针对电动汽车应用的无刷直流电机再生制动性能研究

Nitesh Soni, M. Barai
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引用次数: 2

摘要

普及电动汽车的主要障碍是一次充电的行驶里程较低。在刹车过程中,大量的动能以热量的形式浪费在了车轮上。再生制动是在制动过程中从电机中回收动能的方法。针对电动汽车的应用,对无刷直流电机的再生制动进行了研究。在电机末端制动时产生的感应反电动势(EMF)被用作给电池充电的电源。这种再生方法提高了电动汽车的里程,并减少了制动时间。但是,如果反电动势的幅度高于电池电压,则可以对电池进行充电。在不使用任何专用DC-DC升压转换器或超级电容器的情况下,执行升压动作以提高该反电动势的水平。在MATLAB/Simulink环境下设计并实现了一种带无刷直流电机负载的三相二电平闭环VSI。对带无刷直流电机的二电平VSI进行了闭环控制信号的生成,实现了梯形换相。通过对无刷直流电机制动时的电池充电,验证了能量回收操作。仿真结果说明了无刷直流电机的再生制动。
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Performance Study of Regenerative Braking of BLDC Motor targeting Electric Vehicle Applications
The main barrier to the widespread adoption of electric vehicles is the low mileage on one charge. A lot of kinetic energy gets wasted on the wheels of the vehicle in the form of heat during braking. Regenerative braking is the method of recovering the kinetic energy from the motor during braking. This paper presents the study of regenerative braking of BLDC motor targeting electric vehicle (EV) applications. The induced back electromotive force (EMF) during braking at the motor terminal is used as a source to recharge the battery. This method of regeneration improves the mileage of an EV and reduces braking time as well. However, the battery can be charged with this back EMF if its magnitude is higher than the battery voltage. A boosting action is performed to boost up the level of this back EMF without using any dedicated DC-DC boost converter or an ultra-capacitor. A three phase two level VSI in the closed loop with BLDC motor load is designed and implemented in MATLAB/Simulink environment. The generations of control signals for two level VSI with BLDC motor in closed loop operation are carried out to perform trapezoidal commutation. The energy recovery operation is verified by charging the battery during the braking of BLDC Motor. Simulation results are presented to illustrate the regenerative braking of the BLDC motor.
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