1. The EU climate and energy package. European Commission Brussels [Accessed 17.05.2012]. Available: http://ec.europa.eu/clima/documentation/package/index_en.htm
2. Directive 2004/8/EC of the European Parliament and of the Council of 11February 2004. [Accessed 17.05.2012]. Available: http://eur-lex.europa.eu/LexUriServ/LexUriServ.do?uri=OJ:L:2004:052:0050:0060:EN:PDF
3. Mago P. J., Chamra L. M., Ramsay J. Micro-combined cooling, heating and power systems hybrid electric-thermal load following operation,Applied Thermal Engineering, vol. 30, Issues 8-9, 2010, p. 800-806.10.1016/j.applthermaleng.2009.12.008
4. Kavvadias, K .C., Tosios, A. P., Maroulis, Z. B. Design of a combined heating, cooling and power system: Sizing, operation strategy selection and parametric analysis, Energy Conversion and Management, vol. 51, N 4, 2010, p. 833-845.10.1016/j.enconman.2009.11.019
5. Al-Sulaiman, F. A., Hamdullahpur, F., Dincer I. Greenhouse gas emission and exergy assessments of an integrated organic Rankine cycle with a biomass combustor for combined cooling, heating and power production, Applied Thermal Engineering, vol. 31, 2011, p. 439-446.10.1016/j.applthermaleng.2010.09.019
6. Chicco, G., Mancarella P. Assessment of the greenhouse gas emissions from cogeneration and trigeneration systems. Part I: Models and indicators, Energy, vol. 33, 2008, p. 410-417.10.1016/j.energy.2007.10.006
7. Fumo, N., Mago, P. J., Chamra, L. M. Emission operational strategy for combined cooling, heating, and power systems, Applied Energy, vol. 86, 2009, p. 2344-2350.10.1016/j.apenergy.2009.03.007
8. Fumo N., Chamra L. M. Analysis of combined cooling, heating, and power systems based on source primary energy consumption, AppliedEnergy, vol. 87, Issue 6, 2010, p. 2023-2030.10.1016/j.apenergy.2009.11.014
9. Zhai, H., Dai, Y. J., Wu, J.Y., Wang R. Z. Energy and exergy analyses on a novel hybrid solar heating, cooling and power generation system for remote areas, Applied Energy, vol. 86, Issue 9, 2009, p. 1395-1404.10.1016/j.apenergy.2008.11.020
10. Wu, D. W., Wang R. Z. Combined cooling, heating and power: A review, Progress in Energy and Combustion Science, vol. 32, Issues 5-6, 2006, p. 459-495.10.1016/j.pecs.2006.02.001
11. Al-Salaymeh, A., Al-Rawabdeh, I., Emran, S. Economical investigation of an integrated boiler-solar energy saving system in Jordan, EnergyConversion and Management, vol. 51, 2010, p. 1621-1628.10.1016/j.enconman.2009.08.040
12. Jaunzems, D., Veidenbergs, I. Small Scale Solar Cooling Unit in Climate Conditions of Latvia: Environmental and Economical Aspects, Scientific Journal of Riga Technical University-Environmental andClimate Technologies, vol. 4, 2010, p. 47-52.10.2478/v10145-010-0017-4
13. Kokogiannakis, G. Support for the Integration of Simulation in theEuropean Energy Performance of Buildings Directive, PhD Thesis, Glasgow: University of Strathclyde, 2008.
17. Calise, F., Palombo, A., Vanoli, L. Maximization of primary energy savings of solar heating and cooling systems by transient simulations and computer design of experiments, Applied Energy, vol. 87, 2010, p. 524-540.10.1016/j.apenergy.2009.08.033