电气工程学报 ›› 2023, Vol. 18 ›› Issue (4): 66-73.doi: 10.11985/2023.04.008
收稿日期:
2023-08-31
修回日期:
2024-04-01
出版日期:
2023-12-25
发布日期:
2024-01-12
通讯作者:
倪荣刚,男,1987年生,副教授,硕士研究生导师。主要研究方向为电机设计与控制。E-mail:作者简介:
蔡亚倩,女,1997年生,博士研究生。主要研究方向为电机分析设计。E-mail:caiyaqian2022@163.com基金资助:
NI Ronggang1(), CAI Yaqian2(
), HAN Siyu1(
), ZHAO Yong1(
)
Received:
2023-08-31
Revised:
2024-04-01
Online:
2023-12-25
Published:
2024-01-12
摘要:
可变磁阻旋转变压器由于其耐高温、受机械振动影响小、结构简单等优点广泛应用于恶劣工作环境的转子位置检测。此前工作提出了一种内定子变磁阻旋转变压器径向集成在永磁同步电机中的混合双定子电机结构,并采用改进绕组函数法(Modified winding function approach,MWFA)对其磁场分布和电磁参数进行解析分析。然而,解析计算得到的气隙磁通密度在槽开口处与有限元分析结果相比仍存在偏差。为此,提出分段绕组函数法(Segmented winding function method,SWFM),通过考虑磁场和绕组的实际分布,对气隙和线圈匝数函数进行分段处理,进一步提高解析计算结果的精确性。利用该方法计算气隙磁通密度和励磁绕组自感,并将SWFM和MWFA结果与有限元分析进行对比,验证所提方法的有效性。
中图分类号:
倪荣刚, 蔡亚倩, 韩思雨, 赵咏. 基于匝数气隙双分段的改进绕组函数解析分析方法*[J]. 电气工程学报, 2023, 18(4): 66-73.
NI Ronggang, CAI Yaqian, HAN Siyu, ZHAO Yong. Modified Winding Function Analytical Analysis Method Based on Segmentation of Both Coil and Air Gap Distributions[J]. Journal of Electrical Engineering, 2023, 18(4): 66-73.
[1] | 曹艳玲. 旋变位置解码系统的设计[J]. 电子世界, 2013(19):132-133. |
CAO Yanling. Design of resolver position decoding system[J]. Electronics World, 2013(19):132-133. | |
[2] |
BAHARI M, DAVOODI A, SANEIE H, et al. A new variable reluctance PM-resolver[J]. IEEE Sensors Journal, 2019, 20(1):135-142.
doi: 10.1109/JSEN.7361 |
[3] |
SANEIE H, NASIRI-GHEIDARI Z. Generalized nonoverlapping tooth coil winding method for variable reluctance resolvers[J]. IEEE Transactions on Industrial Electronics, 2022, 69(5):5325-5332.
doi: 10.1109/TIE.2021.3084157 |
[4] |
CHEN Henglin, WANG Tao, YE Shize, et al. Modeling and suppression of electromagnetic interference noise on motor resolver of electric vehicle[J]. IEEE Transactions on Electromagnetic Compatibility, 2021, 63(3):720-729.
doi: 10.1109/TEMC.2020.3023088 |
[5] |
SHI Ruoyun, SEMSAR S, LEHN P W. Single-stage hybrid energy storage integration in electric vehicles using vector controlled power sharing[J]. IEEE Transactions on Industrial Electronics, 2020, 68(11):10623-10633.
