يعرض 1 - 20 نتائج من 2,136 نتيجة بحث عن '"Motores eléctricos"', وقت الاستعلام: 0.63s تنقيح النتائج
  1. 1
    Academic Journal
  2. 2
    Dissertation/ Thesis

    المؤلفون: Jornet Alvarez, Atanasi

    المساهمون: University/Department: Universitat Politècnica de Catalunya. Departament d'Enginyeria Elèctrica

    Thesis Advisors: Orille Fernández, Ángel L. (Ángel Luis)

    المصدر: TDX (Tesis Doctorals en Xarxa)

    وصف الملف: application/pdf

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    Academic Journal
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    Academic Journal
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    Academic Journal
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    Academic Journal
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    Academic Journal

    مصطلحات موضوعية: 3306.03 Motores Eléctricos

    Relation: info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/RYC2018-024407-I/ES; info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2021-2023/PID2022-136908OB-I00/ES; IEEE Transactions on Power Electronics, 38(12): 15055-15071 (2023); http://hdl.handle.net/11093/7179; https://ieeexplore.ieee.org/document/10236530/

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    Academic Journal

    مصطلحات موضوعية: 3306.03 Motores Eléctricos

    Relation: info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/RYC2018-024407-I/ES; IEEE Journal of Emerging and Selected Topics in Power Electronics, 11(2): 2114-2125 (2023); http://hdl.handle.net/11093/7185; https://ieeexplore.ieee.org/document/9963717/

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    Academic Journal

    مصطلحات موضوعية: 3306.03 Motores Eléctricos, 3307.99 Otras

    Relation: info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/PID2019-105612RB-I00/ES/CONTROL DE ACCIONAMIENTOS POLIFASICOS TOLERANTES A FALTAS Y DE CONVERTIDORES PARA CONEXION A RED O PARA FUNCIONAMIENTO AISLADO; IEEE Transactions on Power Electronics, 38(4): 4289-4305 (2023); http://hdl.handle.net/11093/5353; https://ieeexplore.ieee.org/document/10016767/

  10. 10
    Academic Journal

    Relation: Ruiz-Gonzalez, A., Meco-Gutierrez, M., Heredia-Larrubia, J.-R., Perez-Hidalgo, F. and Vargas-Merino, F. (2019), Pulse width modulation technique with harmonic injection in the modulating wave and discontinuous frequency modulation for the carrier wave to reduce vibrations in asynchronous machines. IET Power Electronics, 12: 2865-2872. https://doi.org/10.1049/iet-pel.2018.5178; 755-4535; https://hdl.handle.net/10630/29183

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    Academic Journal
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    Academic Journal
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  14. 14
    Academic Journal

    وصف الملف: 9 páginas; application/pdf

    Relation: 4648; 4640; 12; Bolaño Martínez, A., Jiménez Navarro, I., Sousa Santos, V., Quispe, E.C., Donolo, P.D. (2022). MATLAB/Simulink modeling of electric motors operating with harmonics and unbalance. International Journal of Electrical and Computer Engineering (IJECE). 12 (5), 4640-4648. https://hdl.handle.net/10614/14805; International Journal of Electrical and Computer Engineering (IJECE); M. J. S. Zuberi, A. Tijdink, and M. K. Patel, “Techno-economic analysis of energy efficiency improvement in electric motor driven systems in Swiss industry,” Applied Energy, vol. 205, pp. 85–104, Nov. 2017, doi:10.1016/j.apenergy.2017.07.121; J. R. Gómez et al., “Assessment criteria of the feasibility of replacement standard efficiency electric motors with high-efficiency motors,” Energy, vol. 239, Jan. 2022, doi:10.1016/j.energy.2021.121877.; J. M. Tabora, M. E. de L. Tostes, E. O. de Matos, T. M. Soares, and U. H. Bezerra, “Voltage harmonic impacts on electric motors: a comparison between IE2, IE3 and IE4 induction motor classes,” Energies, vol. 13, no. 13, Jun. 2020, doi:10.3390/en13133333; D. Wang, X. Yuan, and M. Zhang, “Power-balancing based induction machine model for power system dynamic analysis in electromechanical timescale,” Energies, vol. 11, no. 2, Feb. 2018, doi:10.3390/en11020438.; IEEE, “Recommended practices and requirements for harmonic control in electrical power systems,” IEEE Std 519-1992, vol. 1992. pp. 1–101, 1992, doi:10.1109/IEEESTD.1993.114370.; L. C. Solar, A. A. C. Montiel, M. V. Llanes, V. S. Santos, and A. C. Colina, “A new exact equivalent circuit of the medium voltage three-phase induction motor,” International Journal of Electrical and Computer Engineering (IJECE), vol. 10, no. 6, pp. 6164–6171, Dec. 2020, doi:10.11591/ijece.v10i6.pp6164-6171; M. J. A. Hasan and P. C. Biswas, “Design and evaluation of a MATLAB Simulink block of permanent magnet brushless DC motor,” in 2019 5th International Conference on Advances in Electrical Engineering (ICAEE), Sep. 2019, pp. 789–794, doi:10.1109/ICAEE48663.2019.8975476; R. N. Dash, S. Sahu, and C. K. Panigrahi, “Effect and analysis of unbalanced voltage on induction motor torque,” in 2018 International Conference on Recent Innovations in Electrical, Electronics and Communication Engineering (ICRIEECE), Jul. 2018, pp. 2698–2703, doi:10.1109/ICRIEECE44171.2018.9009287.; S. J. Chapman, Electric machinery fundamentals, 5th ed. New York: McGraw-Hill Education, 2012; E. de Graaff and A. Kolmos, “Challenging models and perspectives of problem-based learning,” in Management of Change, BRILL, 2007, pp. 9–29; J. Grainge and W. Stevenson, Power system analysis. New York: McGraw Hill, 1994.; https://hdl.handle.net/10614/14805; Universidad Autónoma de Occidente; Repositorio Educativo Digital UAO; https://red.uao.edu.co/

