应用于新能源电动汽车的永磁辅助同步磁阻电机设计
摘要
本文通过科学分析并验证相应的基准电机与有限元,有效说明了永磁辅助同步磁阻电机的科学设计方案。此研究以分析应用于新能源电动汽车的永磁辅助同步磁阻电机设计方法为目的,希望提升永磁辅助同步磁阻电机在我国新能源电动汽车中的应用水平。
出处
《内燃机与配件》
2018年第15期23-24,共2页
Internal Combustion Engine & Parts
二级参考文献23
-
1DAVIS S C, D1EGEL S W, BOUNDY R G, et al. 2013 Vehicle technologies market report [ G]. Oak Ridge National Laboratory, 2014.
-
2BOLDEA I, TUTELEA L N, PARSA L, et al. Automotive electric propulsion systems with redueed or no permanent magnets: an overview [ J ]. IEEE Transactions on Industrial Electronics, 2014, 61 (10) : 5696-5711.
-
3CHAN C C. The state of the art of electric and hybrid vehicles [ C ]//Proceedings of the IEEE, 2012, 90 (2) : 247-275.
-
4CHAN C C, BOUSCAYROL A, CHEN K, et al. Architectures and modeling [ J ]. IEEE Transactions on Vehicular Technology, 2010,59 (2) : 589-598.
-
5HANNAN M A, AZIDIN F A, MOHAMED A. Hybrid electric vehicles and their challenges: a review [ J ]. Renewable and Sustainable Energy Reviews, 2014,29( 1 ) : 135-150.
-
6ZHU Z Q, HOWE D. Electrical machines and drives for electric, hybrid, and fuel cell vehicles [ C ]// Proceedings of the IEEE, 2007,95 (4) : 746-765.
-
7PELLEGRINO G, VAGATI A, BOAZZO B, et al. Comparison of induction and PM synchronous motor drives for EV application including design examples [ J ]. IEEE Transactions on Industry Applications, 2012,48(6) : 2322-2332.
-
8KIYOTA K, KAKISHIMA T, CHIBA A. Comparison of test result and design stage prediction of switched reluctance motor competitive with 60-kW rare-earth PM motor [ J ]. IEEE Transactions on Industrial Electronics, 2014,61 (10) : 5712-5721.
-
9DORRELL D G, KNIGHT A M, EVANS L, et al. Analysis and design techniques applied to hybrid vehicle drive machines-assessment of alternative IPM and induction motor topologies [ J ]. IEEE Transactions on Industrial Electronics, 2012, 59 (10) : 3690-3699.
-
10CAI H W, GUAN B, XU L Y, Low-cost ferrite PM- assisted synchronous reluctance machine for electric vehicles [ J ]. IEEE Transactions on Industrial Electronics, 2014,61 (10) : 5741-5748.
共引文献9
-
1谢细明,彭航,邓强,张智峰,李健.基于电感测量的同步磁阻电机转子偏心监测研究[J].自动化与仪器仪表,2018,0(12):8-11. 被引量:2
-
2方磊,谭国俊,刘娜,徐海奇.永磁辅助式同步磁阻电机转矩预测控制方法[J].电机与控制应用,2018,45(5):1-7. 被引量:6
-
3代希杰,张广明,邓歆.辅磁同步磁阻电动机低转矩脉动下转子结构优化[J].微特电机,2018,46(10):15-18. 被引量:4
-
4刘景林,杨甜戈.永磁同步磁阻电动机的研究现状与应用[J].微电机,2020,53(5):100-104. 被引量:2
-
5栾彪.新能源电动汽车电子电气架构设计[J].数码设计,2021,10(4):178-179.
-
6肖勇,陈彬,李霞,史进飞,王杜,李莹.永磁辅助同步磁阻电机交直轴电感参数分析[J].电机与控制应用,2021,48(6):89-94. 被引量:3
-
7王世伟,韩雪岩,李宏浩,高俊.车用永磁同步磁阻电机转子的优化设计[J].微电机,2021,54(6):89-92. 被引量:1
-
8王楠,傅绍锋,赵泳鑫.风力发电技术在新能源电动汽车中的应用策略[J].大市场,2020(2):31-31.
-
9刘栋良,李阿强,刘伟,汪建.电动汽车用永磁辅助同步磁阻电机转子优化[J].电机与控制学报,2022,26(9):119-129. 被引量:4
-
1喻琦,王心坚,章桐.永磁同步电机与同步磁阻电机能量转换特性对比[J].机电一体化,2017,23(11):27-33. 被引量:2
-
2钱杰,鲁文其,林健,张帧毅,吴迪.同步磁阻电机直接转矩控制系统研究[J].电机与控制应用,2018,45(4):44-49.
-
3侯捷.新能源电动汽车节能减排效应及发展路径研究[J].现代经济信息,2018,0(13):391-391. 被引量:6
-
4方磊,谭国俊,刘娜,徐海奇.永磁辅助式同步磁阻电机转矩预测控制方法[J].电机与控制应用,2018,45(5):1-7. 被引量:6
-
5Press Release 新电机技术助力挤出机降低能耗、维护成本和噪声[J].电气传动自动化,2017,39(4):60-60.
-
6姜文,黄文新,蒋雪峰,董顶峰,王齐,林晓刚.定子电励磁型磁通切换电机的绕组构成分析与功率密度优化设计[J].中国电机工程学报,2017,37(21):6266-6277. 被引量:5