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Multilevel Torque Hysteresis-Band Based Direct-Torque Control Strategy for a Three-Level Open-End Winding Induction Motor Drive for Electric Vehicle Applications

机译:基于多级转矩磁滞带的直接转矩控制策略,用于电动汽车应用的三级开放式绕组感应电动机驱动器

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摘要

The number of levels present in the torque-hysteresis controller influence the performance of the direct torque controlled (DTC) induction motor drives. In this paper, the effects of the number of levels in the torque-hysteresis-band controllers (THBCs) on the performance of the conventional DTC-based three-level open-end winding induction motor drives are reported. A power-loss evaluation model was employed to investigate the influence of the number of levels present in THBC on the switching and conduction losses occurring in the dual-inverter system. The performance indices considered in this paper are: 1) the flux-ripple; 2) the torque ripple; and 3) the total power loss in the dual-inverter system. Furthermore, these performance indices are evaluated with a newly emerging control strategy, namely, the predictive torque control, and are compared with those obtained with the DTC. The simulation results are validated by showing the experimental results.
机译:转矩滞后控制器中存在的级别数会影响直接转矩控制(DTC)感应电动机驱动器的性能。在本文中,报告了转矩滞后带控制器(THBC)中的电平数对常规基于DTC的三电平开放式绕组感应电动机驱动器性能的影响。功率损耗评估模型用于研究THBC中存在的电平数对双逆变器系统中发生的开关损耗和传导损耗的影响。本文考虑的性能指标为:1)磁通脉动; 2)转矩脉动; 3)双逆变器系统的总功率损耗。此外,这些性能指标通过一种新兴的控制策略(即预测转矩控制)进行评估,并与DTC获得的性能指标进行比较。通过显示实验结果验证了仿真结果。

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