参考文献
[1]周济.智能制造——“中国制造2025”的主攻方向[J].中国机械工程,2015, 26(17):2273-2284.
[2]《中国制造2025》与工程技术人才培养研究课题组.《中国制造2025》与工程技术人才培养[J].高等工程教育研究,2015,155(06):6-10,82.
[3]杨华勇,张炜,吴蓝迪.面向中国制造2025的校企合作教育模式与改革策略研究[J].高等工程教育研究,2017(03):60-65.
[4]高丽媛.永磁同步电机的模型预测控制研究[D].杭州:浙江大学,2013.
[5]杨建飞,永磁同步电机直接转矩控制系统若干关键问题研究[D].南京:南京航空航天大学,2011.
[6]阮毅,陈伯时.电力拖动自动控制系统——运动控制系统[M].4版.北京:机械工业出版社,2012.
[7]李正熙,杨立永.交直流调速系统[M].北京:电子工业出版社,2013.
[8]徐斌.永磁同步电机矢量控制系统研究[D].南京:南京理工大学,2014.
[9]汤新舟.永磁同步电机的矢量控制系统[D].杭州:浙江大学,2005.
[10]HAN J Q. From PID to active disturbance rejection control [J].IEEE Transaction on Industrial Electronics.2009,56(3):900-906.
[11]刘计龙,肖飞,沈洋.永磁同步电机无位置传感器控制技术研究综述[J].电工技术学报,2017,32(16):76-88.
[12]姚骏,刘瑞阔,尹潇.永磁同步电机三矢量低开关频率模型预测控制研究[J].电工技术学报,2018,33(13):2935-2945.
[13]SUL S. Control of electric machine drive systems[M].New York:Wiley-IEEE Press,2011.
[14]牛峰.永磁同步电机直接转矩控制策略的研究[D].天津:河北工业大学,2015.
[15]占张青.永磁同步电机电流预测控制研究[D].徐州:中国矿业大学,2020.
[16]BUJA G S, KAZMIERKOWSKI M P. Direct torque control of PWM inverter-fed AC motors-a survey [J].IEEE Transactions on Industrial Electronics,2004,51(4):744-757.
[17]CHOI Y, CHOI H H, JUNG J. Feedback linearization direct torque control with reduced torque and flux ripples for IPMSM drives [J].IEEE Transactions on Power Electronics,2016,31(5):3728-3737.
[18]REN Y, ZHU Z Q, LIU J. Direct torque control of permanent-magnet synchronous machine drives with a simple duty ratio regulator [J].IEEE Transactions on Industrial Electronics,2014,61(10):5249-5258.
[19]刘莹.永磁同步电机模型预测控制策略研究[D].武汉:华中科技大学,2018.
[20]ZHANG X, LI Y, WANG K, et al. Model predictive control of the open-winding PMSG system based on three dimensional reference voltage-vector [J].IEEE Transactions on Industrial Electronics, 2020, 67(8):6312-6322.
[21]RODRIGUEZ J. State of the art of finite control set model predictive control in power electronics [J].IEEE Transactions on Industrial Informatics,2013,9(2):1003-1016.
[22]牛里,杨明,刘可述,等.永磁同步电机电流预测控制算法[J].中国电机工程学报,2012,32(06):131-137.
[23]ZHANG Y C, YANG H T, XIA B. Model predictive torque control of induction motor drives with reduced torque ripple [J].IET Electric Power Applications,2015,9(9):595-604.
[24]MORA A, ORELIANA A, JULIET J, et al. Model predictive torque control for torque ripple compensation in variable-speed PMSMs [J].IEEE Transactions on Industrial Electronics [J], 2016, 63(7):4084-4092.
[25]RODRIGUEZ J, KENNEL R, ESPINOZA J, et al. High-performance control strategies for electrical drives:an experimental assessment [J].IEEE Transactions on Industrial Electronics, 2012, 59(8):812-820.
[26]WANG F X, LI S H, MEI X Z, et al. Model-based predictive direct control strategies for electrical drives:an experimental evaluation of PTC and PCC methods [J].IEEE Transactions on Industrial Informatics, 2015, 11(3):671-681.
[27]ZHANG Y C, YANG H T. Torque ripple reduction of model predictive torque control of induction motor drives [C]//Energy Conversion Congress and Exposition(ECCE),2013 IEEE. Denver:1176-1183.
[28]ZHANG X, HOU B. Double vectors model predictive torque control without weighting factor based on voltage tracking error [J].IEEE Transactions on Power Electronics,2018,33(3):2368-2380.
[29]徐艳平,王极兵,张保程,等.永磁同步电机三矢量模型预测电流控制[J].电工技术学报,2018,33(05):980-988.
[30]张保程.永磁同步电机双矢量模型预测电流控制[D].西安:西安理工大学,2017.
[31]ZHANG Y C, YANG H T. Generalized two-vector-based model-predictive torque control of induction motor drives [J].IEEE Transactions on Power Electronics,2015,30(7):3818-3829.
[32]CHEN W, ZHANG X, GU X, et al. Band-based multi-step predictive torque control strategy for PMSM drives [J].IEEE Access, 2019(7):171411-171422.
[33]GEYER T, PAPAFOTIOU G, MORARI M. Model predictive direct torque control—part I:concept, algorithm and analysis [J].IEEE Transactions on Industrial Electronics,2009,56(6):1894-1905.
[34]QUEVEDO D E, GOODWIN G C, DE DONA J A. Finite constraint set receding horizon quadratic control [J].Int.J. Robust Nonlin.Control,2004,14(4):355-377.
[35]GEYER T, QUEVEDO D E. Performance of multistep finite control set model predictive control for power electronics [J].IEEE Transactions on Power Electronics,2015,30(3):1633-1645.
[36]AYAD A, KARAMANAKOS P, KENNEL R. Direct model predictive current control strategy of quasi-Z-source inverters [J].IEEE Transactions on Power Electronics, 2017, 32(7):5786-5801.
[37]GEYER T. A comparison of control and modulation schemes for medium voltage drives: emerging predictive control concepts versus PWM-based schemes [J].IEEE Transactions on Industrial Applications,2011,47(3):1380-1389.
[38]GEYER T. Computationally efficient model predictive direct torque control [J].IEEE Transactions on Power Electronics,2011,26(10):2804-2816.
[39]GEYER T, QUEVEDO D E. Multistep finite control set model predictive control for power electronics [J].IEEE Transactions on Power Electronics,2014,29(12):6836-6847.