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[1] “Microgrids: The next logical step for the military”, SmartGridNews.com, http://www.smartgridnews.com/artman/publish/Delivery_Microgrids/Microgrids-The-next-logical-step-for-the-military-6327.html#.UzGq9_l_uPt.

 

[2] N. Hatziarguriou, H. Asano, R. Iravani and C. MArnay, “Microgrids”, IEEE Power and Energy Magazine, vol.5, July/August 2007.

 

[3] J. A. Peças Lopes, C. L. Moreira and A. G. Madureira, “Defining Control Strategies for Microgrids Islanded Operation”, IEEE Transactions on Power Systems, vol.21, no.2, May 2006.

 

[4] C. Gouveia, C. Moreira (Supervisor) and J. A. P. Lopes (Co-Supervisor), “Experimental Validation of Microgrids: Exploiting the role of Plug-in Electrical Vehicles, active load control and micro-generation units”, Thesis Research Plan, Faculty of Engineering of the University of Porto.

 

[5]  “Technology Roadmaps: Smart Grids”, International Energy Agency (IEA), 2011. Available at: http://www.iea.org/publications/freepublications/publication/name,3972,en.html (Last Consulted on November 2012).

 

[6] C.Gouveia, D. Rua, C. L. Moereia and J. A. Peças Lopes, “Coordinating Distributed Energy Resources During Microgrid Emergency Operation”, Book: ”Renewable Energy Integration”, pp. 259-303, 2014

 

[7] J.A.P. Lopes, F.J. Soares, P.M.R. Almeida, "Integration of Electric Vehicles in the Electric Power System", Proceedings of the IEEE, vol.99, no.1, pp.168-183, Jan. 2011

 

[8] F.C. Schweppe, R.D. Tabors, J.L. Kirtley, H.R.Outhred, F.H. Pickel, A.J. Cox, "Homeostatic Utility Control," IEEE Transactions on Power Apparatus and Systems, vol.PAS-99, no.3, pp.1151-1163, May 1980

 

[9] J.A. Short, D.G. Infield, L.L. Freris,"Stabilization of Grid Frequency Through Dynamic Demand Control," IEEE Transactions on Power Systems, vol.22, no.3, pp.1284-1293, Aug. 2007.

 

[10] K. Samarakoon, J. Ekanayake, N. Jenkins, "Investigation of Domestic Load Control to Provide Primary Frequency Response Using Smart Meters," IEEE Transactions on Smart Grid, vol.3, no.1, pp.282-292, March 2012.

 

[11] S.A. Pourmousavi, M.H. Nehrir, "Real-Time Central Demand Response for Primary Frequency Regulation in Microgrids", IEEE Transactions on Smart Grid, vol.3, no.4, pp.1988-1996, Dec. 2012.

 

[12] T.C. Green, M. Prodanovic, “Control of inverter-based micro-grids”, Electric Power Systems Research, vol. 77, no. 9, pp. 1204-1213, July 2007.

 

[13] Márcio Lunardelli Ribeiro, Phd C. Moreira(Supervisor) and Phd Fernanda Resende (Co-Supervisor), “Estratégia de Reposição de Serviço utilizando Micro-Redes”, Master Thesis develop in the context of Master in Electrical and Computer Engineerin,g Major Energy, Faculty of Engineering of the University of Porto, June 2010.

 

[14] Carlos Coelho Leal Moreira and J. A. Peças Lopes (Supervisor), “Identification and Development of Microgrids Emergency Control Procedures”, Dissertation for the degree of Doctor of Philosophy, Faculty of Engineering of the University of Porto, July 2008.

 

[15] J. A. Pecas Lopes, Silvan A. Polenz, C.L. Moreira, Rachid Cherkaoui, “Identification of control and management strategies for LV unbalanced microgrids with plugged-in electric vehicles”, Electric Power Systems Research, vol. 80, no. 8, pp. 898-906, August 2010.

 

[16] Prabha Kundur, “Power System Loads”, in Power System Stability and Control, Ed. McGraw-Hill Education, 1994, ch.7, pp.279-305.

 

[17] J. V. Mierlo, P. V. d. Bossche, and G. Maggetto, "Models of energy sources for EV and EHV: fuel cells, batteries, ultracapacitors, flywheels and engine-generators." Journal of Power Sources, vol. 128, no. 1, pp. 76-89, March 2004.

 

 

Bibliografia

Operação de Micro-Redes em Condições de Emergência 

Dissertação do Mestrado Integrado em Eng. Eletrotécnica e de Computadores, Ramo de Energia
Faculdade de Engenharia do Porto

 

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