doi: 10.1109/TIE.2020.3038100 |
[6] | 蔡炯炯, 蒋丽君, 倪凯华, 等. 一种基于点距判断的永磁电机位置解算方法[J]. 电机与控制应用, 2020, 47(11):34-39,46. |
CAI Jiongjiong, JIANG Lijun, NI Kaihua, et al. A method of permanent magnet motor position calculation based on point distance judgment[J]. Motor and Control Application, 2020, 47(11):34-39,46. | |
[7] | 范良志, 杨晓峰, 肖志权, 等. 单对极质数槽绕线式旋变绕组配合的磁势精度[J]. 中国电机工程学报, 2021, 41(5):1903-1913. |
FAN Liangzhi, YANG Xiaofeng, XIAO Zhiquan, et al. Magnetic potential accuracy of single pair of pole prime slot wound rotary transformer winding[J]. Proceedings of the CSEE, 2021, 41(5):1903-1913. | |
[8] | XIAO Longfei, BI Chao. Optimization of absolute variable reluctance resolver with taguchi and FEM[C]// 22nd International Conference on Electrical Machines and Systems(ICEMS),August 11-14,2019,Harbin Insitute of Technology,Harbin. IEEE, 2019:1-6. |
[9] |
SUN Le, LUO Zhejun, HANG Jun, et al. A slotless PM variable reluctance resolver with axial magnetic field[J]. IEEE Transactions on Industrial Electronics, 2022, 69(6):6329-6340.
doi: 10.1109/TIE.2021.3090704 |
[10] |
XIAO Longfei, BI Chao. An optimization approach of rotor contour for variable reluctance resolver[J]. CES Transactions on Electrical Machines and Systems, 2021, 5(3):257-261.
doi: 10.30941/CESTEMS.2021.00029 |
[11] |
SANEIE H, NASIRI-GHEIDARI Z, TOOTOONCHIAN F. Design and prototyping of a multi-turn sinusoidal air-gap length resolver[J]. IEEE Transactions on Energy Conversion, 2020, 35(1):271-278.
doi: 10.1109/TEC.60 |
[12] |
BAHARI M, TOOTOONCHIAN F. Proposal of a fault-tolerance technique for 1-ph open circuit fault in resolvers[J]. IEEE Sensors Journal, 2021, 21(14):15987-15992.
doi: 10.1109/JSEN.2021.3076173 |
[13] |
ZARE F, NASIRI-GHEIDARI Z. Helical motion wound-rotor resolver[J]. IEEE Sensors Journal, 2022, 22(10):9371-9377.
doi: 10.1109/JSEN.2022.3167427 |
[14] | 聂述鑫. 永磁与磁阻式旋变集成的双气隙复合电机研究[D]. 青岛: 青岛大学, 2021. |
NIE Shuxin. Research on dual air gap composite motor with permanent magnet and reluctance rotary converter[D]. Qingdao: Qingdao University, 2021. | |
[15] | LIU Ze, XIANG Yang, ZHOU Yong. Finite element modeling method and modal analysis of a high temperature superconducting motor[J]. IEEE Transactions on Applied Superconductivity, 2021, 31(8):1-4. |
[16] | 燕婧文, 狄冲, 鲍晓华, 等. 基于二维有限元法的感应电机T型等效电路参数的分析与计算[J]. 中国电机工程学报, 2021, 41(S1):294-302. |
YAN Jingwen, DI Chong, BAO Xiaohua, et al. Analysis and calculation of T-type equivalent circuit parameters of induction motor based on two-dimensional finite element method[J]. Proceedings of the CSEE, 2021, 41(S1):294-302. | |
[17] | WEN Teng, CUI Xiang, LI Xuebao, et al. Time-domain finite element method for transient electric field and transient charge density on dielectric interface[J]. CSEE Journal of Power and Energy Systems, 2022, 8(1):143-154. |
[18] | 车瑞, 孙明. 基于有限元法的气体放电模拟综述[J]. 电气技术, 2022, 23(7):18-25,80. |
CHE Rui, SUN Ming. Summary of gas discharge simulation based on finite element method[J]. Electrical Engineering, 2022, 23(7):18-25,80. | |
[19] | 佟文明, 吴胜男, 安忠良. 基于绕组函数法的分数槽集中绕组永磁同步电机电感参数研究[J]. 电工技术学报, 2015, 30(13):150-157. |
TONG Wenming, WU Shengnan, AN Zhongliang. Study on inductance parameters of fractional slot concentrating winding permanent magnet synchronous motor based on winding function method[J]. Transactions of China Electrotechnical Society, 2015, 30(13):150-157. | |
[20] |
ALIPOUR-SARABI R, NASIRI-GHEIDARI Z, TOOTOONCHIAN F, et al. Improved winding proposal for wound rotor resolver using genetic algorithm and winding function approach[J]. IEEE Transactions on Industrial Electronics, 2019, 66(2):1325-1334.
