulink environment. Simulation results show good dynamic performances and low ripples of torque response with the employment of 3-level inverter. As for speed estimation, both techniques allow a good estimation of rotor speed, but MRAS technique gives better dynamic performances.
机译:本文提出了一种新颖的基于开关表的感应电机直接转矩控制(DTC),该电机针对三电平逆变器进行了修改。由于其大量的电压矢量,可以通过区分大小不等的转矩和磁通误差并为每种情况选择不同的开关矢量来减少转矩和磁通波动。这项工作还介绍了两个无传感器的DTC系统:自适应通量观测器和模型参考自适应系统(MRAS)。基于感应电机的动态模型,自适应磁通观测器根据必须确保系统稳定性的自适应定律估算转子磁通和转速。另一方面,MRAS技术包括使用自适应机制,通过比较两个转子磁通模型(一个基于电压和电流,另一个基于电流和转子速度)获得的误差最小。在Matlab / Simulink环境下通过仿真验证了所提出的方案。仿真结果表明,采用三电平逆变器后,动态性能良好,转矩响应的波动较小。至于速度估计,两种技术都可以很好地估计转子速度,但是MRAS技术可提供更好的动态性能。

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