微特电机 ›› 2022, Vol. 50 ›› Issue (10): 37-43.
罗迪, 刘小虎
收稿日期:
2022-06-29
出版日期:
2022-10-28
发布日期:
2022-10-25
作者简介:
罗迪(1998—),女,硕士研究生,研究方向为电力电子及其电力传动、直线电机控制。
LUO Di, LIU Xiaohu
Received:
2022-06-29
Online:
2022-10-28
Published:
2022-10-25
摘要: 开绕组永磁同步直线电机(PMSLM)具有容错性高、拓扑灵活等特点,在高功率、大容量场合具有广阔的应用前景。开绕组电机系统两端逆变器采用一个直流电源供电时,采用传统的空间矢量调制策略(SVPWM),存在的共模电压会在回路中产生零序电流,增加电机损耗和转矩脉动。为了有效地抑制开绕组PMSLM的零序电流,采用无共模电压SVPWM调制策略,可使电机相电流波形畸变得到明显改善,THD从24.29%降为3.93%,同时矢量控制系统的速度响应满足要求。仿真验证了控制方法的有效性。
中图分类号:
罗迪, 刘小虎. 考虑零序电流抑制的开绕组直线电机矢量控制[J]. 微特电机, 2022, 50(10): 37-43.
LUO Di, LIU Xiaohu. Vector Control of Open-Winding Linear Motors Considering Zero-Sequence Current Suppression[J]. Small & Special Electrical Machines, 2022, 50(10): 37-43.
[1] 陈仲华,赵文祥,张建,等.高推力永磁游标直线电机的开放式绕组SVPWM 控制[J] .电工技术学报,2016,31(S2):210-218. [2] 王颖杰,许家斌.开绕组电机共直流母线双逆变器调制策略优化[J] .中国电机工程学报,2016,36(20):5594-5604. [3] 年珩,胡伟.共直流母线开绕组永磁同步电机的弱磁控制策略[J] .中国电机工程学报,2018,38(21):6461-6469. [4] SHIVAKUMAR E G,GOPAKUMAR K,SINHA S K,et al.Space vector PWM control of dual inverter fed open-end winding induction motor drive[C]//Applied Power Electronics Conference and Exposition,Anaheim,Canada,2001:399-405. [5] KAWABATA T,EJIOGU E C,KAWABATA Y,et al.New open-winding configurations for high-power inverters[C]//Proceedings of the IEEE International Symposium on Industrial Electronics,Guimaraes,1997:457-462. [6] SEKHAR K R,SRINIVAS S.Current ripple analysis for an asymmetric dual two-level inverter drive with reduced common mode voltage PWM technique[C]//IEEE International Conference on Power Electronics,Drives and Energy Systems.IEEE,2013:1-6. [7] SOMASEKHAR V T,GOPAKUMAR K,BAIJU M R.Dual two-level inverter scheme for an open-end winding induction motor drive with a single DC power supply and improved DC bus utilization[J].IEE Proceedings Electric Power Applications,2004,151(2):230-238. [8] SOMASEKHAR V T,SRINIVAS S,PRAKASH R B,et al.Pulse width-modulated switching strategy for the dynamic balancing of zero-sequence current for a dual-inverterfed open-end winding induction motor drive[J].IET Electric Power Applications,2007,1(4):591-600. [9] SOMASEKHAR V T,SRINIVAS S,GOPAKUMAR K.A space vector based PWM switching scheme for the reduction of common-mode voltages for a dual inverter fed open-end winding induction motor drive[C]//Power Electronics Specialists Conference,2005:816-821. [10] 冯智煜,高琳,殷凯轩,等.开绕组永磁同步电机零矢量注入模型预测控制[J].电机与控制学报,2022,26(2):32-42. [11] 朱苪.开绕组永磁同步电机有限集模型预测控制研究[D].徐州:中国矿业大学,2020. [12] 孙丹,赵琛,柯伟煌,等.基于重构电压矢量的共直流母线型开绕组永磁同步电机改进直接转矩控制[J].电工技术学报,2022,37(7):1644-1653. [13] SUN D,CHEN W H,CHENG Y F,et al.Improved direct torque control for open-winding PMSM system considering zero-sequence current suppression with low switching frequency[J].IEEE Transactions on Power Electronics,2021,36(4):4440-4451,4647. [14] 张晓光,闫康,张文涵.开绕组永磁同步电机混合双矢量模型预测控制[J].