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White Paper on Renewable Energy for the 3GFLAC

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White Paper on Renewable Energy for the 3GFLAC ( white-paper-renewable-energy-3gflac )

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Shakoor, A., Ricardo, J., Smith, J. C., Milligan, M., & Ela, E. (2009). Design and operation of power systems with large amounts of wind power (Final report, IEA WIND Task 25, Phase one 2006-2008). Espoo, Finland: VTT Technical Research Centre of Finland; 101 Milligan, M., & Kirby, B. (2010). Market characteristics for efficient integration of variable generation in the Western Interconnection. Golden, CO: National Renewable Energy Laboratory. 102 Reinstein, D., Mateos, A., Brugman, A., Johnson, T., & Berman, L. (2011). Regional power integration: Structural and regulatory challenges (Report No. 58934–LAC, Central America Regional Programmatic Study for the Energy Sector). Washington, DC: The World Bank, Energy Sector Management Assistance Program. 103 Interview to Oscar Ferreño, generation manager for UTE, included in UNIDO and OLADE’s “Observatory of Renewable Energy in Latin America and the Caribbean: Uruguay” 104 Chamba, M. S., Salazar, G., Añó, O., & Castillo, T. (2012). Integración eléctrica en Latinoamérica y el Caribe: Barreras y análisis de esquemas regulatorios. ENERLAC, 4, 64-82. 105 North American Electric Reliability Corporation. (2010). Flexibility requirements and metrics for variable generation: Implications for system planning studies. Princeton, NJ. 106 These are storage technologies that can operate independently from power plants. There is in addition one technology that enables energy storage within a power plant, namely, thermal storage in concentrated solar power plants. 107 See EPEC website: http://bit.ly/EPECArg 108 Universidad Católica de Chile. Efectos en la operación del sistema de la incorporación de energías renovables con bajo factor de planta y alta volatilidad. http://bit.ly/EfeRenChile 109 IEA Hydropower Implementing Agreement. Hydropower Good Practices: Environmental Mitigation Measures and Benefits. http://bit.ly/1basnyn 110 Gate closure is the time at which the market commits to deliver electricity. 111 Martinez, V. J., & Rudnick, H. (2012, October 30 - November 2). Design of demand response programs in emerging countries. Paper presented at the IEEE International Conference on Power System Technology, Auckland, New Zealand. 112 For example, the Competitive Renewable Energy Zone (CREZ) in the US state of Texas. 113 Comisión Reguladora de Energía. 2012. Temporadas abiertas de reserva de capacidad de transmisión y transformación. http://bit.ly/TARCTyT 114 Madrigal, M., & Stoft, S. (2011). Transmission expansion for renewable energy scale-up: Emerging lessons and recommendations (Energy and Mining Sector Board Discussion Paper No. 26. Washington, DC: The World Bank). 115 These estimations do not take into account externalities and tax subsidies. 116 IMF, 2013,Reforming Energy Subsidies, http://bit.ly/18SihCI 117 Roberts, David, 2012. Why Germany is phasing out nuclear power. Grist. http://bit.ly/XOPDxl. Janzing, B. (2010). Renewable energies and base load power plants: Are they compatible? Berlin: German Renewable Energies Agency. The Energy Collective. 100 Percent Renewable Energy is 100 Percent Possible. http://bit.ly/100pcRE Rethinking our energy future p. 30

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