Publicado
Techno-economic models of hybrid systems with renewable energy for rural applications
Modelos técnico-económicos de sistemas híbridos con energías renovables para zonas rurales
DOI:
https://doi.org/10.15446/dyna.v90n226.106106Palabras clave:
systematic literature review; renewable energy; model; technical-economic; rural electrification; hybrid system (en)revisión sistemática de literatura; energía renovable; modelo; técnico-económico; electrificación rural; sistema híbrido (es)
Descargas
The decrease in oil production, the rise in environmental pollution, and the impending need to power areas in Colombia that do not currently have access to electricity have given the nation the task of finding new, decentralized, sustainable energy generation methods. Due to its favorable geographic location, renewable energy sources are a very appealing and affordable option in Colombia. This document presents a systematic literature review (SLR) developed to assess the recent techno-economic models and financial strategies in rural electrification using renewable energy systems. As a result, 19 documents were obtained, where the most informed funding sources included governmental, private and mixed shares. According to the information, the financial models were limited to estimate economic variables as levelized cost of electricity and net present cost. Finally, an emphasis on the need of governmental support to promote this kind of projects were reported.
El estancamiento de la producción petrolera, el incremento de la contaminación ambiental y la inminente necesidad de energizar las zonas que aún no poseen el recurso en Colombia, ha puesto el país en la tarea de buscar nuevas formas de generar energía de forma descentralizada, sostenible y asequible. La energía proveniente de fuentes renovables es una opción muy prometedora y asequible en Colombia, gracias a su favorecedora posición geográfica. En este documento se desarrolla una revisión sistemática de literatura (SLR), la cual pretende identificar los modelos tecno-económicos y las estrategias de financiación en la electrificación rural con energías renovables. De acuerdo al análisis de información de 19 documentos, las principales fuentes de financiación de los sistemas de generación son los sectores públicos, privados o mixtos, los modelos financieros empleados se limitan al cálculo de variables económicas como el costo nivelado de electricidad y el costo presente neto y se enfatiza en la necesidad de apoyos económicos gubernamentales que promuevan la ejecución de este tipo de proyectos.
Referencias
Rodríguez, A., Herrera, B., et al. Plan Energético Nacional Colombia: Ideario Energético 2050 [Online]. Bogotá, Colombia 2015. [date of reference November 25th of 2022]. Available at: http://www.upme.gov.co/docs/pen/pen_idearioenergetico2050.pdf
Aden, N., Akerman P., Amrani, N., et al., Energy Technology Perspectives 2020. [Online]. Paris, 2021. [date of reference November 25th of 2022]. Available at: https://www.iea.org/terms
García, C., González, O.V., Báez, O.A., Tellez, L.A., and Obando, D.C., Plan de acción indicativo de eficiencia energética 2017- 2022. Bogotá, D.C. 2016. [date of reference November 25th of 2022]. Available at: https://www1.upme.gov.co/DemandaEnergetica/MarcoNormatividad/PAI_PROURE_2017-2022.pdf
Actualización de la Contribución Determinada a Nivel Nacional de Colombia (NDC) [Online]. Colombia 2020. [date of reference November 25th of 2022]. Available at: https://unfccc.int/sites/default/files/NDC/2022-06/NDC%20actualizada%20de%20Colombia.pdf
Insuasti, D.J., Obando, L.M., et al. Informe de gestión IPSE 2021 [Online]. Bogotá, D.C. Colombia 2021. [date of reference November 25th of 2022]. Available at: https://ipse.gov.co/documento_planeacion/documento/rendicion_de_cuentas/2022/INFORME%20DE%20GESTIÓN%202021.pdf
Bello, A., Escobar, A., and Valencia, J.A., Soluciones Solares fotovoltaicas hibridas implementadas en zonas no interconectadas de Colombia [Online]. [date of reference November 25th of 2022]. Available at: https://ipse.gov.co/documento_prensa/documento/documentos_de_%20investigacion/ARTÍCULO%20SISTEMAS%20HÍBRDOS.pdf
Soluciones energéticas para las zonas no interconectadas de Colombia [Online]. Colombia 2014. [date of reference November 25th of 2022]. Available at: https://www.minenergia.gov.co/documents/10180/742159/09C-SolucionesEnergeticasZNI-IPSE.pdf/2871b35d-eaf7-4787-b778-ee73b18dbc0e
González, T. and Valencia, J.A., Integración de las energías renovables no convencionales en Colombia [Online]. Bogotá, 2015. [date of reference November 25th of 2022]. Available at: http://www1.upme.gov.co/sgic/
Cardona, M.J. and López, Y.U., Systematic literature review of techno-economic models of rural electrification using renewable energy. IEEE Andescon, pp. 1-7, 2018. DOI: HTTPS://DOI.ORG/https://doi.org/10.1109/ANDESCON.2018.8564641.
