Electricity Power Planning: the Role of Wind Energy

Combining energy efficiency with renewable energy sources constitutes a key strategy for a sustainable future. The wind power sector stands out as a fundamental element for the achievement of the European renewable objectives and Portugal is no exception to the increase of the wind energy for the electricity generation. This work proposes an optimization model for the long range electricity power planning in a system similar to the Portuguese one, where the expected impacts of the increasing installed wind power on the operating performance of thermal power plants are taken into account. The main results indicate that the increasing penetration of wind power in the electricity system will have significant effects on the combined cycle gas power plants operation and on the theoretically expected cost reduction and environmental gains. This research demonstrated the need to address the impact that energy sources with variable output may have, not only on the short-term operational planning, but especially on the medium to long range planning activities, in order to meet the strategic objectives for the energy sector.




References:
[1] European Commission, European energy and transport. Trends to2030-
update 2005, 2005 (http://ec.europa.eu/energy/index_en.html).
[2] EuroObserv-ER, "Wind energy barometer" Systèmes Solaires le
journal de l-éolien, no. 6, pp. 42-73, 2010.
[3] EuroObserv-ER, "Wind energy barometer" Systèmes Solaires, no. 177,
pp. 71-90, 2007.
[4] J. Rosen, O. Tietze-Stockinger, O. Rentz "Model-based analysis of
effects from large-scale wind power production" Energy, Vol. 32, no. 4,
pp 575-583, 2007.
[5] F. Olsina, M. Roscher, C. Larisson, F. Garcés "Short-term optimal
wind power generation capacity in liberalized electricity markets"
Energy Policy, Vol. 35, no. 2, pp. 1257-1273, 2007.
[6] EWEA, Large scale integration of wind energy in the European power
supply: analysis, issues and recommendations, December 2004
(www.ewea.org).
[7] H. Holttinen, R. Hirvonen, R "Power system requirements for wind
power" in Wind power in power systems, T. Ackermann, Ed., John
Wiley and Sons, July 2005.
[8] H. Weigt "Germany-s wind energy: The potential for fossil capacity
replacement and cost saving" Applied Energy, Vol. 86, pp.1857-1863,
2009.
[9] P. Luickx, E. Delarue, W. D-haeseleer "Impact of large amounts of
wind power on the operation of an electricity generation system:
Belgian case study" Renewable and Sustainable Energy Reviews, Vol.
14, pp. 2019-2028, 2010.
[10] REN Dados técnicos electricidade valores provis├│rios 2009, 2010
www.ren.pt (in Portuguese).
[11] REN Plano de investimentos da rede nacional de transporte 2009-
2014, 2008 www.ren.pt (in Portuguese).
[12] DGGE, Renováveis. Estatísticas rápidas. May 2010, www.dgge.pt (in
Portuguese).
[13] P. Ferreira, M. Ara├║jo, M. E.J., O-Kelly, "An overview of the
Portuguese wind power sector" International Transactions on
Operational Research, Vol. 14, no. 1, pp 39-54, 2007.
[14] P. Ferreira, Electricity power planning in Portugal: The role of wind
energy, PhD Thesis, University of Minho, 2008
(http://repositorium.sdum.uminho.pt/handle/1822/7816).
[15] UCTE European wind integration study. Towards a successful
integration of wind power into European electricity grids, January
2007.
[16] B. Hobbs "Optimisation methods for electric utility resource planning"
European Journal of Operational Research, Vol. 83, no. 1, pp 1-20,
1995.
[17] C, Saleiro, M. Ara├║jo, P. Ferreira, P "Wind Power costs in Portugal"
Ris├© International Energy Conference, Denmark, 22- 24 May, 2007.