  15. 15
    Book

    المؤلفون: Quispe Oqueña, Enrique Ciro

    المساهمون: Universidad Autónoma de Occidente

    وصف الملف: 29 páginas; application/pdf

    Relation: 162; 133; Quispe Oqueña, E.C. (2020). Modelo matemático de la máquina de inducción trifásica alimentada con tensiones desequilibradas. Universidad Autónoma de Occidente. Desequilibrio de tensiones en motores de inducción. Modelado, impacto en el desempeño energético, determinación de la eficiencia (Capítulo 4, pp.133-162). Programa editorial Universidad Autónoma de Occidente.; Desequilibrio de tensiones en motores de inducción. Modelado, impacto en el desempeño energético, determinación de la eficiencia; [1] G. J. Retter, Matrix and SpacePhasor Theory of Electrical Machines. Budapest: Muszaki Konyvkiado, 1987.; [2] S. E. M. de Oliveira, Operation of three-phase induction connected to one-phase supply, IEEE Transaction on Energy Conversion, vol. 5, n.º 4, pp. 713-718, 1990.; [3] Y. J. Wang, “Analysis of effects of three-phase voltage unbalance on induction motors with emphasis on the angle of the complex voltage unbalance factor”, IEEE Transaction on Energy Conversion, vol. 16, n.º 3, pp. 270-275, 2001.; [4] M. Kostic y A. Nicolic, “Negative consequence of motor voltage asymmetry and its influence to the unefficient energy usage”, WSEAS Transaction on Circuits and Systems, vol. 9, n.º 8, pp. 547-552, 2010.; [5] J. E. Williams, “Operation of three-phase induction motors on unbalanced voltages”, AIEE Transaction on Power Apparatus and Systems Pt. IIIA, vol. 73, pp. 125-133, 1954.; [6] J. Faiz, H. Ebrahimpour y P. Pillay, “Influence of unbalanced voltage supply of three phase squirrel cage induction motor and economic analysis”, Energy Conversion and Management, vol. 47, n.º 3, pp. 289-302, 2006.; [7] E. C. Quispe, “Efectos del desequilibrio de tensiones sobre la operación del motor de inducción trifásico: Énfasis en la caracterización del desequilibrio de tensiones y el efecto sobre la potencia nominal”, tesis doctoral, Universidad del Valle, Cali, Colombia, 2012.; [8] M. P. Kostenko y L. M. Piotrovski, Máquinas eléctricas. Tomo II. Moscú: Editorial MIR, 1976.; [9] E. C. Quispe, I. D. López, F. J. T. E. Ferreira, V. Sousa, “Unbalanced voltages impacts on the energy performance of induction motors”, International Journal of Electrical and Computer Engineering (IJECE), vol. 8, n.º 3, June 2018, pp. 1412-1422.; [10] P. C. Cochran, Polyphase Induction Motors: Analysis, Design and Application. New York: Marcel Dekker, 1989.; [11] National Electrical Manufacturers Association (NEMA), Standard Publication ANSI/NEMA MG12016, Motors and Generators, Revision 2016. Rosslyn, USA: NEMA, 2016.; [12] A. Eltom y M. A. Aziz, “The economics of energy efficient motors during unbalanced voltage condition”, Proceedings of the Inagural IEEE Power Engeneering Society PES Conference and Exposition in Africa, July 11-15, 2005, pp. 378-384.; [13] E. C. Quispe, P. Viego y J. Cogollo, “Statistical equations to evaluate the effects of voltage unbalance on the efficiency and power factor of a three-phase induction motors”, WESEAS Transaction on Circuit and Systems, vol. 4, n.º 4, pp 234-239, 2005.; https://hdl.handle.net/10614/13350