doi: 10.1109/TIE.2018.2821091 |
[21] |
AL-NUAIM N A, TOLIYAT H. A novel method for modeling dynamic air-gap eccentricity in synchronous machines based on modified winding function theory[J]. IEEE Transactions on Energy Conversion, 1998, 13(2):156-162.
doi: 10.1109/60.678979 |
[22] | 鲍晓华, 程志恒, 王汉丰, 等. 基于改进绕组函数法的感应电机偏心电感参数计算[J]. 电工技术学报, 2016, 31(6):13-20. |
BAO Xiaohua, CHENG Zhiheng, WANG Hanfeng, et al. Calculation of eccentric inductance parameters of induction motor based on improved winding function method[J]. Transactions of China Electrotechnical Society, 2016, 31(6):13-20. | |
[23] | NOURMOHAMMADPOUR M, KHALILZADEH M, ABBASZADEH K. Accurate modeling of switched reluctance motor by using improved winding function method[C]// 22nd Iranian Conference on Electrical Engineering(ICEE), May 20-22,2014,Shahid Beheshti University,Tehran. IEEE, 2014:793-797. |
[24] | MIRNIKJOO S A, ABBASZADEH K, ABDOLLAHI S E. Winding function model of a 6/7 variable flux reluctance machine[C]// 11th Power Electronics, Drive Systems and Technologies Conference(PEDSTC), February 4-6,2020,Tehran. IEEE, 2020:1-6. |
[25] | LIANG Zhe, LIANGDeliang, JIAShaofeng. Inductance calculation for the symmetrical non-salient dual three-phase PMSM based on winding function approach[C]// 21st International Conference on Electrical Machines and Systems(ICEMS), October 7-10,2018,Jeju. IEEE, 2018:269-274. |
[26] | DOULATSHAH A, NADERI P. Eccentricity fault detection of a salient-pole synchronous machine using modified winding function approaches and finite element method[C]// 7th Power Electronics and Drive Systems Technologies Conference(PEDSTC), February 16-18,2016,Iran University of Science and Technology,Tehran. IEEE, 2016:29-34. |
[27] | 章回炫, 范涛, 边元均, 等. 永磁同步电机高性能电流预测控制[J]. 电工技术学报, 2022, 37(17):4335-4345. |
ZHANG Huixuan, FAN Tao, BIAN Yuanjun, et al. High-performance current predictive control of permanent magnet synchronous motor[J]. Transactions of China Electrotechnical Society, 2022, 37(17):4335-4345. | |
[28] | 佟文明, 姚颖聪, 李世奇, 等. 考虑磁桥不均匀饱和的内置式永磁同步电机等效磁网络模型[J]. 电工技术学报, 2022, 37(12):2961-2970. |
TONG Wenming, YAO Yingcong, LI Shiqi, et al. Equivalent magnetic network model of built-in permanent magnet synchronous motor considering non-uniform saturation of magnetic bridge[J]. Transactions of China Electrotechnical Society, 2022, 37(12):2961-2970. | |
[29] | 陈浈斐, 邢宁, 马宏忠, 等. 分数槽永磁电机永磁体谐波涡流损耗建模与分析[J]. 电工技术学报, 2022, 37(14):3514-3527. |
CHEN Zhenfei, XING Ning, MA Hongzhong, et al. Modeling and analysis of harmonic eddy current losses of permanent magnets in fractional slot permanent magnet motors[J]. Transactions of China Electrotechnical Society, 2022, 37(14):3514-3527. | |
[30] |
TONG Wenming, SUN Lu, WU Shengnan, et al. Analytical model and experimental verification of permanent magnet eddy current loss in permanent magnet machines with nonconcentric magnetic poles[J]. IEEE Transactions on Industrial Electronics, 2022, 69(9):8815-8824.
