يعرض 1 - 20 نتائج من 1,726 نتيجة بحث عن '"OPTIMIZACIÓN ( MATEMÁTICA )"', وقت الاستعلام: 0.48s تنقيح النتائج
  1. 1
    Dissertation/ Thesis
  2. 2
    Dissertation/ Thesis

    المؤلفون: Penya-Alba, Toni

    المساهمون: University/Department: Universitat de Barcelona. Departament de Matemàtica Aplicada i Anàlisi

    Thesis Advisors: Cerquides Bueno, Jesús, Rodríguez Aguilar, Juan Antonio

    المصدر: TDX (Tesis Doctorals en Xarxa)

    وصف الملف: application/pdf

  3. 3
    Dissertation/ Thesis

    المؤلفون: Jori, Mar

    المساهمون: University/Department: Universitat de Barcelona. Facultat d'Economia i Empresa

    Thesis Advisors: Alegre Escolano, Antonio, Ribas Marí, Carme

    المصدر: TDX (Tesis Doctorals en Xarxa)

    وصف الملف: application/pdf

  4. 4
    Academic Journal
  5. 5
    Book

    المؤلفون: Pecha Castiblanco, Arsenio

    وصف الملف: [ix], 410 páginas; application/epub+zip; application/pdf

    Relation: Colección Textos. Matemáticas; [1] C. Azariadis, Intertemporal Macroeconomics. 4a ed. Oxford: Blackwell; 1993.; [2] P. Barbolla, R. Sanz, Algebra lineal y teoría de matrices. 1a ed. Madrid: Prentice Hall; 1998.; [3] R. Barbolla, Cerdá E., and Sanz. P., Optimización. Cuestiones, ejercicios y aplicaciones a la economía. 1a ed. Madrid: Prentice Hall; 2001.; [4] Sherali H. D. Shetty C. M. Bazaraa, M. S., Nonlinear Programming, Theory and algorithms. 4a ed. New Jersey: John Wiley & Sons, Inc.; 2010.; [5] Christensen L. R. Berndt, E. R., The translog function and the substitution of equipment, structures, and labor in U.S. manufacturing 1962-68. JoE. 1973; 1(1): 81–114.; [6] Russell R. Blackorby, C.,Will the real elasticity of substitution please stand up? (a comparison of the Allen/Uzawa and Morishima elasticities). AER. 1989; 76(4): 882–888.; [7] DiPrima R. Meade D. B. Boyce, W., Elementary Differential Equations and Boundary Value Problems. 11a ed. Danvers: JohnWiley & Sons, Inc.; 2017.; [8] M. R. Caputo, Foundations of Dynamic Economic analysis. 1a ed. Cambridge, UK: Cambridge University Press; 2005.; [9] M. Carter, Foundations of Mathematical Economics. 1a ed. Cambridge, USA: The MIT Press; 2001.; [11] A. De La Fuente, MathematicalMethods andModels for Economists. 1a ed. Cambridge, UK: Cambridge University Press; 2000.; [12] S. Elaydi, An Introduction To Difference Equations. 4a ed. New York: Springer; 2005.; [13] Pecha A. González, J. I., La dinámica en economía, los enfoques de Hicks y Samuelson. Cuadernos de economía. 1995; 14(23): 92–116.; [14] Pecha A. González, J. I., Tasa de equilibrio intertemporal, equilibrio y estabilidad. Cuadernos de economía. 2000; 19(32): 61–76.; [15] Lovell C. A. K. Guilkey, D. K., On the flexibility of the translog approximation. IER. 1980; 21(1): 137–147.; [16] Schwartz N. L. Kamien, M. I., Dinamic Optimization. 