Implementation of an optimal algorithm for the estimation of angular speed in DSPICS

dc.creatorRairán-Antolines, José Danilo
dc.creatorFonseca-Gómez, José Miguel
dc.date.accessioned2022-09-28T13:36:29Z
dc.date.available2022-09-28T13:36:29Z
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/3641766
dc.languagespa
dc.publisherUniversidad Santo Tomás. Seccional Bucaramanga
dc.relationhttp://revistas.ustabuca.edu.co/index.php/ITECKNE/article/view/516/411
dc.relationhttp://revistas.ustabuca.edu.co/index.php/ITECKNE/article/view/516/412
dc.relation/*ref*/M. Nandayapa, C. Mitsantisuk y K. Ohishi, “High resolution position estimation for advanced motion control based on FPGA,” in Proceedings of IECON 2012 - 38th Annual Conference on IEEE Industrial Electronics Society, pp. 3808-3813, 2012.
dc.relation/*ref*/C. Negrea, V. Hayward, C.J. Chen, “An improved speed identification method using incremental encoder in electric drives,” in Proceedings of IEEE International Conference on Automation Quality and Testing Robotics (AQTR), pp. 536-540, 2012.
dc.relation/*ref*/J. Voldán, “Use encoder speed sensors for the calculation of torque moment,” in Proceedings of 13th International Carpathian Control Conference (ICCC), pp. 768-771, 2012.
dc.relation/*ref*/S. D’arco, L. Piegari y R. Rivo, “An Optimized Algorithm for Velocity Estimation Method for Motor Drives,” in Proceedings of Symposium on Diagnostics for Electric Machines, Power Electronics and Drivers, Atlanta, GA, USA, pp. 76 – 80, Ago., 2003.
dc.relation/*ref*/G. Liu, “On velocity estimation using position measurements,” in Proceedings of the 2002 American Control Conference, vol. 2, pp. 1115 – 1120, May., 2002.
dc.relation/*ref*/K. Hachiya y T. Ohmae, “Digital speed control system for a motor using two speed detection methods of an incremental encoder,” in Proceedings of Power Electronics and Applications, 2007 European Conference, pp. 1 – 10, Sep. 2007.
dc.relation/*ref*/J. Lygouras,T.P. Pachidis, K.N. Tarchanidis, V.S. Kodogiannis, “Adaptive High-Performance Velocity Evaluation Based on a High-Resolution Time-to-Digital Converter,” in IEEE Transactions on Instrumentation and measurement, vol. 57, no. 9, pp. 2035 – 2043, Sep. 2008.
dc.relation/*ref*/F. Janabi-Sharifi, V. Hayward, C.S.J. Chen, “Discrete-time adaptive windowing for velocity estimation,” Control Systems Technology, IEEE Transactions on, vol. 8, no. 6, pp. 1003 – 1009, Nov. 2000.
dc.relation/*ref*/M-F Benkhoris y M. Ait-Ahmed, “Discrete speed estimation from a position encoder for motor drives,” in Proceedings of Power Electronics and Variable Speed Drives, Sixth International Conference on (Conf. Publ. No. 429), pp. 283 – 287, 23-25, Sep. 1996.
dc.relation/*ref*/I.I. Incze, A. Negrea, M. Imecs, C. Szabó, “Error compensation methods in speed identification using incremental encoder,” Prceedings of Electrical and Power Engineering (EPE), International Conference and Exposition on, pp. 441 – 445, 25-27, Oct. 2012.
dc.relation/*ref*/L. Kerhuel, “Simulink block set embedded target for microchip devices,” 2012, [Online]. Available: http://www.kerhuel.eu/wiki/Simulink_-_Embedded_Target_ for_PIC
dc.relation/*ref*/R. Merry, R. Molengraft, y M. Steinbuch, “Error modeling and improved position estimation for optical incremental encoders by means of time stamping,” in Proceedings of the 2007 American Control Conference. New York City, USA, pp. 3570 – 3575, Jul., 2007.
dc.relation/*ref*/R. Petrella, M. Tursini, L. Peretti, M. Zigliotto, “Speed measurement algorithms for low-resolution incremental encoder equipped drives: a comparative analysis,” in Proceedings of Electrical Machines and Power Electronics, 2007. ACEMP ‘07. International Aegean Conference on, vol. 1, no. 1, pp. 780 – 787, Sep., 2007.
dc.relation/*ref*/R. Petrella, y M. Tursini, “An Embedded System for Position and Speed Measurement Adopting Incremental Encoders,” IEEE Transactions on industry applications, vol. 44, no. 5, pp. 1436 – 1444, Sep. 2008.
dc.relation/*ref*/T. Tsuji, T. Hashimoto H. Kobayashi, M. Mizuochi, K. Ohnishi, “Wide-Range Velocity Measurement Method for Motion Control,” in IEEE Transactions on industrial electronics, vol. 56, no. 2, pp. 510 – 519, Feb., 2009.
dc.relation/*ref*/D. Rairán y J. Fonseca, “Algoritmo para la aproximación de la velocidad de giro de un eje mediante un encoder incremental,”en Revista Ingeniería y Universidad, vol. 17, no. 2, pp. 293–309, Sep., 2013.
dc.rightsCopyright (c) 2018 ITECKNE
dc.sourceITECKNE; Vol 11, No 1 (2014); 41-49
dc.source2339-3483
dc.source1692-1798
dc.sourceITECKNE; Vol 11, No 1 (2014); 41-49
dc.titleImplementación en DSPIC de un algoritmo óptimo para la estimación de velocidad de giro.
dc.titleImplementation of an optimal algorithm for the estimation of angular speed in DSPICS
dc.typeinfo:eu-repo/semantics/article
dc.typeinfo:eu-repo/semantics/publishedVersion


Este ítem pertenece a la siguiente institución