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The influence of topology selection on the design of EV/HEV propulsion systems

机译:拓扑选择对EV / HEV推进系统设计的影响

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摘要

The adoption of the 42 V Powernet standard has focused substantial research effort into the design of electric machines for hybrid vehicles. This letter investigates the potential performance benefits afforded by adopting a cascaded inverter topology on the overall system and motor performance. As a particular design example, this letter shows that a cascaded inverter driving an open winding motor can increase the high-speed power density of an induction motor by 73%. For an interior permanent magnet motor, the cascaded topology can increase low-speed torque by 9% and high-speed power by up to 300%. In all cases, the power increase is achieved without increasing the phase current over a more traditional system.
机译:42 V Powernet标准的采用将大量研究工作集中在混合动力汽车电机的设计上。这封信调查了在整个系统和电机性能上采用级联逆变器拓扑结构可能带来的潜在性能优势。作为一个特定的设计示例,这封信表明,驱动开路绕组电动机的级联逆变器可以将感应电动机的高速功率密度提高73%。对于内置式永磁电动机,级联拓扑可将低速转矩增加9%,将高速功率增加多达300%。在所有情况下,都可以在不增加传统系统的相电流的情况下实现功率增加。

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