A preference-based multi-objective model for wind farm design layout optimization
Author:
Publisher
Springer Science and Business Media LLC
Subject
Industrial and Manufacturing Engineering,Modeling and Simulation
Link
https://link.springer.com/content/pdf/10.1007/s12008-021-00828-3.pdf
Reference48 articles.
1. https://www.evwind.es/2019/09/03/330-gw-of-wind-energy-will-be-installed-from-2019-to-2023/70647. Accessed 25 January 2020
2. Porté-Agel, F., Wu, Y.T., Chen, C.H.: A numerical study of the effects of wind direction on turbine wakes and power losses in a large wind farm. Energies 6(10), 5297–5313 (2013)
3. Herbert-Acero, J., Probst, O., Réthoré, P.E., Larsen, G., Castillo-Villar, K.: A review of methodological approaches for the design and optimization of wind farms. Energies 7(11), 6930–7016 (2014)
4. González, J.S., Payán, M.B., Santos, J.M.R., González-Longatt, F.: A review and recent developments in the optimal wind-turbine micro-siting problem. Renew. Sustain. Energy Rev. 30, 133–144 (2014)
5. Ulku, I., Alabas-Uslu, C.: A new mathematical programming approach to wind farm layout problem under multiple wake effects. Renew. Energy 136, 1190–1201 (2019)
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