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Lifetime Model Research of Motor Drive System for Electric Vehicles

机译:电动汽车电机驱动系统的寿命模型研究

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Like the one used in industrial applications, the motor drive system for electric vehicle (EV) is composed of a three phase inverter, a motor controller, a motor and a sensor system. The difference is that the motor drive system for EV is packaged with much higher power density and its operation status changes frequently. A direct consequence is the key components such as insulated gate bipolar transistor (IGBT), capacitor of the inverter, as well as the insulation system and bearings of the motor endure harsh thermal stress. It is these components which dominantly affect the system life [1]. This paper proposes a new method to establish the lifetime model of motor drive system1. The power losses of each key component under operation are calculated by using the inverter and motor loss model. The lifetime of the system is estimated based on the key components thermal stress. As an example, the lifetime of a 160kW induction motor drive system is estimated.
机译:类似于工业应用中的电动汽车,电动汽车(EV)的电动机驱动系统由三相逆变器,电动机控制器,电动机和传感器系统组成。不同之处在于,用于电动汽车的电机驱动系统具有更高的功率密度,并且其运行状态经常变化。直接后果是关键组件,例如绝缘栅双极型晶体管(IGBT),逆变器的电容器以及绝缘系统和电动机的轴承承受严酷的热应力。这些组件主要影响系统寿命[1]。本文提出了一种建立电动机驱动系统寿命模型的新方法。通过使用逆变器和电动机损耗模型来计算运行中每个关键组件的功率损耗。系统的寿命是根据关键组件热应力估算的。例如,估算了160kW感应电动机驱动系统的寿命。

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