Kitchenham, B., Procedures for performing systematic reviews [Online]. Australia 2004. [date of reference November 25th of 2022]. Available at: https://www.inf.ufsc.br/~aldo.vw/kitchenham.pdf
Kitchenham, B., Pearl, O., Budgen, D., Bailey, J., and Linkman, S., Systematic literature reviews in software engineering - A systematic literature review, Information and Software Technology, 51(1), pp. 7-15, Jan. 2009. DOI: HTTPS://DOI.ORG/https://doi.org/10.1016/j.infsof.2008.09.009.
Xiao Y., and Watson, M., Guidance on conducting a systematic literature review. J Plan Educ Res, 39(1), pp. 93-112, 2019, DOI: HTTPS://DOI.ORG/https://doi.org/https://doi.org/10.1177/0739456X17723971.
Okoli, C., A guide to conducting a standalone systematic literature review Chitu Okoli. A guide to conducting a standalone systematic literature review. Communications of the Association for Information Systems, 2015. DOI: https://doi.org/10.17705/1CAIS.03743
Scopus by ELSEVIER [Online]. [date of reference November 25th of 2022]. Available at: https://www.scopus.com/search/form.uri?display=basic&zone=header&origin=searchbasic#basic (accessed Nov. 16, 2022).
Scopus Guía rápida de referencia [Online]. 2014. Available at: https://www.elsevier.com/solutions/scopus
Codina, L., Morales-Vargas, A., Rodríguez-Martínez, R. y Pérez-Montoro, M., Uso de Scopus y Web of Science para investigar y evaluar en comunicación social: análisis comparativo y caracterización. Index Comunicacion, 10(3), pp. 235-261, 2020, DOI: https://doi.org/10.33732/ixc/10/03Usodes.
Web of Science WoS by Clarivate Analytics [Online]. [date of reference November 25th of 2022]. Available at: https://clarivate.com/products/scientific-and-academic-research/research-discovery-and-workflow-solutions/webofscience-platform/
Gatica, F. y Cardenas, C., Guía de uso Web of Science (WOS) [Online]. 2020. [date of reference November 25th of 2022]. Available at: https://www.ulagos.cl/wp-content/uploads/2020/04/GuiaWOS.pdf
Aria, M., and Cuccurullo, C., Bibliometrix [Online]. 2016. [date of reference November 26th of 2022]. Available at: https://www.bibliometrix.org/home/index.php/layout/bibliometrix.
Harish, V.S., Anwer, N., and Kumar, A., Applications, planning and socio-techno-economic analysis of distributed energy systems for rural electrification in India and other countries: a review. Sustainable Energy Technologies and Assessments, 52(Aug.), 2022, DOI: https://doi.org/10.1016/j.seta.2022.102032.
Haghigha, A., Mamaghani, S.A., Escandon, A., Najafi, B., Shirazi, A., and Rinaldi, F., Techno-economic feasibility of photovoltaic, wind, diesel, and hybrid electrification systems for off-grid rural electrification in Colombia. Renew Energy, 97, pp. 293-305, 2016, DOI: https://doi.org/10.1016/j.renene.2016.05.086.
Benti N.E., et al., Techno-economic analysis of solar energy system for electrification of rural school in Southern Ethiopia. Cogent Eng. 9(1). 2022. DOI: https://doi.org/10.1080/23311916.2021.2021838.
Khan, F.A., Pal, N., Saeed, S.H. and Yadav, A., Modelling and techno-economic analysis of standalone SPV/Wind hybrid renewable energy system with lead-acid battery technology for rural applications. J Energy Storage. 55, 2022, DOI: https://doi.org/10.1016/j.est.2022.105742.
Alsagri, A.S., Alrobaian, A.A., and Nejlaoui, M., Techno-economic evaluation of an off-grid health clinic considering the current and future energy challenges: a rural case study. Renew Energy. 169, pp. 34-52, 2021. DOI: https://doi.org/10.1016/j.renene.2021.01.017.
HOMER Energy Software [Online]. 2022. [date of reference November 25th of 2022]. Available at: https://www.homerenergy.com/
Cardona, M.J., Modelo técnico, económico y financiero asequible en sistemas energéticos, basado en microrredes de fuentes renovables para la electrificación rural [Online]. Manizales. Colombia 2021. [date of reference November 25th of 2022]. Available at: https://repositorio.autonoma.edu.co/bitstream/11182/1280/1/Modelo_tecnico_economico_microredes_fuentes.pdf
Ahmad, J. et al., Techno economic analysis of a wind-photovoltaic-biomass hybrid renewable energy system for rural electrification: a case study of Kallar Kahar. Energy.148, pp. 208-234, 2018, DOI: https://doi.org/10.1016/j.energy.2018.01.133.
Pujari, H.K., and Rudramoorthy, M., Optimal design and techno-economic analysis of a hybrid grid-independent renewable energy system for a rural community. International Transactions on Electrical Energy Systems. 31(9), 2021. DOI: https://doi.org/10.1002/2050-7038.13007.
Achirgbenda, V.T., Kuhe, A., and Okoli, K., Techno-economic feasibility assessment of a solar-biomass-diesel energy system for a remote rural health facility in Nigeria. Energy Sources, Part A: Recovery, Utilization and Environmental Effects, 2020, DOI: https://doi.org/10.1080/15567036.2020.1813848.