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    Book

    المؤلفون: Quispe Oqueña, Enrique Ciro

    المساهمون: Universidad Autónoma de Occidente

    وصف الملف: 48 páginas; application/pdf

    Relation: 211; 164; Quispe Oqueña, E.C. (2020). Efecto del desequilibrio de tensiones sobre la desclasificación de la potencia del motor. Universidad Autónoma de Occidente. Desequilibrio de tensiones en motores de inducción. Modelado, impacto en el desempeño energético, determinación de la eficiencia (Capítulo 5, pp.163-211). Programa editorial Universidad Autónoma de Occidente.; Desequilibrio de tensiones en motores de inducción. Modelado, impacto en el desempeño energético, determinación de la eficiencia; [1] National Electrical Manufacturers Assocation (NEMA), Standard Publication ANSI/NEMA MG12016, Motors and Generators, Revision 2016. Rosslyn, USA: NEMA, 2016.; [2] International Electrotechnical Commission (IEC), International Standard IEC 6003426: 2006, Rotating Electrical Machines. Part 26: Effects on Unbalanced Voltages on the Performance of Induction Motors. Geneva, Switzerland: IEC, 2006.; [3] J. E. Williams, “Operation of three-phase induction motors on unbalanced voltages”, AIEE Transaction on Power Apparatus and Systems Pt. IIIA, vol. 73, pp. 125-133, April 1954.; [4] B. N. Gafford, W. C. Duesterhoef y C. C. Mosher, “Heating of induction motors on unbalanced voltages”, AIEE Transaction on Power Apparatus and Systems Pt. IIIA, vol. PAS-78, pp. 282-297, June 1959.; [5] M. M. Berndt y N. L. Schmitz, “Derating of polyphase induction motors operated with unbalanced line voltages”, AIEE Transaction on Power Apparatus and Systems, vol. 81, pp. 680-686, 1963.; [6] N. Rama Rao y P. A. D. Jyothi Rao, “Rerating factors of polyphase induction motors under unbalanced line voltage conditions”, IEEE Transaction on Power Apparatus and Systems, vol. PAS-87, n.º 1, pp. 240-249, 1968.; [7] S. C. Seematter y E. F. Richards, “Computer analysis of 3-phase induction motor operation on rural open-delta distribution systems”, IEEE Transactions on Industry Applications, vol. IA-12, n.º 5, pp. 479-486, 1976.; [8] E. C. Quispe, “Efectos del desequilibrio de tensiones sobre la operación del motor de inducción trifásico: Énfasis en la caracterización del desequilibrio de tensiones y el efecto sobre la potencia nominal”, tesis doctoral, Universidad del Valle, Cali, Colombia, 2012.; [9] P. Pillay, “Derating of induction motors operating with a combination of unbalanced voltages and over and undervoltages”, IEEE Transaction on Energy Conversion, vol. 17, n.º 4, pp. 485-491, 2002.; [10] W. H. Kersting y W. H. Phillips, “Phase frame analysis effects of voltage unbalance on induction machines”, IEEE Transaction on Industry Applications, vol. 33, n.º 2, pp. 415-420, 1997.; [11] Y. J. Wang, “Analysis of effects of three-phase voltage unbalance on induction motors with emphasis on the angle of the complex voltage unbalance factor”, IEEE Transaction on Energy Conversion, vol. 16, n.º 3, pp. 270-275, 2001.; [12] J. Faiz, H. Ebrahimpour y P. Pillay, “Influence of unbalanced voltage on the steady-state performance of a three-phase squirrel- cage induction motor”, IEEE Transaction on Energy Conversion, vol. 19, n.