上海交通大学机械与动力工程学院,上海,200240
网络首发:2020-10-10,
纸质出版:2020
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毛帅 1, 陶建峰 1, 2, 等. 采用Kriging模型的开关磁阻电机开通角与关断角寻优方法[J]. 西安交通大学学报, 2020,54(10):94-99+107.
An Optimi-ation Method for Turn-on and Turn-off Angles of Switched Reluctance Motors Using Kriging Model[J]. 2020, 54(10): 94-99+107.
毛帅 1, 陶建峰 1, 2, 等. 采用Kriging模型的开关磁阻电机开通角与关断角寻优方法[J]. 西安交通大学学报, 2020,54(10):94-99+107. DOI: 10.7652/xjtuxb202010011.
An Optimi-ation Method for Turn-on and Turn-off Angles of Switched Reluctance Motors Using Kriging Model[J]. 2020, 54(10): 94-99+107. DOI: 10.7652/xjtuxb202010011.
针对传统密集采样方法获得采用角度位置控制的开关磁阻电机最优开通角与关断角所需实验次数多、耗时长
效率低的问题
提出一种采用Kriging模型的最优开通角和关断角实验求取方法来减少实验采样次数
提高寻优效率。首先
通过少量的初始样本点建立开通角和关断角与电机振动加速度之间的预测模型; 之后
根据得到的预测模型有针对性地在最优开通角和关断角可能出现的区域进行采样计算; 最后
当区域缩小到满足精度要求的大小后
对该区域进行密集采样
从而快速准确发现最优开通角和关断角。实验结果表明
基于Kriging预测模型获取相同开关磁阻电机最优开通角和关断角(误差小于1%以内)所需样本数仅为传统的密集采样方法的12.4%
计算时间缩短了62.8%。因此
所提方法能显著提高开关磁阻电机的开通角和关断角寻优实验效率。
An experimental method for turn-on and turn-off angles based on Kriging prediction model is proposed to solve the problem that the traditional intensive sampling method requires many experiments
long time and low efficiency to obtain optimal switching angles of switched reluctance motor controlled by angle position control strategy. First
a model to predict the relationship between the switching angles and the motor vibration is established via a small number of sample points. Then
prediction results from the model are used to the sampling and calculation in the area where the optimal switching angles probably exist. Finally
when the area is reduced to meet an accuracy requirement
intensive sampling is conducted in the area so as to rapidly and exactly obtain the optimal switching angles. Experimental results show that the number of samples used by the proposed method to obtain the optimal switching angle(error is less than 1%)of the same switched reluctance motor is only 12.4% of
吴红星, 嵇恒, 倪天, 等. 新型开关磁阻电机发展综述 [J]. 微电机, 2011, 44(1): 78-83.
WU Hongxing, JI Heng, NI Tian, et al. Summary of novel switched reluctance motor development [J]. Micromotors, 2011, 44(1): 78-83.
孙玉坤, 袁野, 黄永红, 等. 磁悬浮开关磁阻电机及其关键技术发展综述 [J]. 电工技术学报, 2015, 30(22): 1-8.
SUN Yukun, YUAN Ye, HUANG Yonghong, et al. Development of the bearingless switched reluctance motor and its key technologies [J]. Transactions of China Electrotechnical Society, 2015, 30(22): 1-8.
左曙光, 刘明田, 胡胜龙. 考虑铁芯磁饱和的开关磁阻电机电感及转矩解析建模 [J]. 西安交通大学学报, 2019, 53(7): 118-125.
ZUO Shuguang LIU Mingtian, HU Shenglong. Analytical modeling for inductance and torque of switched reluctance motor considering iron core magnetic saturation [J]. Journal of Xi'an Jioatong University, 2019, 53(7): 118-125.
宋金龙, 刘勇智, 周政, 等. 中低速开关磁阻电机转矩优化策略研究 [J]. 西安交通大学学报, 2016, 50(11): 83-90.
SONG Jinlong, LIU Yongzhi, ZHOU Zheng, et al. Torque optimization of medium-low speed switched reluctance motor [J]. Journal of Xi'an Jiaotong University, 2016, 50(11): 83-90.
