基于三种组合转矩控制方法的电动汽车IPMSM电机最优牵引与再生制动参考电流综合

Khaled Itani, A. De Bernardinis, Z. Khatir, A. Jammal
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引用次数: 11

摘要

在本文中,我们将使用Matlab/Simulink®实现电动汽车(EV)三种组合转矩控制方法的IPMSM的最佳牵引和再生制动电流综合。为了在更高的转速下施加转矩,应通过在d轴注入负电流来减弱磁通。根据运行速度、参考转矩、电压和电流的约束,介绍几种产生参考电流的方法。转矩/速度特性将分解为五个操作区域,由三种控制方法划分:每安培最大转矩,电压电流限制最大转矩和恒定功率区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal traction and regenerative braking reference current synthesis for an IPMSM motor using three combined torque control methods for an Electric Vehicle
In this paper, we will represent the optimal traction and regenerative braking current synthesis for an IPMSM using three combined torque control methods for an Electric Vehicle (EV) using Matlab/Simulink®. In order to impose torque at higher speed, the flux should be weakened by injecting negative current in the d- axis. Several methods of reference current generation will be described according to the operating speed, torque reference, voltage and current constraints. The torque/speed characteristics will be decomposed into five zones of operation delimited by three methods of control: Maximum Torque per Ampere, Voltage Current Limited Maximum Torque and Constant Power Region.
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