º 4, pp. 657-662, 2004.; [13] E. C. Quispe y J. A. Palacios, “Análisis de las definiciones de desequilibrio de tensión y su influencia con los efectos en la operación de motores trifásicos de inducción: La necesidad de una nueva definición”, en Memorias del II Congreso Internacional sobre Uso Racional y Eficiente de la Energía CIUREE2006, Cali, Colombia, 2-4 de noviembre de 2006.; [14] A. Wallace, A. Jouanne, E. Wiedenbrug, P. Andrews, C. Wohlgemuth, J. Douglas y G. Wainwright, “The measured effects of under-voltage, over-voltage and unbalanced voltage on the efficiency and power factor of induction motor over wide ranges of load”, Proceeding of IEE 8th International Conference on Electrical Machines and Drives EMD97, vol. 444, 1-3 September, pp. 258-262, 1997.; [15] X. M. López Fernández, A. P. Coimbra, J. Pinto, C. L. Antunes y M. P. Donsion, “Thermal analysis of an induction motor fed by unbalanced power supply using a combined finite element – symmetrical components formulation”, Proceedings of POWERCON´98. 1998 International Conference on Power System Technology, 1998, vol. 1, 18-21 August 1998, pp. 620-624.; [16] C. A. Reineri, J. C. Gómez, E. B. Balaguer y M. M. Morcos, “Experimental study of induction motor performance with unbalanced supply”, Electric Power Components and Systems, n.º 34, pp. 817-829, 2006.; [17] H. F. Farahani, H. R. Hafezi, A. R. Jalilean y A. Shoulaei, “Investigation of unbalance supplying voltage on the thermal behavior of squirrel cage induction motor using monitoring system”, Proceedings of the 42nd International Universities Power Engineering Conference IEEE, UPEC 2007, September 2007, Brighton, United Kingdom, pp. 210-216.; [18] P. Gnacinski, “Derating of an induction machine under voltage unbalance combined with over or undervoltages”, Energy Conversion and Management, vol. 50, n.º 4, pp. 1101-1107, 2009.; [19] D. Springer, E. Stolz y E. Wiedenbrug, “Experimental analysis of industry standards on derating of a three-phase induction motor due to thermal stress caused by voltage unbalance”, Proceedings of the IEEE Energy Conversion Congress and Exposition, 2009. ECCE 2009. September 20-24, 2009, pp. 1304-1308.; [20] E. C. Quispe, X. M. López-Fernández, A. M. S. Mendes, A. J. Marquez Cardoso y J. A. Palacios, “Experimental study of the effect of positive sequence voltage on the derating of induction motors under voltage unbalance”, Proceedings of the IEEE International Electric Machines and Drives Conference (IEMDC 2011). May 15-18, 2011, Niagara Falls, Canada.; [21] International Electrotechnical Commission (IEC), International Standard IEC 600341: 2017, Rotating Electrical Machines. Part 1: Rating and Performance. Geneva, Switzerland: IEC, 2017.; [22] Instituto Colombiano de Normas Técnicas (Icontec), Norma Técnica Colombiana NTC 2805: Máquinas eléctricas rotatorias. Características nominales y características de funcionamiento. Bogotá, 2011.; [23] E. C. Quispe, X. M. López-Fernández, A. M. S. Mendes, A. J. Marques Cardoso y J. A. Palacios, “Influence of the positive sequence voltage on the derating of three-phase induction motors under voltage unbalance”, en Electric Machines & Drives Conference (IEMDC), 2013.; [24] X. M. López Fernández, M. P. Donsion y G. del Río, “Measurement and monitoring of temperature of induction motor”, Proceedings of the XIII International Conference on Electrical Machines (ICEM 1996), pp. 439-442, September, 1996, Vigo, Spain.; [25] International Electrotechnical Commission (IEC), International Standard IEC 6003421: 2014, Rotating Electrical Machines. Part 2-1: Standard methods for determining losses and efficiency from tests (excluding machines for traction vehicles). Geneva, Switzerland: IEC, 2014.; https://hdl.handle.net/10614/13349

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    Book
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    Book
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    Dissertation/ Thesis
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    Dissertation/ Thesis

    Thesis Advisors: Monzón Verona, José Miguel, Montiel Nelson, Juan Antonio, Departamento de Ingeniería Eléctrica

    المصدر: 666269