2a ed. Amsterdam: North-Holland; 1991.; [17] D. M. Kreps, Notes on the theory of choice. 1a ed. Boulder:Westview Press; 1988.; [18] K. Kuga, On the symmetry of Robinson elasticities of substitution: the general case. REStud. 1979; 46(3): 527–531.; [19] P. J. Lambert, Advanced Mathematics for Economists: Static and Dynamic Optimization. 1a ed.Worcester: Basil Blackwell; 1985.; [20] Ye Y. Luenberger, D. G., Linear and Nonlinear Programming. 5a ed. Cham, Switzerland: Springer; 2021.; [21] P. Madden, Concavidad y optimización en microeconomía. 5a ed. Madrid: Alianza Editorial; 1987.; [22] D. Mc Fadden, Constant elasticity of substitution production functions. REStud. 1963; 30(2): 73–83.; [23] Lines M.Medio, A., Nonlinear Dynamics: A Primer. 1a ed. Cambridge, USA: Cambridge University Press; 2001.; [24] J. C. Moore, Mathematical methods for economic theory 1. 1a ed. Berlin: Springer; 1999.; [25] Y. Murata, Mathematics for Stability and Optimization of Economic Systems. 4a ed. New York: Academic Press; 1977.; [26] N. S. Revankar, A class of variable elasticity of substitution production functions. Econometrica. 1971; 39(1): 61–71.; [27] P. A. Samuelson, Fundamentos del análisis económico. 1a ed. Buenos Aires: Editorial El Ateneo; 1977.; [28] K. Sato, A two-level constant-elasticity-of-substitution production function. REStud. 1967; 34(2): 201–218.; [29] Koizumi T. Sato, R., On the elasticities of substitution and complementarity. Oxford Economic Papers. 1973; 25(1): 44–56.; [30] Fanchon P. Sengupta, J. K., Control Theory Methods in Economic. 1a ed. Norwell: Kluber Academic Publishers; 1997.; [31] S. P. Sethi, Optimal Control Theory, Applications to Management Science and Economics. 3a ed. Cham, Switzerland: Springer; 2019.; [32] SuenW. Silbelberg, E., The Structure of Economics: a Mathematical Analysis. 3a ed. Singapur: McGraw-Hill; 2000.; [33] G. F. Simmons, Ecuaciones diferenciales con aplicaciones y notas históricas. 2a ed. Madrid: McGraw-Hill; 1993.; [34] G. Sorger, Dynamic Economic Analysis, Deterministic models in discrete time. 1a ed. Cambridge, UK: CambridgeUniversity Press; 2015.; [35] R. K. Sundaram, AFirst Course in Optimization Theory. 1a ed. Cambridge, UK: Cambridge University Press; 1999.; [36] H. Uzawa, Production functions with constant elasticities of substitution. REStud. 1962; 29(4): 291–299.; [37] H. R. Varian, Análisis microeconómico. Barcelona: Antoni Bosch Editor; 1992.; [38] T. A. Weber, Optimal Control Theory with Applications in Economic. 1a ed. Cambridge, USA: The MIT Press; 2011.; [39] G.W. Yohe, Exercises and Applications for Microeconomic Analysis. 3a ed. New York:W.W. Norton & Company; 1993.; https://repositorio.unal.edu.co/handle/unal/87171

