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Design of isolated hybrid systems minimizing costs and pollutant emissions

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  • Bernal-Agustín, José L.
  • Dufo-López, Rodolfo
  • Rivas-Ascaso, David M.

Abstract

In this paper we expound, for the first time, the application of the Strength Pareto Evolutionary Algorithm to the Multi-Objective design of isolated hybrid systems. The design is posed as an optimisation problem whose solution allows obtaining the configuration of the system as well as the control strategy that simultaneously minimises both the total cost through the useful life of the installation and the pollutant emissions. As an example, we have designed a PV–wind–diesel system for two different load profiles, obtaining a set of possible solutions from which the designer can choose those which he prefers considering the costs and pollutant emissions of each one of them. The reached results demonstrate the practical utility of the design method used.

Suggested Citation

  • Bernal-Agustín, José L. & Dufo-López, Rodolfo & Rivas-Ascaso, David M., 2006. "Design of isolated hybrid systems minimizing costs and pollutant emissions," Renewable Energy, Elsevier, vol. 31(14), pages 2227-2244.
  • Handle: RePEc:eee:renene:v:31:y:2006:i:14:p:2227-2244
    DOI: 10.1016/j.renene.2005.11.002
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    References listed on IDEAS

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    1. Elhadidy, M.A. & Shaahid, S.M., 2000. "Parametric study of hybrid (wind + solar + diesel) power generating systems," Renewable Energy, Elsevier, vol. 21(2), pages 129-139.
    2. Elhadidy, M.A., 2002. "Performance evaluation of hybrid (wind/solar/diesel) power systems," Renewable Energy, Elsevier, vol. 26(3), pages 401-413.
    3. Schmid, Aloisio Leoni & Hoffmann, Carlos Augusto Amaral, 2004. "Replacing diesel by solar in the Amazon: short-term economic feasibility of PV-diesel hybrid systems," Energy Policy, Elsevier, vol. 32(7), pages 881-898, May.
    4. McGowan, J.G. & Manwell, J.F. & Avelar, C. & Warner, C.L., 1996. "Hybrid wind/PV/diesel hybrid power systems modeling and South American applications," Renewable Energy, Elsevier, vol. 9(1), pages 836-847.
    5. Muselli, M & Notton, G & Poggi, P & Louche, A, 2000. "PV-hybrid power systems sizing incorporating battery storage: an analysis via simulation calculations," Renewable Energy, Elsevier, vol. 20(1), pages 1-7.
    6. McGowan, J.G. & Manwell, J.F., 1999. "Hybrid wind/PV/diesel system experiences," Renewable Energy, Elsevier, vol. 16(1), pages 928-933.
    7. Elhadidy, M.A. & Shaahid, S.M., 2004. "Promoting applications of hybrid (wind+photovoltaic+diesel+battery) power systems in hot regions," Renewable Energy, Elsevier, vol. 29(4), pages 517-528.
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