CAO Xin, ZHOU Jingxing, LIU Congyu, et al. Advanced control method for single-winding bearing less switched reluctance motor to reduce torque ripple and radial displacement [J]. IEEE Transactions on Energy Conversion, 2017, 32(4): 1533-1543.
SOZER Y, TORREY D A. Optimal turn-off angle control in the face of automatic turn-on angle control for switched-reluctance motors [J]. IET Electric Power Applications, 2007, 1(3): 395-401.
XU Y Z, ZHONG R, CHEN L, et al. Analytical method to optimise turn-on angle and turn-off angle for switched reluctance motor drives [J]. IET Electric Power Applications, 2012, 6(9): 593-603.
ZAN Xiaoshu, HUO Yingjie, GU J, et al. Optimization research of turn-on angle and turn-off angle based on switched reluctance starter/generator system [C]∥IEEE 28th Canadian Conference on Electrical and Computer Engineering. Piscataway, NJ, USA: IEEE, 2015: 864-869.
曲兵妮, 宋世潮, 宋建成, 等. 考虑小电感区电感变化量的开关磁阻电机开通角和关断角优化方法 [J]. 电机与控制学报, 2019(2): 87-93.
QU Bingni, SONG Shichao, SONG Jiancheng, et al. Switch angle optimization method for switched reluctance motor considering the inductance variation in small inductance period [J]. Electric Machines and Control, 2019(2): 87-93.
朱龙, 吕晓波, 徐东杰, 等. 基于差分进化算法的开关磁阻电机转矩脉动抑制 [J]. 电气传动, 2016, 46(10): 17-20.
ZHU Long, LÜ Xiaobo, XU Dongjie, et al. Torque ripple suppression of switched reluctance motor based on differential evolution algorithm [J]. Electric Drive, 2016, 46(10): 17-20.
TAKENO M, CHIBA A, HOSHI N, et al. Test results and torque improvement of the 50-kW switched reluctance motor designed for hybrid electric vehicles [J]. IEEE Transactions on Industry Applications, 2012, 48(4): 1327-1334.
DESAI P C, KRISHNAMURTHY M, SCHOFIELD N, et al. Novel switched reluctance machine configuration with higher number of rotor poles than stator poles: concept to implementation [J]. IEEE Transactions on Industry Applications, 2010, 57(2): 649-659.
DING Shuye, LIU Haoran, CHU Jilun, et al. Performance analysis of a switched reluctance motor based on the APC control [J]. Electric Machines and Control, 2012 16(2): 39-43.
LEI Yu, WANG Jun, GOU Bin, et al. An improved method of angle position control for switched reluctance motor [J]. Power Electronics, 2018, 52(2): 21-24.
赵天一. 开关磁阻电机转矩脉动抑制与平滑转速范围提升研究 [D]. 哈尔滨: 哈尔滨工业大学, 2019: 11-12.
陈灵. 基于开通、关断角度优化的开关磁阻电机控制策略研究 [D]. 长沙: 中南大学, 2010: 14-15.
CAI Xiwen, QIU Haobo, GAO Liang, et al. A multi-point sampling method based on kriging for global optimization. [J]. Structural and Multidisciplinary Optimization, 2017, 56(1): 71-88.
LI Shuai, WANG Yiping, WANG Tao, et al. Optimization of heat exchangers with dimpled surfaces to improve the performance in thermoelectric generators using a kriging model [J]. Journal of Electronic Materials, 2017, 46(5): 3062-3070.
余锐, 周代伟, 竺晓程, 等. 基于自适应Kriging代理模型的叶型气动优化设计 [J]. 动力工程学报, 2014, 34(2): 103-107.
YU Rui, ZHOU Daiwei, ZHU Xiaochen, et al. Aerodynamic optimization design of airfoils based on adaptive kriging surrogate model [J]. Journal of Chinese Society of Power Engineering, 2014, 34(2): 103-107.
夏斌. 基于Kriging模型的开关磁阻电机优化设计 [D]. 沈阳: 沈阳工业大学, 2012: 9-13.
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