Efficiency Improvement of Electric Vehicles By Using Winding-Less Rotor Based DC Motor

Toqeer Ahmed, Syed Tahir Mehboob
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Abstract

In electric vehicles (EVs), efficient energy consumption is very important. Based on demand, different electric motor technologies are employed by the manufacturers and are still evolving. This paper analyses the electric motors utilized in electric vehicles such as DC motor, Brushless DC (BLDC) motor, AC induction motor, permanent magnet synchronous motor (PMSM), switched reluctance motor (SRM), and permanent magnet synchronous reluctance motor (PM-SynRM). The advantages and disadvantages correspond to traction motors are pointed out. The main drawback is the power losses in the armature windings of the motors that reduce the overall efficiency and reduce the run per charge of EV due to additional power consumption from the battery pack. To reduce these losses, the authors have proposed a system that is more efficient as the windings from the rotor have been replaced by permanent magnets. Therefore, the power losses in armature windings have been eliminated, and reduced the power consumption by the motor from the battery pack, subsequently, the run per charge of EV has been increased. The overall efficiency of EVs has been increased to almost 100% by the proposed system. This claim is supported theoretically, graphically, as well as practically and presented in the results section of the paper. Finally, the conclusions have been made on the traction motors used in the proposed EVs model. 
采用无绕组转子直流电机提高电动汽车效率
在电动汽车中,高效的能源消耗是非常重要的。根据需求,制造商采用了不同的电机技术,并且仍在不断发展。本文分析了电动汽车中使用的直流电机、无刷直流(BLDC)电机、交流感应电机、永磁同步电机(PMSM)、开关磁阻电机(SRM)和永磁同步磁阻电机(PM-SynRM)。指出了牵引电动机的优缺点。主要缺点是电机电枢绕组的功率损耗,由于电池组的额外功耗,降低了整体效率,减少了EV每次充电的运行时间。为了减少这些损失,作者提出了一种更有效的系统,因为转子的绕组已被永磁体取代。因此,消除了电枢绕组的功率损耗,减少了电动机从电池组中消耗的功率,从而增加了EV的每次充电的运行次数。通过该系统,电动汽车的整体效率几乎提高到了100%。这一主张得到了理论、图形和实践的支持,并在论文的结果部分提出。最后,对电动汽车模型中使用的牵引电机进行了分析。
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