Author:
Ma Jinlong,Wang Honghua,Li Hao,Qiu Zenan
Publisher
Springer Nature Singapore
Reference10 articles.
1. Valencia, D.F., Tarvirdilu-Asl, R., Garcia, C., Rodriguez, J., Emadi, A.: A review of predictive control techniques for switched reluctance machine drives. Part I: fundamentals and current control. IEEE Trans. Energy Conv. 36, 1313–1322 (2021)
2. Valencia, D.F., Tarvirdilu-Asl, R., Garcia, C., Rodriguez, J., Emadi, A.: A review of predictive control techniques for switched reluctance machine drives. Part II: torque control, assessment and challenges. IEEE Trans. Energy Conv. 36, 1323–1335 (2021)
3. Li, Y., Wang, G.-F., Li, C.-H., Fan, Y.-S., Xu, A.-D.: Finite control set predictive torque control method for switched reluctance motor drives. Dianji yu Kongzhi Xuebao/Electric Mach. Control 23, 49–58 (2019). (in Chinese)
4. Yang, Y., Wen, H.Q., Fan, M.D., Zhang, X.A., He, L.Q., Chen, R., Xie, M.X., Norambuena, M., Rodriguez, J.: Low complexity finite-control-set mpc based on discrete space vector modulation for T-Type three-phase three-level converters. IEEE Trans. Power Electron. 37, 392–403 (2022)
5. Villegas, J., Vazquez, S., Carrasco, J.M., Gil, I.: IEEE: model predictive control of a switched reluctance machine using discrete space vector modulation. In: IEEE International Symposium on Industrial Electronics (ISIE), pp. 3139–3144 (2010)