I. A. Reyes-Portillo | Universidad Autónoma de San Luis Potosí |
S. R. Méndez-Elizondo | Universidad Autónoma de San Luis Potosí |
J. A. Morales-Saldaña | Universidad Autónoma de San Luis Potosí |
E. R. Palacios-Hernández | Universidad Autónoma de San Luis Potosí |
C. A. Rivera-Romero | Universidad Autónoma de Zacatecas |
https://doi.org/10.58571/CNCA.AMCA.2022.012
Resumen: This paper presents the modeling of a Quadratic Buck Converter with interleaved function, operating in continuous conduction mode. The structure of the proposed converter presents better functional aspects with respect to other Quadratic Buck converters reported in the literature. This work establishes the general structure of the proposed converter, as well as its operation. In addition, the switching model and the average model are developed in order to obtain the dynamic characteristics of the system, which are used for the design of the controllers.
¿Cómo citar?
Reyes-Portillo, I., Morales-Saldaña, J., Méndez-Elizondo, S., Palacios-Hernández, E. & C. A. Rivera-Romero. Modeling of an Interleaved Quadratic Buck Converter. Memorias del Congreso Nacional de Control Automático, pp. 140-145, 2022. https://doi.org/10.58571/CNCA.AMCA.2022.012
Palabras clave
Modelado e Identificación de Sistemas; Sistemas Electrónicos de Potencia; Sistemas Eléctricos de Potencia
Referencias
- Foley, R.F., Kavanagh, R.C., y Egan, M.G. (2010). Sensorless current estimation and sharing in multiphase buck converters. IEEE Transactions on Power Electronics, 27(6), 2936–2946.
- Fuentes, R., Rojas, D., Rivera, M., Riveros, J., Munoz, J., y Wheeler, P. (2021). Control strategies of photovoltaic systems. 1–6.
- García-Vite, P.M., Rosas-Caro, J.C., Martínez-Salazar, A.L., de Jesus Chavez, J., Valderrábanos -González, A., y Sánchez-Huerta, V.M. (2019). Quadratic buck–boost converter with reduced input current ripple and wide conversion range. IET Power Electronics, 12(15), 3977–3986.
- Morales-Saldana, J.A., Loera-Palomo, R., Palacios-Hernández, E., y Gonzalez-Martinez, J.L. (2014). Modelling and control of a dc-dc quadratic boost converter with r 2 p 2. IET Power Electronics, 7(1), 11–22.
- Reyes, I., Claudio, A., Flores, E., y Lopez, M. (2018). Analysis of kinetic energy recovery system based on inertial flywheel. In 2018 14th International Conference on Power Electronics (CIEP), 130–136. IEEE.
- Reyes-Portillo, I., Morales -Saldaña, J., Netzahuatl- Huerta, E., Palacios-Hernández, E., y Méndez-Elizondo, S. (2020). Modeling of a quadratic buck converter based on the r2p2 concept for pv applications. In 2020 IEEE International Autumn Meeting on Power, Electronics and Computing (ROPEC), volume 4, 1–6. IEEE.
- Reyes-Portillo, I.A., Claudio-Sánchez, A., Morales- Saldaña, J.A., Mina-Antonio, J.D., Netzahuatl-Huerta, E.M., Claudio-Pachecano, L., Ponce-Silva, M., y Reyes-Sánchez, E. (2022). Study of the effects of current imbalance in a multiphase Buck converter for electric vehicles. World Electric Vehicle Journal, 13(5), 88.
- Tse, C.K. y Chow, M.H. (2000). Theoretical study of switching power converters with power factor correction and output regulation. IEEE Transactions on Circuits and Systems I: Fundamental Theory and Applications, 47(7), 1047–1055.
- Tse, C.K., Chow, M.H., y Cheung, M.K. (2001). A family of pfc voltage regulator configurations with reduced redundant power processing. IEEE Transactions on Power Electronics, 16(6), 794–802.
- Zogogianni, C.G., Tatakis, E.C., y Porobic, V. (2018). Investigation of a non-isolated reduced redundant power processing dc/dc converter for high-power high step-up applications. IEEE Transactions on Power Electronics, 34(6), 5229–5242.