  6. 6
    Conference
  7. 7
    Conference
  8. 8
    Dissertation/ Thesis

    المؤلفون: Suárez Barón, Silvia Andrea

    المساهمون: University/Department: Universitat de Girona. Departament d'Enginyeria Elèctrica, Electrònica i Automàtica

    Thesis Advisors: sasuarez@silver.udg.edu, Quintero Monroy, Christian G., Rosa, Josep Lluís de la

    المصدر: TDX (Tesis Doctorals en Xarxa)

    وصف الملف: application/pdf

  9. 9
    Dissertation/ Thesis

    المؤلفون: Yakadina, Irina

    المساهمون: University/Department: Universitat Pompeu Fabra. Departament d'Economia i Empresa

    Thesis Advisors: Marcet, Albert

    المصدر: TDX (Tesis Doctorals en Xarxa)

    وصف الملف: application/pdf

  10. 10
    Academic Journal

    المصدر: Ingeniería; Vol. 29 No. 3 (2024): September-December; e22049 ; Ingeniería; Vol. 29 Núm. 3 (2024): Septiembre-diciembre; e22049 ; 2344-8393 ; 0121-750X

    وصف الملف: application/pdf

    Relation: https://revistas.udistrital.edu.co/index.php/reving/article/view/22049/20391; R. Dos Reis Gonçalves, “Modelos de programação linear inteira Mista para resolver problemas de Otimização de sistemas de distribuição de Energia elétrica radiais,” PhD thesis, Dept. Electrical Eng., Universidade Estadual Paulista, Ilha Solteira, BRA 2013. [Online]. Available: https://repositorio.unesp.br/items/bd089af3-8e0b-4ee7-a33b-d7f7a42a4170 [2] L. A. Gallego Pareja, J. M. Lopez Lezama, and O. Gomez Carmona, “Optimal placement of capacitors, voltage regulators, and distributed generators in electric power distribution systems,” Ingeniería, vol. 25, no. 3, pp. 334-354, Oct. 2020. https://doi.org/10.14483/23448393.16925 [3] A. Karbowski and K. Wyskiel, “Comparative study of AMPL, Pyomo and JuMP optimization modeling languages on a flood control problem example,” Pomiary Automatyka Robotyka, vol. 25, no. 4, pp. 19-24, Dec. 2021. https://doi.org/10.14313/par_242/19 [4] I. Dunning, J. Huchette, and M. Lubin, “JuMP: A Modeling Language for Mathematical Optimization,” SIAM Rev., vol. 59, no. 2, pp-295-320, Sep. 2017. https://doi.org/10.1137/15M1020575 [5] M.-B. Lucioograndinetti and A. Editors, “Springer proceedings in mathematics & statistics,” 2014. [Online]. Available: http://www.springer.com/series/10533 [6] R. Anand, D. Aggarwal, and V. Kumar, “A comparative analysis of optimization solvers,” J. Stat. Manag. Syst., vol. 20, no. 4, pp. 623-635, Jul. 2017. https://doi.org/10.1080/09720510.2017.1395182 [7] L. A. Gallego, J. M. López-Lezama, and O. G. Carmona, “A mixed-integer linear programming model for simultaneous optimal reconfiguration and optimal placement of capacitor banks in distribution networks,” IEEE Access, vol. 10, pp. 52655-52673, 2022. https://doi.org/10.1109/ACCESS.2022.3175189 [8] J. C. Hoyos Vallejo, “Análisis de herramientas computacionales libres utilizadas en el modelado y en la solución del problema de optimización en la ubicación de capacitores y de la generación en redes de distribución radiales,” Undergraduate Thesis, Dept. Engineering, Universidad Autónoma de Occidente, Cali, Colombia, 2023. [Online]. Available: https://red.uao.edu.co/handle/10614/15108 [9] Norma Técnica: Calidad de la potencia de redes de distribución, Empresas Públicas de Medellín, Colombia, 2019, pp.11-12. [10] J. C. Hoyos, “Repositorio código AMPL - JuMP.” [Online]. Available: https://github.com/camilohoyos0499/Code [11] “Documentation for JuMP,” JuMP. [Online]. Available: https://jump.dev/JuMP.jl/stable/ [12] R. Fourer, D. M. Gay, and B. W. Kernighan, “AMPL: A modeling language for mathematical programming, second edition,” 2003. [Online]. Available: https://vanderbei.princeton.edu/307/textbook/AMPLbook.pdf; https://revistas.udistrital.edu.co/index.php/reving/article/view/22049

  11. 11
    Academic Journal
  12. 12
    Academic Journal

    Relation: Cristóbal Barba-González, Antonio J. Nebro, José García-Nieto, María del Mar Roldán-García, Ismael Navas-Delgado, José F. Aldana-Montes, Injecting domain knowledge in multi-objective optimization problems: A semantic approach, Computer Standards & Interfaces, Volume 78, 2021, 103546, ISSN 0920-5489; https://hdl.handle.net/10630/30101; https://doi.org/10.1016/j.csi.2021.103546

  13. 13
    Academic Journal
  14. 14
    Dissertation/ Thesis

    المؤلفون: Mata Álvarez, Joan

    المساهمون: University/Department: Universitat de Barcelona. Departament de Química Tècnica

    Thesis Advisors: Costa López, José

    المصدر: TDX (Tesis Doctorals en Xarxa)

