扭矩
直接转矩控制
磁阻
电动汽车
控制理论(社会学)
开关磁阻电动机
转矩密度
病媒控制
有限元法
推进
电池(电)
电力航天器推进
磁阻电动机
汽车工程
电动机
功率(物理)
计算机科学
工程类
电气工程
物理
电压
磁铁
控制(管理)
感应电动机
航空航天工程
结构工程
热力学
人工智能
作者
Lucian Tutelea,Ana Moldovan Popa,Ion Boldea
标识
DOI:10.1109/optim.2014.6850884
摘要
The aim of this paper is to introduce — by general analytical nonlinear and then optimal design with vector control a hybrid electric and electric vehicles (HEV/EV) electric propulsion system for 50/100 kW, 1350–7000 rpm (600 Nm peak torque/40 kg) at above 91% overall efficiency 300 Vdc battery for a peak phase current of 520 A. After searching quite a few alternative electric machines the low weight (40 kg) NdFeB (1.1 T) PM-Reluctance synchronous machine with vector control was developed in detail. Finite element validation of flux density, torque, inductances and non-reconfigurable vector control for the entire peak torque (power) very challenging envelope substantiate a moderate cost high performance HEV (EV) drive.
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