首页> 外文期刊>International Journal of Power Electronics and Drive Systems >New model of electric traction drive based sliding mode controller in field-oriented control of induction motor fed by multilevel inverter
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New model of electric traction drive based sliding mode controller in field-oriented control of induction motor fed by multilevel inverter

机译:基于电动牵引驱动器的新模型,由多级逆变器供给的电磁电机面向电磁控制中的滑动模式控制器

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This paper presents a new model of electric traction drive for electric vehicle. The sliding mode speed controller applied in the Indirect Rotor Field Oriented Control is used to control the induction motor fed by the five levels Neutral Point Clamped inverter (NPC). The simulation results showed the high performances dynamics and high?robustness of the proposed model, that?are reflected by faster startup and good speed tracking performances in terms of response time, oscillations and disturbance rejection. Also, a comparative study between different inverter topologies: two levels inverter, three levels NPC inverter and five levels NPC inverter has been carried out. From the spectral analysis, the five-levels NPC inverter fed drive provides better dynamics of voltage and current with reduced total?harmonic?distortion (THD).
机译:本文为电动汽车提供了一种新型电动牵引驱动模型。在间接转子场取向控制中施加的滑模速度控制器用于控制由五级中性点夹紧逆变器(NPC)供给的感应电动机。仿真结果表明,高性能动态和高?拟议模型的鲁棒性,即在响应时间,振荡和干扰抑制方面,通过更快的启动和良好的速度跟踪性能反映。此外,不同逆变器拓扑之间的比较研究:两级逆变器,三级NPC逆变器和五级NPC逆变器已经进行。从光谱分析,五级NPC逆变器馈电驱动器提供更好的电压和电流动力学,总共减少?谐波?失真(THD)。

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