    وصف الملف: application/pdf

  15. 15
    Academic Journal

    المصدر: TecnoLógicas; Vol. 27 No. 60 (2024); e3014 ; TecnoLógicas; Vol. 27 Núm. 60 (2024); e3014 ; 2256-5337 ; 0123-7799

    وصف الملف: application/pdf

    Relation: https://revistas.itm.edu.co/index.php/tecnologicas/article/view/3014/3316; https://revistas.itm.edu.co/index.php/tecnologicas/article/view/3014/3329; M. Pipattanasomporn, M. Kuzlu, and S. Rahman, “An Algorithm for Intelligent Home Energy Management and Demand Response Analysis,” IEEE Trans Smart Grid, vol. 3, no. 4, pp. 2166–2173, Jun. 2012. https://doi.org/10.1109/TSG.2012.2201182; R. Jovanovic, A. Bousselham, and I. S. Bayram, “Residential Demand Response Scheduling with Consideration of Consumer Preferences,” Applied Sciences, vol. 6, no. 1, p. 16, Jan. 2016. https://doi.org/10.3390/app6010016; S. Janocha B., S. S. Baum, and I. Stadler, “Cost minimization by optimization of electricity generation and demand side management,” in 2016 International Energy and Sustainability Conference (IESC), Cologne, Germany, 2016, pp. 1-7. https://doi.org/10.1109/IESC.2016.7569489; A. R. Jordehi, “Optimisation of demand response in electric power systems, a review,” Renewable and Sustainable Energy Reviews, vol. 103, pp. 308–319, Apr. 2019. https://doi.org/10.1016/J.RSER.2018.12.054; S. N. Bragagnolo, J. C. Vaschetti, and F. Magnago, “A Technical and Economic Criteria Comparison on Demand Side Management with Multi-Level Optimization Model,” IEEE Latin America Transactions, vol. 19, no. 9, pp. 1494–1501, Jun. 2021. https://doi.org/10.1109/TLA.2021.9468442; A. C. Duman, Ö. Güler, K. Deveci, and Ö. Gönül, “Residential load scheduling optimization for demand-side management under time-of-use rate,” in 2018 6th International Istanbul Smart Grids and Cities Congress and Fair (ICSG), Istanbul, Turkey, 2018, pp. 193-196. https://doi.org/10.1109/SGCF.2018.8408971; F. Y. Melhem, O. Grunder, Z. Hammoudan, and N. Moubayed, “Energy Management in Electrical Smart Grid Environment Using Robust Optimization Algorithm,” IEEE Trans Ind Appl, vol. 54, no. 3, pp. 2714–2726, Feb. 2018. https://doi.org/10.1109/TIA.2018.2803728; G. Huang, J. Yang, and C. Wei, “Cost-Effective and Comfort-Aware Electricity Scheduling for Home Energy Management System,” in 2016 IEEE International Conferences on Big Data and Cloud Computing (BDCloud), Social Computing and Networking (SocialCom), Sustainable Computing and Communications (SustainCom) (BDCloud-SocialCom-SustainCom), Atlanta, GA, USA, 2016, pp. 453-460. https://doi.org/10.1109/BDCloud-SocialCom-SustainCom.2016.73; A. M. Vega Escobar, “Gestión de la energía eléctrica domiciliaria con base en la gestión activa de la demanda,” Ph.D. tesis, Universidad Distrital Francisco José de Caldas, Bogotá, Colombia, 2018. [Online]. Available: http://hdl.handle.net/11349/7587; A. Ouammi, “Optimal Power Scheduling for a Cooperative Network of Smart Residential Buildings,” IEEE Trans Sustain Energy, vol. 7, no. 3, pp. 1317–1326, Mar. 2016. https://doi.org/10.1109/TSTE.2016.2525728; A. R. S. Vidal, L. A. A. Jacobs, and L. S. Batista, “An evolutionary approach for the demand side management optimization in smart grid,” in 2014 IEEE Symposium on Computational Intelligence Applications in Smart Grid (CIASG), Orlando, FL, USA, 2014, pp. 1-7. https://doi.org/10.1109/CIASG.2014.7011561; Á. R. Restrepo, S. E. Nope, and D. E. Enríquez, “Beneficios Económicos de la Gestión de la Demanda y la Energía Autogenerada en el Contexto