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A multiphase traction/fast-battery-charger drive for electric or plug-in hybrid vehicles: Solutions for control in traction mode

机译:电动或插电式混合动力汽车的多相牵引/快速电池充电器驱动器:牵引模式下的控制解决方案

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For Electric Vehicles (EV), the charger is one of the main technical and economical weaknesses. This paper focuses on an original electric drive [1]-[3] dedicated to the vehicle traction and configurable as a battery charger without need of additional components. This cheap solution can outfit either electric or plug-in hybrid automotive vehicles, without needing additional mass and volume dedicated to the charger. Moreover, it allows a high charging power, for short duration charge cycles. However, this solution needs specific cares concerning the electrical machine control. This paper deals with the control of this drive [1], focusing on traction mode. In introduction, a review is done about topologies of combined on-board chargers. Then, the studied topology is introduced; using a 3-phase brushless machine supplied with a 6-leg Voltage Source Inverter (VSI). A model for its control is defined in the generalized Concordia frame, considering the traction mode. Then, an analysis of this model is established using a multimachine theory and a graphical formalism (the Energetic Macroscopic Representation denoted EMR). Using EMR, a description of energy flows shows specific control constraints. Indeed, numerical simulations illustrate the perturbations on the currents and the torque when controlling the machine with standard control methodologies. An improved control, deduced from the previous analysis, shows good performances, strongly reducing currents and torque ripples.
机译:对于电动汽车(EV),充电器是主要的技术和经济缺陷之一。本文重点介绍了专用于车辆牵引力的原电动驱动器[1]-[3],可将其配置为电池充电器,而无需其他组件。这种廉价的解决方案可以配备电动或插电式混合动力汽车,而无需额外的充电器体积和体积。此外,它允许短时充电周期的高充电功率。但是,该解决方案需要特别注意电机控制。本文主要针对牵引模式来研究该驱动器的控制[1]。在介绍中,对组合式车载充电器的拓扑进行了回顾。然后,介绍了所研究的拓扑。使用配有6脚电压源逆变器(VSI)的三相无刷电机。考虑到牵引模式,在广义Concordia框架中定义了用于控制的模型。然后,使用多机器理论和图形形式主义(表示为EMR的高能宏观表示)建立对该模型的分析。使用EMR,对能量流的描述显示了特定的控制约束。实际上,数值模拟说明了使用标准控制方法控制机器时电流和转矩的扰动。根据先前的分析得出的改进控制显示出良好的性能,极大地减少了电流和转矩脉动。

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