Modeling and simulation of the complete electric power train of a hybrid electric vehicle

Prathviraj Shetty, S. Dawnee
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引用次数: 10

Abstract

Hybrid electric vehicles (HEV) are in greater demand these days because of the increase in fuel price and environmental effects of burning fuel. Hence it is important to understand the behavior of the complete electric power train to meet the greater performance expectation from the HEV. In this paper the modeling of the entire electric power train of the HEV that includes an E-motor which is selected based on the characteristics best suited for HEV application is attempted. The E-motor in this case, Permanent Magnet Synchronous motor (PMSM) is controlled by a 3 phase 2 level voltage source inverter (VSI) whose switching is controlled by SVPWM technique. The speed and current feedbacks are taken to control the speed and torque by creating an error signal and passing it through the PI controller. The results of the PI controllers are the two voltage references from which the magnitude and reference angle is calculated and fed to the SVPWM module. The SVPWM module generates the appropriate pulses for the VSI to generate the required voltages as requested by the user. The modeling and simulation was carried out using Matlab Simulink and the proposed electric power-train is clean and efficient for potential application in hybrid electrical vehicles.
混合动力汽车全动力系统的建模与仿真
由于燃料价格的上涨和燃烧燃料对环境的影响,混合动力电动汽车(HEV)的需求越来越大。因此,了解整个电动动力系统的行为以满足混合动力汽车更高的性能期望是非常重要的。本文尝试对混合动力汽车的整个电力传动系统进行建模,其中包括根据最适合混合动力汽车应用的特性选择电机。电机采用三相二电平电压源逆变器(VSI)控制,其开关采用SVPWM技术控制。速度和电流反馈通过产生误差信号并将其传递给PI控制器来控制速度和转矩。PI控制器的结果是两个参考电压,从中计算幅度和参考角度并馈送到SVPWM模块。SVPWM模块为VSI产生适当的脉冲,以根据用户的要求产生所需的电压。利用Matlab Simulink进行了建模和仿真,结果表明所提出的电动传动系统清洁高效,具有在混合动力汽车上应用的潜力。
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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