de la Regulación Colombiana,” CIT Información tecnológica, vol. 29, no. 1, pp. 105–116, Feb. 2018. https://doi.org/10.4067/S0718-07642018000100105; D. H. Ruiz Amaya, “Optimización de recursos energéticos a partir de la utilización de un der y de la integración de equipos de automatización,” M.S. tesis, Pontificia Universidad Javeriana, Bogotá, Colombia, 2015. [Online]. Available: https://doi.org/10.11144/Javeriana.10554.16812; M. Amer, A. Naaman, N. K. M'Sirdi, and A. M. El-Zonkoly, “Smart home energy management systems survey,” in International Conference on Renewable Energies for Developing Countries 2014, Beirut, Lebanon, 2014, pp. 167-173. https://doi.org/10.1109/REDEC.2014.7038551; I. Gupta, G. N. Anandini, and M. Gupta, “An hour wise device scheduling approach for demand side management in smart grid using particle swarm optimization,” in 2016 National Power Systems Conference (NPSC), Bhubaneswar, India, 2016, pp. 1-6. https://doi.org/10.1109/NPSC.2016.7858965; J. S. Gómez Marín, S. X. Carvajal, and A. Arango Manrique, “Programas de gestión de demanda de electricidad para el sector residencial en Colombia: Enfoque Sistémico,” Energética, Jul. 2015. https://repositorio.unal.edu.co/handle/unal/64269; L. Sheng-Kai, and C. Chao-Rong, “Optimal energy consumption scheduling in home energy management system,” in 2016 International Conference on Machine Learning and Cybernetics (ICMLC), Jeju, Korea (South), 2016, pp. 638-643. https://doi.org/10.1109/ICMLC.2016.7872962; F. D. Moya Chavez, L. C. P. Da Silva, and J. C. Lopez A., “A Mathematical Model for the Optimal Scheduling of Smart Home Electrical Loads,” WSEAS Transactions on Power Systems, Jan. 2018. https://repositorio.usc.edu.co/items/cf5777b3-948e-4561-98a0-d01b30d47592; Y. Wang, C. Hao, and T. Yoshimura, “A particle swarm optimization and branch and bound based algorithm for economical smart home scheduling,” in 2017 IEEE 60th International Midwest Symposium on Circuits and Systems (MWSCAS), Boston, MA, USA, 2017, pp. 213-216. https://doi.org/10.1109/MWSCAS.2017.8052898; E. Moreno Soto, “Análisis de la flexibilidad de la demanda en usuarios residenciales,” M.S. tesis, Universidad Nacional de Colombia, Bogotá, Colombia, 2021. [Online]. Available: https://repositorio.unal.edu.co/handle/unal/80431; S. N. Bragagnolo, J. C. Vaschetti, F. Magnago, and J. C. Gomez-Targarona, “Gestión de la demanda en las redes inteligentes. Perspectiva y control desde el usuario y la distribuidora,” CIT Información tecnológica, vol. 31, no. 3, pp. 159–170, Jun. 2020. https://doi.org/10.4067/S0718-07642020000300159; F. D. Moya Ch., J. C. Lopez A., and L. C. P. da Silva, “Model for smart building electrical loads scheduling,” in 2016 IEEE 16th International Conference on Environment and Electrical Engineering (EEEIC), Florence, Italy, 2016, pp. 1-6. https://doi.org/10.1109/EEEIC.2016.7555639; F. D. Moya Ch., L. C. P. da Silva, J. C. Lopez A., and P. Vergara B., “GRASP model for smart home electrical loads scheduling,” in 2015 International Energy and Sustainability Conference (IESC), Farmingdale, NY, USA, 2015, pp. 1-6. https://doi.org/10.1109/IESC.2015.7384384; M. J. Kochenderfer, and T. A. Wheeler, “Linear Constrained Optimization” in Algorithms for Optimization. London, England: The MIT Press, 2019, pp 189-206. https://mitpress.mit.edu/9780262039420/algorithms-for-optimization/; H. T. Dinh, and D. Kim, “An Optimal Energy-Saving Home Energy Management Supporting User Comfort and Electricity Selling with