Aldrete Maldonado, Christian | Tecnológico Nacional de México, Tijuana |
Villela Salinas, Vincent Alejandro | Tecnológico Nacional de México, Tijuana/td> |
Valle, Paul A. | Tecnológico Nacional de México, Tijuana |
Coria, Luis N. | Tecnológico Nacional de México, Tijuana |
https://doi.org/10.58571/CNCA.AMCA.2024.028
Resumen: This work proposes the design of a lead-lag compensator for a permanent-magnet synchronous motor applying the Tustin method to obtain stability as a tool to avoid a separated transformation for continuous and discrete time. Therefore some problems of the adaptation between S-plane and Z-plane can be circumvented. As a main tool to achieve control and improve the transient response, the root locus approach is applied. The results are corroborated with experiments.
¿Cómo citar?
Aldrete Maldonado, C., Villela Salinas, V., Valle, P.A. & Coria, L.N. (2024). Design lead-lag compensators for permanent magnet synchronous motor in W-plane. Memorias del Congreso Nacional de Control Automático 2024, pp. 161-166. https://doi.org/10.58571/CNCA.AMCA.2024.028
Palabras clave
W-plane, PMSM, lead-lag compensator, root locus, Tustin method
Referencias
- Abbas, G., Gu, J., Farooq, U., and Raza, A. (2017). Problems in constructing a discrete-time controller using frequency response plots in w-plane. Department of Electrical Engineering, The University of Lahore.
- Bhowmick, P. and Lanzon, A. (2022). On discrete-time output negative imaginary systems. IEEE Control Systems Letters, 6, 1124–1129.
- Cui, Y., Huang, W., Su, N., and Bu, F. (2018). Adaptive full-order observer for induction motor based on bilinear transformation method. 21st International Conference on Electrical Machines and Systems (ICEMS), 1649–1653.
- DiStefano, J.J., Stubberud, A.R., and Williams, I.J. (1990). Feedback and control systems. McGraw-Hill.
- Fernández-Cantí, R.M. (2013). Sistemas Electrónicos de Control. UPC.
Ferrante, A., Lanzonb, A., and Ntogramatzidis, L. (2017). Discrete-time negative imaginary systems. Elsevier Ltd, 79, 1–10. - Gohari, P. (2006). Discrete equivalents. ELEC 6061, 1–10.
- Guerra Torres, C. (2001). Diseño de controladores y de observadores para sistemas no lineales. Master’s thesis, Universidad Autónoma de Nuevo León.
- Kar, I. (2020). A new method to compute the z-transform of a product of two functions. In 2020 IEEE 5th international conference on signal and image processing (ICSIP), 670–674. IEEE.
- Kuo, B.C. (1996). Sistemas de control automático. Prentice Hall.
- Liu, M. and Xiong, J. (2018). Bilinear transformation for discrete-time positive real and negative imaginary systems. DOI 10.1109/TAC.2018.2797180, IEEE Transactions on Automatic Control, 1–6.
- Nise, N.S. (2015). Control Systems Engineering. Wiley.
- Ogata, K. (1996). Sistemas de control en tiempo discreto. Pearson Education.
- Ogata, K. (2002). Modern Control Engineering. Prentice Hall.
- Ogata, K. (2010a). Ingeniería de control moderna. Pearson.
- Ramos Lara, R. (2007). Sistemas digitales de instrumentación y control. Departamento de ingeniería electrónica.
- Ramu, K. (2017). Permanent magnet synchronous and brushless DC motor drives. CRC press.
- Raymond, T.S., Bahram, S., Clement, J.S.J., and Gene, H.H. (2002). Design of feedback control systems. Oxford University Press.
- Roberge, J.K. (1975). Operational amplifiers: Theory and practice. Massachusetts Institute of Technology.
- Toledo Chojolán, S.E. (2007). Diseño De Controladores PID En Tiempo Discreto, y Análisis De Respuesta Utilizando Herramientas Computacionales. Master’s thesis, Universidad de San Carlos de Guatemala.
- Tong, W., Dai, S., Wu, S., and Tang, R. (2019). Performance comparison between an amorphous metal pmsm and a silicon steel pmsm. IEEE Transactions on Magnetics, 55(6), 1–5.
- Zavalishin, V. (2018). The Art of Va Filter Design. Native instruments.
- Zayas Gato, F., Quintián Pardo, H., Jove Pérez, E., Casteleiro Roca, J.L., and Calvo Rolle, J.L. (2020). Diseño de controladores PID. Universidad de Coruña.
- Zhang, G., Wang, G., Zhao, N., and Xu, D. (2022). Permanent Magnet Synchronous Motor Drives for Gearless Traction Elevators. Springer.