Kolhe, M.L., Ranaweera, K.M., and Gunawardana, A.G.B., Techno-economic sizing of off-grid hybrid renewable energy system for rural electrification in Sri Lanka. Sustainable Energy Technologies and Assessments. 11, pp. 53-64, 2015, DOI: https://doi.org/10.1016/j.seta.2015.03.008.
Olatomiwa, L., Mekhilef, S., Huda, A.S.N., and Sanusi, K., Techno-economic analysis of hybrid PV–diesel–battery and PV–wind–diesel–battery power systems for mobile BTS: the way forward for rural development. Energy Sci Eng. 3(4), pp. 271-285, 2015, DOI: https://doi.org/10.1002/ese3.71.
Margaret, W., Amutha, and Rajini, V., Techno-economic evaluation of various hybrid power systems for rural telecom. Renewable and Sustainable Energy Reviews. Elsevier, 43. pp. 553-561, 2015. DOI: https://doi.org/10.1016/j.rser.2014.10.103.
Kumar, J., Suryakiran, B., Verma, A., and Bhatti, T.S., Analysis of techno-economic viability with demand response strategy of a grid-connected microgrid model for enhanced rural electrification in Uttar Pradesh state, India. Energy. 178, pp. 176-185, 2019, DOI: https://doi.org/10.1016/j.energy.2019.04.105.
Tesema, S., Resource assessment and optimization study of efficient type hybrid power system for electrification of rural district in Ethiopia. International Journal of Energy and Power Engineering. 3(6), art. 331, 2014, DOI: https://doi.org/10.11648/j.ijepe.20140306.16.
Oladigbolu, J.O., Ramli, M.A.M., and Al-Turki, Y.A., Techno-economic and sensitivity analyses for an optimal hybrid power system which is adaptable and effective for rural electrification: a case study of Nigeria. Sustainability (Switzerland). 11(18), 2019, DOI: https://doi.org/10.3390/su11184959.
Rad, M.A.V., Ghasempour, R., Rahdan, P., Mousavi, S., and Arastounia, M., Techno-economic analysis of a hybrid power system based on the cost-effective hydrogen production method for rural electrification, a case study in Iran. Energy. 190, 2020, DOI: https://doi.org/10.1016/j.energy.2019.116421.
Chambon, C.L., Karia, T., Sandwell, P., and Hallett, J.P., Techno-economic assessment of biomass gasification-based mini-grids for productive energy applications: the case of rural India. Renew Energy. 154, pp. 432-444, 2020, DOI: https://doi.org/10.1016/j.renene.2020.03.002.
Shaahid, S.M. and El-Amin, I., Techno-economic evaluation of off-grid hybrid photovoltaic-diesel-battery power systems for rural electrification in Saudi Arabia-A way forward for sustainable development. Renewable and Sustainable Energy Reviews. 13(3), pp. 625-633, 2009. DOI: https://doi.org/10.1016/j.rser.2007.11.017.
Liu, X., Tan, Q., Niu, Y., and Babaei, R., Techno-economic analysis of solar tracker-based hybrid energy systems in a rural residential building: a case study in South Africa. International Journal of Green Energy. Taylor and Francis Ltd., 2022. DOI: https://doi.org/10.1080/15435075.2021.2024545.
Sankoh, M., Diarra, B., Samikannu, R., and Ladu, N.S.D., Techno-Economic Feasibility analysis of a solar photovoltaic hybrid system for rural electrification in Sierra Leone for zero carbon emission. International Transactions on Electrical Energy Systems, 2022, DOI: https://doi.org/10.1155/2022/6349229.
Cómo citar
IEEE
ACM
ACS
APA
ABNT
Chicago
Harvard
MLA
Turabian
Vancouver
Descargar cita
CrossRef Cited-by
1. Derber Jose Soto Rodriguez, Jose Alfonso Yaguna Nuñez, Yimi Yesid Barros Farfan. (2024). Financial strategies applied to current assets of diesel spare parts importers in the district of Riohacha. Management (Montevideo), 2, p.36. https://doi.org/10.62486/agma202436.
Dimensions
PlumX
Visitas a la página del resumen del artículo
Descargas
Licencia
Derechos de autor 2023 DYNA

Esta obra está bajo una licencia internacional Creative Commons Atribución-NoComercial-SinDerivadas 4.0.
El autor o autores de un artículo aceptado para publicación en cualquiera de las revistas editadas por la facultad de Minas cederán la totalidad de los derechos patrimoniales a la Universidad Nacional de Colombia de manera gratuita, dentro de los cuáles se incluyen: el derecho a editar, publicar, reproducir y distribuir tanto en medios impresos como digitales, además de incluir en artículo en índices internacionales y/o bases de datos, de igual manera, se faculta a la editorial para utilizar las imágenes, tablas y/o cualquier material gráfico presentado en el artículo para el diseño de carátulas o posters de la misma revista.




