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Energy 24, 401–408 (2001)įerrer-Martí, L., Garwood, A., Chiroque, J., Escobar, R., Coello, J., Castro, M.: A community small-scale wind generation project in Peru. Energy 86, 1387–1394 (2009)Įl Bassam N.: Renewable energy for rural communities. 20(1), 205–213 (2005)Įkren B.Y., Ekren O.: Simulation based size optimization of a PV/wind hybrid energy conversion system with battery storage under various load and auxiliary energy conditions. Accessed 17 February 2010Ĭossi A.M., Romero R., Sanches Mantovani J.R.: Planning of secondary distribution circuits through evolutionary algorithms. Environmental Cases Studies and White/Technical Papers, Port of Entry. Energy Policy 32, 1693–1705 (2004)Ĭoello, J., Escobar, R., Dávila, C., Villanueva, G., Chiroque, J.: Micro hydro power plants and other alternative energies: contributions of practical action-ITDG to rural development. Optim 27, 349–365 (2003)Ĭhaureya A., Ranganathana M., Mohanty P.: Electricity access for geographically disadvantaged rural communities-technology and policy insights. Rev 13, 2111–2118 (2009)Ĭaccettta L., Hill S.P.: An application of branch and cut to open pit mine scheduling. Dev 13(3), 137–142 (2009)īernal-Agustín J.L., Dufo-Lopez R.: Simulation and optimization of stand-alone hybrid renewable energy Systems. Energy 32, 1155–1164 (2007)īala B.K., Siddique S.A.: Optimal design of a PV-diesel hybrid system for electrification of an isolated island-Sandwip in Bangladesh using genetic algorithm. 5(1), 126–1332 (1990)Īshok S.: Optimised model for community-based hybrid energy system. Energy 34, 2151–2159 (2009)Īoki K., Nara K., Satoh T., Kitagawa M., Yamanaka K.: New approximate optimization method for distribution system planning. 11, 894–908 (2007)Īlzola J.A., Vechiu I., Camblong H., Santos M., Sall M., Sowd G.: Microgrids project, part 2: design of an electrification kit with high content of renewable energy sources in senegal renew. Results show that microgrids are used despite the village dispersion, and the solutions significantly reduce the initial investment costs.Īkella A.K., Sharma M.P., Saini R.P.: Optimum utilization of renewable energy sources in a remote area.


The model is validated by application to a real case in the northern highlands of Peru. The criterion is the minimization of the initial investment cost required to meet the demand. We develop a mathematical model that gives the location and size or type of the wind turbines and the design of the microgrids, taking into account the demand of the consumption points and the wind potential. Alternatively, we propose a solution that considers both individual generators and microgrids.
#MICROWIND 3 APPLICATION INSTALL#
To date, these projects have tended to install individual microwind turbines at each demand point. Specifically, electrification by wind power is one of the technological options that have been used recently in projects implemented in the Andean highlands of Peru.

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