Aujla G., Kumar N., Singh M, Zomaya A. (2018) Energy trading with dynamic pricing for electric vehicles in a smart city environment, Journal Parallel Distrib. Comput, in press.10.1016/j.jpdc.2018.06.010
Bakıcı T, Almirall E, Wareham J. A Smart City Initiative: the Case of Barcelona. Journal of the Knowledge Economy. 2012;4(2), 135-148.10.1007/s13132-012-0084-9
Calvillo C, Sánchez-Miralles A., Villar J. (2018) Energy management and planning in smart cities, Renewable and Sustainable Energy Reviews, 55, 273–287.10.1016/j.rser.2015.10.133
Causone F., Sangalli A., Pagliano L., Carlucci S. (2017) An exergy analysis for Milano smart city, Energy Procedia 111, 867 – 876.10.1016/j.egypro.2017.03.249
Chen Y., Ardila-Gomez A., Frame G. (2017) Achieving energy savings by intelligent transportation systems investments in the context of smart cities, Transportation Research Part D, 54, 381–396.10.1016/j.trd.2017.06.008
Colmenar-Santos A., Molina-Ibanez E, Rosales-Asensio E, Lopez-Rey A. (2018) Technical approach for the inclusion of superconducting magnetic energy storage in a smart city, Energy 158, 1080-1091.10.1016/j.energy.2018.06.109
European Commission (2015) Towards an integrated strategic energy technology (SET) plan: accelerating the European energy system transformation. COMMUNICATION FROM THE COMMISSION C (2015) 6317 final, Brussels.
Kylili A, Fokaides P. (2015) European smart cities: The role of zero energy buildings, Sustainable Cities and Society, 15, 86–95.10.1016/j.scs.2014.12.003
Mosannenzadeh F., Nuccic M., R., Vettorato D. (2017) Identifying and prioritizing barriers to implementation of smart energy city projects in Europe: An empirical approach, Energy Policy 105, 191–201.10.1016/j.enpol.2017.02.007
O’Dwyer E., Pan I., Acha S., Shah N. (2019) Smart energy systems for sustainable smart cities: Current developments, trends and future directions, Applied Energy 237, 581–597.10.1016/j.apenergy.2019.01.024
Papastamatiou I., Marinakis V., Doukas H., Psarras J. (2017) A decision support framework for smart cities energy assessment and optimization, Energy Procedia, 111, 800 – 809.10.1016/j.egypro.2017.03.242
Pelau, Corina, Pop, Nicolae Al. (2018). Implications for the energy policy derived from the relation between the cultural dimensions of Hofstede’s model and the consumption of renewable energies. Energy Policy, volume 118, pp. 160-168.10.1016/j.enpol.2018.03.042
Petritoli E, Leccese F, Pizzuti S, Pieroni F. (2019) Smart lighting as basic building block of smart city: An energy performance comparative case study, Measurement 136 (2019) 466–477.10.1016/j.measurement.2018.12.095
Strzelecka A., Ulanicki B., Koop S., Koetsier L., Kees van Leeuwen, Elelman R. (2017) Integrating water, waste, energy, transport and ICT aspects into the smart city concept, Procedia Engineering 186, 609 – 616.10.1016/j.proeng.2017.03.277
Tanţău, Adrian Dumitru, Nichifor, Maria Alexandra. Consumer Behavior and Perception on the Renewable Energy Instalments. Case Study: Wind Energy in Romania and the Netherlands. 6th International Symposium on Environmental Management and Material Flow Management, www.emfm.tf.bor.ac.rs.
Tantau, Adrian Dumitru, Maassen, Maria Alexandra, Fratila, Laurentiu (2018). Models for Analyzing the Dependencies between Indicators for a Circular Economy in the European Union. Sustainability 2018, 10, 2141, doi:10.3390/su10072141.10.3390/su10072141