Different Prices,” IEEE Access, vol. 9, pp. 9235–9249, Jan. 2021. https://doi.org/10.1109/ACCESS.2021.3050757; M. Á. Dávila, “Desarrollo de un algoritmo de gestión de la demanda energética de un cargador residencial de baterías para vehículos eléctricos en un escenario de tarificación en tiempo real,” M.S. tesis, Universidad Distrital Francisco José de Caldas, Bogotá, Colombia, 2021. [Online]. Available: http://hdl.handle.net/11349/29308; D. G. Rossit, S. Nesmachnow, J. Toutouh, and F. Luna, “Scheduling deferrable electric appliances in smart homes: a bi-objective stochastic optimization approach,” Mathematical Biosciences and Engineering, vol. 19, no. 1, pp. 34–65, 2022. https://doi.org/10.3934/mbe.2022002; S. Montaña, and C. A. Correa-Florez, “Programación óptima de cargas eléctricas flexibles a nivel residencial en tiempos de Covid-19,” INGE CUC, vol. 17, no. 1, pp. 49–68, 2021. https://hdl.handle.net/11323/10286; N. D. Rahate, and N. Kinhekar, “Demand side management for household equipment's,” in 2017 International Conference on Information, Communication, Instrumentation and Control (ICICIC), Indore, India, 2017, pp. 1-5. https://doi.org/10.1109/ICOMICON.2017.8279108; O. Oladeji, and O. O. Olakanmi, “A genetic algorithm approach to energy consumption scheduling under demand response,” 2014 IEEE 6th International Conference on Adaptive Science & Technology (ICAST), Ota, Nigeria, 2014, pp. 1-6. https://doi.org/10.1109/ICASTECH.2014.7068096; D. Borges Vasconcellos, P. Puch González, and G. Frías González, “Control de demanda eléctrica aplicando algoritmos genéticos,” Ingeniare, Revista chilena de ingeniería, vol. 25, no. 3, pp. 389–398, sep. 2017. https://doi.org/10.4067/S0718-33052017000300389; N. Pavithra, and B. P. Esther, “Residential demand response using genetic algorithm,” in 2017 Innovations in Power and Advanced Computing Technologies (i-PACT), Vellore, India, 2017, pp. 1-4. https://doi.org/10.1109/IPACT.2017.8245143; I. O. Essiet, Y. Sun, and Z. Wang, “Optimized energy consumption model for smart home using improved differential evolution algorithm,” Energy, vol. 172, pp. 354–365, Apr. 2019. https://doi.org/10.1016/j.energy.2019.01.137; V. J. Gutierrez-Martinez, C. A. Moreno-Bautista, J. M. Lozano-Garcia, A. Pizano-Martinez, E. A. Zamora-Cardenas, and M. A. Gomez-Martinez, “A Heuristic Home Electric Energy Management System Considering Renewable Energy Availability,” Energies, vol. 12, no. 4, p. 671, Feb. 2019. https://doi.org/10.3390/en12040671; W. Guzman, S. Osorio, and S. Rivera, “Modelado de cargas controlables en el despacho de sistemas con fuentes renovables y vehículos eléctricos,” Ingeniería y Región, vol. 17, p. 49, Jun. 2017. https://doi.org/10.25054/22161325.1535; R. A. Hincapié Isaza, “Optimización binivel aplicada al problema de la planeación de redes eléctricas de media y baja tensión,” Ph.D. tesis, Universidad Tecnológica de Pereira, Pereira, Colombia, 2017. [Online]. Available: https://repositorio.utp.edu.co/handle/11059/8479; C. Henggeler Antunes, M. J. Alves, and B. Ecer, “Bilevel optimization to deal with demand response in power grids: models, methods and challenges,” TOP, vol. 28, no. 3, pp. 814–842, Oct. 2020. https://doi.org/10.1007/s11750-020-00573-y; P. Carrasqueira, M. J. Alves, and C. H. Antunes, “Bi-level particle swarm optimization and evolutionary algorithm approaches for residential demand response with different user profiles,” Information Sciences, vol. 418–419, pp. 405–420, Dec. 