doi: 10.1109/TIE.2021.3111573 |
[31] | WANG Xiaoguang, ZHAO Meng, ZHOU Yu, et al. Design and analysis for multi-disc coreless axial-flux permanent-magnet synchronous machine[J]. IEEE Transactions on Applied Superconductivity, 2021, 31(8):1-4. |
[32] | 刘凯, 张炳义, 冯桂宏. 基于非对称绕组函数法永磁同步电机偏心电感参数的研究[J]. 电工技术学报, 2020, 35(S2):387-394,431. |
LIU Kai, ZHANG Bingyi, FENG Guihong. Research on eccentric inductance parameters of permanent magnet synchronous motor based on asymmetric winding function method[J]. Transactions of China Electrotechnical Society, 2020, 35(S2):387-394,431. | |
[33] |
NI Ronggang, CAI Yaqian, GU Shizhuang, et al. Improved analytical analysis of novel integrated variable reluctance resolver for compact machine topology[J]. Transactions on Industrial Electronics, 2022, 69(12):12600-12609.
doi: 10.1109/TIE.2021.3131798 |
[1] | 陈前, 赵美玲, 廖继红, 刘国海, 赵文祥. 轻量化高效率永磁电机及其控制技术综述*[J]. 电气工程学报, 2023, 18(4): 3-19. |
[2] | 林宝全, 李捷, 杨公德. 永磁游标电机转矩特性研究*[J]. 电气工程学报, 2023, 18(4): 35-42. |
[3] | 朱国宇, 安兴科, 诸德宏, 陈前. 基于改进自适应超螺旋观测器的永磁同步电机无位置控制*[J]. 电气工程学报, 2023, 18(4): 84-95. |
[4] | 张冰鑫, 刘侃, 李跃, 胡伟, 黄庆, 陈泳丹. 基于累积误差补偿的永磁同步电机低速插值控制策略*[J]. 电气工程学报, 2023, 18(3): 145-153. |
[5] | 许家群, 陈腾宇. 前置滤波器永磁同步电机的电流环参数多目标优化设计[J]. 电气工程学报, 2023, 18(3): 164-174. |
[6] | 吕盈盈, 包广清. 高温超导双定子永磁游标电机的优化与特性分析*[J]. 电气工程学报, 2023, 18(3): 175-183. |
[7] | 王群京, 郑耀达, 刘先增. 基于结构参数优化的电机振动噪声的抑制研究*[J]. 电气工程学报, 2023, 18(2): 16-25. |
[8] | 莫舒然, 张宏伟, 王新环. 基于ADRC与SMO的涡旋压缩机低速转矩补偿控制*[J]. 电气工程学报, 2023, 18(2): 9-15. |
[9] | 谢明睿, 赖纪东, 苏建徽, 周晨光. 基于超前角结合MTPV的SPMSM复合弱磁控制策略*[J]. 电气工程学报, 2022, 17(3): 114-121. |
[10] | 马昕晨, 陈志辉. 高压直流轴向混合励磁双凸极发电机的结构及特性分析*[J]. 电气工程学报, 2022, 17(2): 65-72. |
[11] | 沐俊文, 葛兴来, 朱丹. 地铁永磁牵引系统复矢量电流环稳定性研究*[J]. 电气工程学报, 2022, 17(2): 92-100. |
[12] | 王道涵, 彭晨, 王秀和. 电动汽车高性能永磁电机转矩脉动与电磁振动抑制方法研究*[J]. 电气工程学报, 2021, 16(4): 42-50. |
[13] | 刘春强, 骆光照, 涂文聪. 航空机电作动永磁同步电机自抗扰控制研究综述*[J]. 电气工程学报, 2021, 16(4): 12-24. |
[14] | 王海良, 刘世民, 陈永清, 尹玉才. 基于新型权重因子校正和延时补偿的永磁同步电动机模型预测转矩控制 *[J]. 电气工程学报, 2021, 16(1): 26-33. |
[15] | 金石, 朱熙, 金无痕, 张凤阁. 基于谐波提取器的永磁同步电机谐波抑制方法 *[J]. 电气工程学报, 2021, 16(1): 9-15. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||