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An advanced permanent magnet motor drive system for battery-powered electric vehicles

机译:电池驱动电动汽车的先进永磁电动机驱动系统

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Availability of high-energy neodymium-iron-boron (Nd-Fe-B) permanent magnet (PM) material has focused attention on the use of the PM synchronous motor (PMSM) drive for electric vehicles (EVs). A new Nd-Fe-B PMSM is proposed for the drive system, which possesses high power density and high efficiency, resulting in greater energy and space savings. The design and optimization of the motor employs finite element analysis and computer graphics. Increasingly, a new PWM inverter algorithm is developed for the drive system, which can handle the nonconstant battery voltage source. An efficiency optimizing control is adopted to further improve the energy utilization of the drive system. Both the control strategy and the PWM generation are implemented in a single-chip microcontroller. As a result, the motor drive achieves high power density, high efficiency, and compactness. A prototype of the 3.2 kW battery-powered drive system has been designed and built for an experimental mini-EV.
机译:高能钕铁硼(Nd-Fe-B)永磁(PM)材料的可用性已将注意力集中在电动汽车(EV)的PM同步电动机(PMSM)驱动器的使用上。提出了一种用于驱动系统的新型Nd-Fe-B PMSM,它具有高功率密度和高效率,从而节省了更多的能源和空间。电动机的设计和优化采用有限元分析和计算机图形学。越来越多地为驱动系统开发了一种新的PWM逆变器算法,该算法可以处理非恒定电池电压源。采用效率优化控制来进一步提高驱动系统的能源利用率。控制策略和PWM生成均在单芯片微控制器中实现。结果,电动机驱动器实现了高功率密度,高效率和紧凑性。 3.2 kW电池供电的驱动系统的原型已经为实验型微型电动汽车设计和制造。

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