Automotive Engineering ›› 2021, Vol. 43 ›› Issue (8): 1128-1135.doi: 10.19562/j.chinasae.qcgc.2021.08.002
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Xiping Liu(),Jiesheng Fu,Longxin Du,Gaosheng Zhu Wenjian Guo
Received:
2021-04-12
Online:
2021-08-25
Published:
2021-08-20
Contact:
Xiping Liu
E-mail:liuxp211@163.com
Xiping Liu,Jiesheng Fu,Longxin Du,Gaosheng Zhu Wenjian Guo. Analysis and Optimization Design of IPMSM with a Double⁃layer Permanent Magnet Structure of Electric Vehicles[J].Automotive Engineering, 2021, 43(8): 1128-1135.
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实验 数量 | 实验矩阵 编码 | 空载气隙磁 密THD/% | ||
---|---|---|---|---|
1 | 111 | 424.413 9 | 8.81 | 24.20 |
2 | 122 | 431.614 7 | 6.89 | 18.44 |
3 | 133 | 438.207 5 | 6.74 | 18.68 |
4 | 144 | 441.859 0 | 6.16 | 20.43 |
5 | 212 | 428.302 2 | 7.82 | 19.52 |
6 | 221 | 428.027 4 | 8.02 | 19.91 |
7 | 234 | 440.367 3 | 6.96 | 20.80 |
8 | 243 | 439.609 3 | 5.99 | 19.93 |
9 | 313 | 431.865 5 | 7.40 | 21.04 |
10 | 324 | 437.482 5 | 6.93 | 21.83 |
11 | 331 | 430.322 4 | 8.29 | 21.14 |
12 | 342 | 435.261 6 | 7.01 | 21.10 |
13 | 414 | 433.917 4 | 7.42 | 23.51 |
14 | 423 | 434.261 7 | 6.86 | 22.36 |
15 | 432 | 432.587 8 | 7.29 | 22.20 |
16 | 441 | 431.738 5 | 8.76 | 23.13 |
1 | 唐任远.现代永磁电机理论与设计[M]. 北京: 机械工业出版社,1997. |
TANG Renyuan. Modern permanent magnet machines theory and design[M].Beijing: China Machine Press,1997. | |
2 | 刘细平,刘章麒,李亚,等. 电动汽车用双层永磁体IPMSM优化分析[J]. 电机与控制学报,2017,21(10):30. |
LIU Xiping, LIU Zhangqi, LI Ya, et al. Optimization and analysis of IPMSM with double⁃layer permanent magnet used in electric vehicle[J]. Electric Machines and Control,2017,21(10):30. | |
3 | 胡耀华. 电动汽车用内置式永磁同步电机的研究[D].南京:南京航空航天大学,2017. |
HU Yaohua. Research on interior permanent magnet synchronous machines for EV applications[D]. Nanjing:Nanjing University of Aeronautics and Astronautics,2017. | |
4 | 刘露. 新型五相内嵌式永磁同步电机的转矩与损耗解析计算[D].镇江:江苏大学,2019. |
LIU Lu.Analytical calculation of torque and loss of a novel fi⁃ve phase interior permanent magnet synchronous machine[D].Zhenjiang:Jiangsu University,2019. | |
5 | TIANG T L, ISHAK D, JAMIL M K M. Complete subdomain model for surfaced⁃mounted permanent magnet machines[C].IEEE Conference on Energy Conversion, Johor Bahru,Malaysia,2014:140. |
6 | 张河山,邓兆祥,杨金歌,等.表贴式永磁电机磁场的解析计算与分析[J]. 汽车工程,2018,40(7):850-857. |
ZHANG H,DENG Z,YANG J,et al.Analytic calculation and | |
analysis of magnetic field in surface⁃mounted permanent magnet | |
motor[J]. Automotive Engineering,2018,40(7):850-857. | |
7 | BOROUJENI S T,JALALI P,BIANCHI N.Analytical modeling of no⁃load eccentric slotted surface mounted PM machines: cogging torque and radial force[J]. IEEE Transaction on Magnetics,2017,30(3) : 1. |
8 | LALDIN O, SUDHOFF S D,PEKAREK S.Modified Carter's coeffic⁃ient[J]. IEEE Transaction on Magnetics,2015,30(3):1133. |
9 | 于吉坤,李立毅,张江鹏,等. 定子开槽永磁同步电机气隙比磁导解析计算[J]. 电工技术学报,2016,28(3) :45. |
YU Jikun,LI Liyi,ZHANG Jiangpeng,et al.Analytical calcula⁃tion of air⁃gap relative permeance in slotted permanent magnet syn⁃chronous motor[J].Transactions of China Electrotecnical Society,2016,28(3) : 45. | |
10 | 周羽,李槐树,周石,等. 考虑开槽时永磁无刷直流电机气隙磁场的解析计算[J].中国电机工程学报,2014,34(20):182. |
ZHOU Yu, LI Huaishu, ZHOU Shi ,et al. Analytical method for calculating air⁃gap magnetic field of brushless DC motor accounting for slots[J].Proceeding of the CSEE,2014,34( 20):182. | |
11 | 倪有源,何强,王群京. 双层 Halbach 永磁电机解析建模与优化[J].电机与控制学报,2020,24(1):53. |
NI Youyuan, HE Qiang, WANG Qunjing. Analitical modeling | |
and optimization of a two⁃layer Halbach permanent magnet motor[J].Electric Machines and Control,2020,24(1):53. | |
12 | 倪有源,刘跃斌,王群京. 组合磁极结构的永磁电机解析法建模与分析[J].电机与控制学报,2019,23 (1):52. |
NI Youyuan, LIU Yuebin, WANG Qunjing.Analitical modeling and analysis of permanent magnet machine with combined magnetic poles[J].Electric Machines and Control,2019,23(1):52. | |
13 | 王凤翔,郑柒拾. 永磁无刷直流电机的转矩计算及结构参数对转矩的影响[J].电机与控制学报,2001,5(2). |
WANG Fengxiang, ZHENG Qishi.Torque calculation of PMbrushless DC motor and influence of structure parameter on torque[J].Electric Machines and Control,2001,5(2). | |
14 | 安治国,刘高朋,高尉. 转子辅助槽对IPM性能的影响[J].重庆交通大学学报,2019,38(4):4. |
AN Zhiguo,LIU Gaopeng,GAO Wei.Effect of rotor auxiliary slot on IPM performance[J].Journal of Chongqing Jiaotong University,2019,38(4):4. | |
15 | 王爱元,朱建国, 商雨青. 三段 Halbach 磁铁阵列永磁同步电机铁心的优化设计[J].电机与控制学报,2017,21(4):37. |
WANG Aiyuan,Zhu Jianguo,SHANG Yuqing.Optimization of iron core design for permanent⁃magnet synchronous machines with three⁃segment Halbach magnet array[J].Electric Machines and Control, 2017,21(4):37. | |
16 | 司纪凯,张露锋,封海潮,等. 表面-内置式永磁转子同步电机多目标优化设计[J].煤炭学报,2016,41(12):3167-3173. |
SI Jikai, ZHANG Lufeng, FENG Haichao,et al. Multi⁃objective optimal design of a surface⁃mounted and interior permanent magnet synchronous motor[J]. Journal of Loal Society,2016,41(12):3167-3173. |
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