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Efficiency Analysis of Induction Motor Control Strategies Using a System-Level EV Model

机译:系统级EV模型的感应电动机控制策略效率分析

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This paper presents a comparative study on the effect of two commonly used induction motor (IM) control strategies on motor and inverter efficiency of battery electric vehicles over standard drive cycles. An electric vehicle (EV) model is created for the 2015 Chevrolet Spark EV and verified using experimental data. After model verification, the Spark permanent magnet synchronous motor is replaced with a detailed IM and controller model. Simulation results for both Field Oriented Control (FOC) with constant rated flux and Maximum Torque Per Ampere (MTPA) control over a test drive cycle are given to validate the good tracking capability of IM current and speed controllers. The effect of control method and drive cycle on motor and inverter efficiency is illustrated by comparing efficiency calculation results for three standard drive cycles (UDDS, HWFET and US06).
机译:本文对两种常用的感应电动机(IM)控制策略在标准行驶周期内对电池电动汽车的电动机和逆变器效率的影响进行了比较研究。为2015 Chevrolet Spark EV创建了电动汽车(EV)模型,并使用实验数据进行了验证。经过模型验证后,Spark永磁同步电动机将替换为详细的IM和控制器模型。给出了具有恒定额定通量的磁场定向控制(FOC)和在测试驱动周期内的最大每安培最大转矩(MTPA)控制的仿真结果,以验证IM电流和速度控制器的良好跟踪能力。通过比较三个标准驱动周期(UDDS,HWFET和US06)的效率计算结果,说明了控制方法和驱动周期对电动机和逆变器效率的影响。

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