2017. https://doi.org/10.1016/j.ins.2017.08.019; M. Fan-Lin, and Z. Xiao-Jun, “An optimal real-time pricing for demand-side management: A Stackelberg game and genetic algorithm approach,” in 2014 International Joint Conference on Neural Networks (IJCNN), Beijing, China, 2014, pp. 1703-1710. https://doi.org/10.1109/IJCNN.2014.6889608; M. Fan-Lin, and Z. Xiao-Jun, “A bilevel optimization approach to demand response management for the smart grid,” in 2016 IEEE Congress on Evolutionary Computation (CEC), Vancouver, BC, Canada, 2016, pp. 287-294. https://doi.org/10.1109/CEC.2016.7743807; F. Wang et al., “Multi-Objective Optimization Model of Source–Load–Storage Synergetic Dispatch for a Building Energy Management System Based on TOU Price Demand Response,” IEEE Trans Ind Appl, vol. 54, no. 2, pp. 1017–1028, Dec. 2017. https://doi.org/10.1109/TIA.2017.2781639; D. Ferrer Valencia, “Desarrollo de un algoritmo de optimización basado en búsqueda local guiada para el problema de minimización en la huella de carbono en el ruteo de vehículos heterogéneos,” M.S. tesis, Universidad Nacional de Colombia, Bogotá, Colombia, 2023. [Online]. Available: https://repositorio.unal.edu.co/handle/unal/84862; Comisión de Regulación de Energía y Gas (CREG), “Estrategias para la implementación de esquemas de señales de precios y cargos horarios a los usuarios finales en el SIN, para ser utilizados en programas de respuesta de la demanda,” creg.gov.co Accessed: Feb. 28, 2024. [Online]. Available: https://creg.gov.co/publicaciones/15313/estrategias-para-la-implementacion-de-esquemas-de-senales-de-precios-y-cargos-horarios-a-los-usuarios-finales-en-el-sin-para-ser-utilizados-en-programas-de-respuesta-de-la-demanda/; A. Gargallo Tatay, “Medición y análisis del consumo de energía eléctrica en los receptores domésticos en condiciones reales de funcionamiento: Aplicación a una vivienda unifamiliar,” Tesis de grado, Universitat Politécnica de Valencia, Valencia, España, 2018. [Online]. Available: https://riunet.upv.es:443/handle/10251/106520; Lucera. “Eficiencia Energética.” lucera.es. Accessed: Feb. 28, 2024. [Online]. Available: https://lucera.es/blog/cuanto-consumen-electrodomesticos; COPELCO. “CONOCÉ, AHORRÁ, CUIDÁ - Recomendaciones para el buen uso de energía eléctrica.” copelco.coop. Accessed: Feb. 28, 2024. [Online]. Available: https://www.copelnet.com.ar/informacion-de-interes/energia/consumo-de-artefactos-electricos; Endesa. “Cuánta energía consume un termo eléctrico.” endesa.com. Accessed: Feb. 28, 2024. [Online]. Available: https://www.endesa.com/es/blog/blog-de-endesa/consejos-de-ahorro/cuanta-energia-consume-termo-electrico; Ministerio de Economía. “Consumo básico de electrodomésticos.” argentina.gob.ar. Accessed: Feb. 28, 2024. [Online]. Available: https://www.argentina.gob.ar/enre/uso-eficiente-y-seguro/consumo-basico-electrodomesticos; A. Daza Urrego, and L. M. Nieto Gutiérrez “Manual práctico de condiciones para instalaciones de sistemas solares fotovoltaicos para suplir cargas demandadas de estrato 3 a 6 en viviendas unifamiliares de Bogotá,” Tesis de grado, Universidad Distrital Francisco José de Caldas, Bogotá, Colombia, 2019. [Online]. Available: http://hdl.handle.net/11349/15575; CIME Power Systems. “Tablas de consumo eléctrico.” cimepowersystems.com.mx. Accessed: Feb. 28, 2024. [Online]. Available: http://www.cimepowersystems.com.mx/wp-content/uploads/2011/10/Tabla-de-consumos.pdf; K. A. Hernández Hernández, and J. S. 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