电工技术学报,2021,36(1):96. [15] 年珩,胡伟.共直流母线开绕组永磁同步电机的弱磁控制策略[J].中国电机工程学报,2018,38(21):6461-6469. [16] 安群涛,姚飞.双逆变器SVPWM调制策略及零序电压抑制方法[J].中国电机工程学报,2016,36(4):1042-1049. [17] ZHU X Y,YUAN Y.Phase-shift decoupled SVPWM control strategy for open winding permanent magnet synchronous motor with common DC bus[C]//IEEE Energy Conversion Congress and Exposition (ECCE),2018:3421-3427. [18] SHEN Z W,JIANG D.A novel zero-sequence current elimination PWM scheme for an open-winding PMSM with common DC bus[J].IEEE Transactions on Industry Applications,2019,34(12):12476-12490. [19] LUCA R,REA F T.Zero sequence voltalge elimination for dual-fed common DC-link open-end winding PMSM high-speed starter generator—part I:modulation[J].IEEE Transactions on Industry Applications,2019,55(6):7804-7812. [20] LUCA R,REA F T.Zero-sequence voltage elimination for dualfed common DC-link open-end winding pmsm high-speed starter-generator—part II:deadtime hysteresis control of zero-sequence current[J].IEEE Transactions on Industry Applications,2019,55(6):7813-7821. [21] STEMMLER H,GUGGENBACH P.Configurations of high power voltage source inverter drives[C]//Fifth European Conference on Power Electronics and Applications,1993:7-14. [22] KAWABATA T,EJIOGU E C,KAWABATA Y,et al.New open-winding configurations for high-power inverters[C]//Proceedings of the IEEE International Symposium on Industrial Electronics,1997:457-462. [23] ZHAN H,ZHU Z,ODAVIC M.Analysis and suppression of zero sequence circulating current in open winding PMSM drives with common DC bus[J].IEEE Transactions on Industry Applications,2017,53(4):3609-3620. |
[1] | 欧阳湘军, 赵明威, 谭平, 黄胜平, 张硕. 一种鲁棒性的永磁同步电机单电流传感器相电流重构方法[J]. 微特电机, 2022, 50(10): 9-14. |
[2] | 杨荣江, 戴志立, 吴林泉. 风冷低噪大功率永磁同步电机设计与仿真[J]. 微特电机, 2022, 50(10): 15-19. |
[3] | 周金华, 李泽世, 吴佳浩. 电磁失电制动器优化设计与仿真[J]. 微特电机, 2022, 50(10): 28-30. |
[4] | 胡文浩, 尹强, 孙乐, 刘国栋. 永磁同步电机双环模型预测控制研究[J]. 微特电机, 2022, 50(10): 31-36. |
[5] | 蒋雨菲, 沈坚, 段卓琳, 王伟洋, 董星言, 杨金波, 吴丹. 基于特种车辆永磁同步多用途电机驱动系统设计[J]. 微特电机, 2022, 50(10): 44-47. |
[6] | 郭伟林, 牛高产, 文聪. 新能源车主驱电机转子位置实时自校正技术研究[J]. 微特电机, 2022, 50(10): 48-52. |
[7] | 刁子轩, 张兰红, 陈永楼. 汽油发电机逆变电源控制系统的研究与设计[J]. 微特电机, 2022, 50(10): 53-57. |
[8] | 李文俊, 唐玉春, 张学敏, 秦祖和, 张瑗. 某永磁直流力矩电动机转轴倾斜现象质量改进[J]. 微特电机, 2022, 50(10): 63-66. |
[9] | 杨建飞, 陈秋仲, 王日茗, 邱鑫, 金振, 张永民, 王浩亮. 无刷直流电机直接转矩控制系统零矢量优化[J]. 微特电机, 2022, 50(9): 12-19. |
[10] | 袁永杰, 郑文鹏, 魏学鹏, 赵金磊, 李立娜. 环形磁钢空心杯电机空载漏磁系数的计算[J]. 微特电机, 2022, 50(9): 25-28. |
[11] | 施杨华, 鞠宇宁, 杨明, 杨焕钊, 钱儿. 扁线绕组在临近空间低速大扭矩电机中的应用[J]. 微特电机, 2022, 50(9): 29-32. |
[12] | 高鹏, 尹强, 孙乐, 姜泽超, 刘国栋. 一种抑制齿槽转矩的高精度定位伺服控制方法[J]. 微特电机, 2022, 50(9): 36-42. |
[13] | 魏正龙. 电感在线辨识下的永磁同步电动机制动能量回馈控制仿真[J]. 微特电机, 2022, 50(9): 53-57. |
[14] | 王文成, 胡建辉, 刘飞, 李勇. 双转子磁通切换弧线电机特性的仿真研究[J]. 微特电机, 2022, 50(8): 1-7. |
[15] | 孙维国, 胡岩, 吴家成. 电动汽车用增程发电机的设计与优化[J]. 微特电机, 2022, 50(8): 8-14. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||