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Motor Control for Power Variator in a Hybrid Electric Vehicle

机译:混合动力电动汽车动力变速器的电动机控制

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Motor control algorithm on how to operate the internal combustion engine(ICE) is proposed for hybrid electric vehicle(HEV) with EVT which consists of a power variator, MG1 and MG2, and planetary gear set. From the network analysis results, it is found that the EVT efficiency decreases in high speed ratio region due to the power circulation, and it is required that the ICE needs to be operated on the speed ratio region where the powertrain efficiency is relatively high. The motor control algorithm to operate the ICE is designed by inversion-based control. In order to evaluate performance of the control algorithm, HEV simulator is developed based on the dynamic models of the HEV powertrain using Cruise and MATLAB Simulink. It is found from the simulation results that the motor control algorithm proposed in this study shows improved fuel economy compared with the conventional control since the power variator motor control is able to provide the ICE operation on the speed ratio range, which gives relatively high powertrain system efficiency.
机译:针对带有EVT的混合动力汽车(HEV),提出了一种关于如何操作内燃机(ICE)的电动机控制算法,该混合动力汽车由功率变换器MG1和MG2以及行星齿轮组组成。从网络分析结果发现,由于动力循环,EVT效率在高速比区域降低,并且要求ICE需要在动力传动系统效率相对较高的速比区域上运行。通过基于反转的控制来设计用于运行ICE的电机控制算法。为了评估控制算法的性能,使用Cruise和MATLAB Simulink在HEV动力总成的动态模型的基础上开发了HEV模拟器。从仿真结果发现,由于功率变速电动机控制能够在速比范围内提供ICE操作,因此本研究提出的电动机控制算法与传统控制相比具有更高的燃油经济性,从而提供了相对较高的动力总成系统效率。

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