[1] F M ZAIHIDEE, S MEKHILEF, M MUBIN et al. Robust Speed Control of PMSM Using Sliding Mode Control(SMC)-A Review. Energies, 12, 1669(2019).
[2] H LIU, Z WU. Demodulation of Angular Position and Velocity from Resolver Signals via Chebyshev Filter-Based Type III Phase Locked Loop. Electronics, 7, 354(2018).
[5] X G ZHANG, L Z SUN, K ZHAO et al. Nonlinear Speed Control for PMSM System Using Sliding-Mode Control and Disturbance Compensation Techniques. IEEE Transactions on Power Electronics, 28, 1358-1365(2013).
[6] LI Y, ANG K H, CHONG G C Y. PID Control System Analysis Design[J]. IEEE Control Systems, 2006, 26(1): 3241. DOI: 10.1109MCS.2006.1580152.
[7] R P BORASE, D K MAGHADE, S Y SONDKAR et al. A Review of PID Control, Tuning Methods and Applications. International Journal of Dynamics and Control, 9, 818-827(2021).
[8] V KUMAR, P GAUR, A P MITTAL. ANN Based Self Tuned PID Like Adaptive Controller Design for High Performance PMSM Position Control. Expert Systems with Applications, 41, 7995-8002(2014).
[9] ZHAO C, GUO L. Towards a Theetical Foundation of PID Control f Uncertain Nonlinear Systems[J]. Autom, 2020, 142: 110360. DOI: 10.1016j.automatica.2022.110360.
[10] Y LEE, S H LEE, C C CHUNG. LPV H∞ Control with Disturbance Estimation for Permanent Magnet Synchronous Motors. IEEE Transactions on Industrial Electronics, 65, 488-497(2018).
[11] SUN X K, YI Y, ZHENG W X, et al. Robust PI Speed Tracking Control f PMSM System Based on Convex Optimization Algithm[C]IEEE of the 33rd Chinese Control Conference, July 2830, 2014, Nanjing, China. Piscataway, NJ: IEEE, 2014: 42944299. DOI: 10.1109ChiCC.2014.6895659.
[12] F F M EL-SOUSY. Hybrid-based Wavelet-Neural-Network Tracking Control for Permanent Synchronous Motor Servo Drives. IEEE Transactions on Industrial Electronics, 57, 3157-3166(2010).
[13] F F M EL-SOUSY. Hybrid Recurrent Cerebellar Model Articulation Controller-based Supervisory H∞ Motion Control System for Permanent-magnet Synchronous Motor Servo Drive. IET Electric Power Applications, 5, 563-579(2011).
[14] D NASO, F CUPERTINO, B TURCHIANO. NPID and Adaptive Approximation Control of Motion Systems with Friction. IEEE Transactions on Control Systems Technology, 20, 214-222(2012).
[15] R KANDIBAN, R ARULMOZHIYAL. Speed Control of BLDC Motor Using Adaptive Fuzzy PID Controller. Procedia Engineering, 38, 306-313(2012).
[16] M N UDDIN. An Adaptive-Filter-Based Torque-Ripple Minimization of a Fuzzy-Logic Controller for Speed Control of IPM Motor Drives. IEEE Transactions on Industry Applications, 47, 350-358(2011).
[17] J W JUNG, V Q LEU, T D DO et al. Adaptive PID Speed Control Design for Permanent Magnet Synchronous Motor Drives. IEEE Transactions on Power Electronics, 30, 900-908(2015).
[18] GUO J, HAN C W, YANG G, et al. Application of ADRC Control in Artillery AC Servo System[C]IEEE of the 11th Wld Congress on Intelligent Control Automation, June 29July 04, 2014, Shenyang, China. Piscataway, NJ: IEEE, 2014: 46224625. DOI: 10.1109WCICA.2014.7053493.
[19] WANG J X, LI S H, YANG J, et al. Extended State Observerbased Sliding Mode Control f PWMbased DC–DC Buck Power Converter Systems with Mismatched Disturbances[J]. Control They & Applications, IET, 2015, 9(4): 579586. DOI: 10.1049ietcta.2014.0220.
[20] YANG J W, DONG L, LIAO X Z. Fractional der PD Controller Based on ADRC Algithm f DC Mot[C]2014 IEEE Conference Expo Transptation Electrification AsiaPacific (ITEC AsiaPacific), June 29July 04, 2014, Beijing, China. Piscataway, NJ: IEEE, 2014: 16. DOI: 10.1109ITECAP.2014.6940914.
[23] LI S, ZHOU M, YU X. Design Implementation of Terminal Sliding Mode Control Method f PMSM Speed Regulation System[J].IEEE Transactions on Industrial Infmatics, 2013, 9(4): 18791891. DOI: 10.1109TII.2012.2226896.
[24] F J LIN, J C HWANG, P H CHOU et al. FPGA-Based Intelligent-Complementary Sliding-Mode Control for PMLSM Servo-Drive System. IEEE Transactions on Power Electronics, 25, 2573-2587(2010).