Abstract:The circular winding brushless DC motor (CWBLDC) is a brushless DC motor, but a multiphase winding of the motor is connected in a unique polygon or circular fashion. The CWBLDC motor has higher torque density due to larger width of electromotive force (EMF) trapezoidal wave. Combined with well-designed fractional-slot winding, the motor can dramatically reduce the commutation torque ripple, which is suitable for electric propulsion systems of high power rating ships despite more power semiconductor devices required. Different from the conventional three-phase BLDC motor, the circuit topologies transform with the rotor rotation. Transformation period of topologies reduces the modeling complexity. Field-circuit couple simulations and experimental results verify the model. The model is helpful to understand the operation principle of CWBLDC motor. It can quickly analyze the steady-state performance, which is suitable for parameters determination in CWBLDC motor design.
林黄达, 程思为, 王东, 贾喆武, 张庆湖. 环形绕组无刷直流电机的换向过程分析及建模[J]. 电工技术学报, 2020, 35(8): 1603-1612.
Lin Huangda, Cheng Siwei, Wang Dong, Jia Zhewu, Zhang Qinghu. Analytical Modeling of the Circular Winding Brushless DC Motor under Load Commutation. Transactions of China Electrotechnical Society, 2020, 35(8): 1603-1612.
[1] Lewis C.The advanced induction motor[C]//2002 IEEE Power Engineering Society Summer Meeting, Chicago, 2002: 250-253. [2] 王东, 吴新振, 马伟明, 等. 非正弦供电十五相感应电机气隙磁势分析[J]. 中国电机工程学报, 2009, 29(15): 88-94. Wang Dong, Wu Xinzhen, Ma Weiming, et al.Air- gap MMF analysis of fifteen-phase induction motor with non-sinusoidal supply[J]. Proceedings of the CSEE, 2009, 29(15): 88-94. [3] Thongam J S, Tarbouchi M, Okou A F, et al.Trends in naval ship propulsion drive motor techno- logy[C]//2013 IEEE Electrical Power & Energy Conference (EPEC), Halifax, 2013: 1-5. [4] 姚文龙, 张均东, 张桂臣. 吊舱推进电机及其关键技术发展综述[J]. 电工技术学报, 2012, 27(3): 35-49. Yao Wenlong, Zhang Jundong, Zhang Guichen.Development of the propulsion motor and its key technologies for ship podded system[J]. Transactions of China Electrotechnical Society, 2012, 27(3): 35-49. [5] Laszlo Huber, Misha Kumar.Performance com- parison of three-step and six-step PWM in average- current-controlled three-phase six-switch Boost PFC rectifier[J]. IEEE Transactions on Power Electronics, 2016, 31(10): 7264-7272. [6] Carlson R, Lajoie-Mazenc M, Fagundes J C D S. Analysis of torque ripple due to phase commutation in brushless DC machines[J]. IEEE Transactions on Industry Applications, 1992, 28(3): 632-638. [7] 朱俊杰, 刘浩然, 蒋峰, 等. 无刷直流电机转矩脉动抑制系统的新型拓扑研究[J]. 电工技术学报, 2018, 33(17): 4060-4068. Zhu Junjie, Liu Haoran, Jiang Feng, et al.A new topology research on torque ripple suppression system of brushless motor[J]. Transactions of China Electrotechnical Society, 2018, 33(17): 4060-4068. [8] 王培侠, 姜卫东, 王金平, 等. 基于电流滞环控制的无刷直流电机多状态换相转矩脉动抑制方法[J]. 电工技术学报, 2018, 33(22): 5261-5271. Wang Peixia, Jiang Weidong, Wang Jinping, et al.A current hysteresis control method for brushless DC motor in multi-state with commutation torque ripple reduction[J]. Transactions of China Electrotechnical Society, 2018, 33(22): 5261-5271. [9] Jahns T M, Soong W L.Pulsating torque mini- mization techniques for permanent magnet AC motor drives-a review[J]. IEEE Transactions on Industrial Electronics, 1996, 43(2): 321-330. [10] Murai Y, Kawase Y, Ohashi K, et al.Torque ripple improvement for brushless DC miniature motors[J]. IEEE Transactions on Industry Applications, 1989, 25(3): 441-450. [11] 盛田田, 王晓琳, 顾聪, 等. 一种使用重叠换相法的无刷直流电机平均转矩控制[J]. 中国电机工程学报, 2015, 35(15): 3939-3947. Sheng Tiantian, Wang Xiaolin, Gu Cong, et al.An average torque control method for brushless DC motors using overlap commutation strategy[J]. Proceedings of the CSEE, 2015, 35(15): 3939-3947. [12] 林平, 韦鲲, 张仲超. 新型无刷直流电机换相转矩脉动的抑制控制方法[J]. 