Traction system for an EV based on induction motor and 3-level NPC inverter multilevel converters

Mario A. Gonzalez, M. F. Escalante
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引用次数: 14

Abstract

This work presents the modeling of the dynamics of an electric vehicle (EV). Then, by using a typical driving cycle, the parameters for the motor drive system and other drive train components are determined. The proposed drive system is based on an induction motor being supplied by a 3-level NPC inverter. The speed control is based on a constant V/Hz strategy while the inverter is commanded by a Sinusoidal Pulse Width Modulation Strategy. The proposed drive system is validated by simulation. In one hand, the results show that the implemented V/Hz control strategy is capable of maintain the reference speed, as demanded by a driving pattern, and on the other hand, the strategy used to control de NPC multilevel inverter, is capable of assuring the demanded output voltage and the inverter internal variables are kept as needed.
基于感应电机和3电平NPC逆变器的电动汽车牵引系统
本文介绍了电动汽车动力学的建模。然后,通过使用一个典型的驱动循环,确定电机驱动系统和其他传动系部件的参数。所提出的驱动系统是基于由3级NPC逆变器提供的感应电机。速度控制基于恒定V/Hz策略,而逆变器由正弦脉宽调制策略控制。仿真验证了该驱动系统的有效性。结果表明,所实现的V/Hz控制策略一方面能够保持驱动模式所需的参考速度,另一方面,用于控制NPC多电平逆变器的策略能够确保所需的输出电压和逆变器内部变量保持不变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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