中国电机工程学报, 2006, 26(3): 153-158. Lin Ping, Wei Kun, Zhang Zhongchao.A novel control scheme to suppress the commutation torque ripple in BLDCM[J]. Proceedings of the CSEE, 2006, 26(3): 153-158. [13] Fang Jiandeng, Li Huitao, Han Bangcheng.Torque ripple reduction in BLDC torque motor with nonideal back EMF[J]. IEEE Transactions on Power Elec- tronics, 2012, 27(11): 4630-4637. [14] 姜卫东, 黄辉, 王培侠, 等. 基于图解法的无刷直流电机抑制换相转矩脉动的方法[J]. 中国电机工程学报, 2016, 36(15): 4258-4266. Jiang Weidong, Huang Hui, Wang Peixia, et al.A control method to suppress the commutation torque ripple of brushless DC motors based on the graphical method[J]. Proceedings of the CSEE, 2016, 36(15): 4258-4266. [15] 夏鲲, 董斌, 卢晶. 一种基于电流反馈的分段式PWM控制无刷直流电机转矩波动抑制方法[J]. 电工技术学报, 2017, 32(17): 172-179. Xia Kun, Dong Bin, Lu Jing.Research on hybrid PWM control method with current feedback for torque-ripple reduction in BLDCM[J]. Transactions of China Electrotechnical Society, 2017, 32(17): 172-179. [16] 史婷娜, 李聪, 姜国凯, 等. 基于无模型预测控制的无刷直流电机换相转矩波动抑制策略[J]. 电工技术学报, 2016, 31(15): 54-61. Shi Tingna, Li Cong, Jiang Guokai, et al.Model free predictive control method to suppress commutation torque ripple for brushless DC motor[J]. Transactions of China Electrotechnical Society, 2016, 31(15): 54-61. [17] Wang Dong, Lin Huangda, Cheng Siwei, et al.A novel circular winding brushless DC (CWBLDC) machine with low torque ripple[C]//41st Annual Conference of the IEEE Industrial Electronics Society (IECON 2015), Yokohama, 2015: 1585-1591. [18] Lin Huangda, Cheng Siwei, Wang Dong, et al.Load commutation of the circular winding brushless DC machine (CWBLDC)[C]//41st Annual Conference of the IEEE Industrial Electronics Society (IECON 2015), Yokohama, 2015: 2741-2746. [19] Cheng Siwei, Zhang Qinghu, Jia Zhewu.Dynamic modeling of the circular winding brushless DC (CWBLDC) machine[C]//2016 IEEE 8th Inter- national Power Electronics and Motion Control Conference, Hefei, 2016: 2741-2746. [20] Zhang Qinghu, Cheng Siwei, Wang Dong.Multiob- jective design optimization of high-power circular winding brushless DC motor[J]. IEEE Transactions on Industrial Electronics, 2018, 65(2): 1740-1750. [21] 林黄达, 王东, 程思为, 等. 环形绕组无刷直流电机负载换向的解析模型[J]. 电工技术学报, 2017, 32(9): 40-47. Lin Huangda, Wang Dong, Cheng Siwei, et al.Analytical model of load commutation of the circular winding brushless DC machine[J]. Transactions of China Electrotechnical Society, 2017, 32(9): 40-47. [22] Krishnan R.永磁无刷电机及其驱动技术[M]. 北京: 机械工业出版社, 2014. [23] 李鲲鹏, 胡虏生, 黄允凯. 计及绕组电感的永磁无刷直流电动机电路模型及其分析[J]. 中国电机工程学报, 2004, 24(1): 76-80. Li Kunpeng, Hu Qiansheng, Huang Yunkai.The circuit model of the permanent-magnet brushless DC motor allowing for its windings inductances and its analysis[J]. Proceedings of the CSEE, 2004, 24(1): 76-80. [24] 姜卫东, 廖玉茗, 王培侠, 等. 减小无刷直流电机换相转矩波动和换相时间的协调控制方法[J]. 中国电机工程学报, 2017, 37(7): 2120-2130. Jiang Weidong, Liao Yuming, Wang Peixia, et al.A corporative control method to reduce commutation torque ripple and commutation time for brushless DC motor[J]. Proceedings of the CSEE, 2017, 37(7): 2120-2130. [25] Chan C C, Jiang Jianzhong, Chen G H, et al.A novel polyphase multipole square-wave permanent magnet motor drive for electric vehicles[J]. IEEE Transa- ctions on Industry Applications, 1994, 30(5): 1258-1266. [26] Chan C C, Chau K T, Jiang Jianzhong, et al.Novel permanent magnet motor drives for electric vehicles[J]. IEEE Transactions on Industrial Electronics, 1996, 43(2): 331-339. [27] Zhu Li, Jiang Shuzhong, Jiang Jianzhong, et al.A new simplex wave winding permanent-magnet brushless DC machine[J]. IEEE Transactions on Magnetics, 2011, 47(1): 252-259. [28] Zhu Li, Jiang Shuzhong, Jiang Jianzhong, et al.Speed range extension for simplex wave winding permanent-magnet brushless DC machine[J]. IEEE Transactions on Magnetics, 2013, 49(2): 890-897.